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U etogo termina sushestvuyut i drugie znacheniya sm Antitela znacheniya Antitela immunoglobuliny krupnye globulyarnye belki plazmy krovi vydelyayushiesya plazmaticheskimi kletkami immunnoj sistemy i sluzhashie dlya nejtralizacii kletok patogenov bakterij gribov mnogokletochnyh parazitov i virusov a takzhe belkovyh yadov i nekotoryh drugih chuzherodnyh veshestv Kazhdoe antitelo raspoznayot unikalnyj element patogena otsutstvuyushij v samom organizme antigen a v predelah dannogo antigena opredelyonnyj ego uchastok epitop Svyazyvayas s antigenami na poverhnosti patogenov antitela mogut libo neposredstvenno nejtralizovat ih libo privlekat drugie komponenty immunnoj sistemy takie kak sistema komplementa i fagocity chtoby unichtozhit chuzherodnye kletki ili virusnye chasticy Antitela vazhnejshij komponent gumoralnogo specificheskogo immuniteta Shema vzaimodejstviya antigena i antitela Antitela immunoglobuliny obrazuyut belkovoe supersemejstvo Molekula antitela imeet Y obraznuyu formu na dvuh koncah molekuly raspolagayutsya dva odinakovyh sajta svyazyvaniya antigenov a tretij konec byvaet odnogo iz neskolkih vidov v zavisimosti ot nego antitela otnosyat k tomu ili inomu klassu V sostav odnogo antitela v bolshinstve sluchaev vhodyat dve tyazhyolye cepi i dve lyogkie cepi U mlekopitayushih sushestvuet pyat tipov tyazhyolyh cepej a g d e i m kotorym sootvetstvuyut pyat angl klassov antitel IgA IgG IgD IgE i IgM Antitela kazhdogo izotipa otlichayutsya ot drugih funkciyami i osobennostyami struktury Kolossalnaya variabelnost antitel obespechivaetsya perestrojkami lokusov kodiruyushih tyazhyolye i lyogkie cepi v hode V D J rekombinacii Obrazovanie antitel raspoznayushih normalnye belki organizma autoantitel sostavlyaet osnovu razvitiya autoimmunnyh zabolevanij naprimer sistemnoj krasnoj volchanki revmatoidnogo artrita i drugih Polnoe ili chastichnoe otsutstvie antitel privodit k razvitiyu immunodeficitnyh sostoyanij StroenieImmunoglobulinovye domeny formiruyut dve tyazhyolye cepi krasnaya i sinyaya cepi i dve lyogkie cepi zhyoltaya i zelyonaya cepi V sostav immunoglobulinovogo domena vhodit ot 7 konstantnye domeny do 9 variabelnye domeny b listov Molekuly immunoglobulinov antitel imeyut formu bukvy Y i sostoyat iz dvuh odinakovyh legkih i dvuh odinakovyh tyazhelyh polipeptidnyh cepej soedinennyh vmeste disulfidnymi svyazyami Polipeptidnye cepi na verhnih koncah bukvy Y zavershayutsya aminogruppami i yavlyayutsya antigensvyazyvayushimi uchastkami nozhka karboksilnymi gruppami Izvestny rastvorimye i membrannye formy antitel Membrannye antitela vstrechayutsya u B limfocitov i nazyvayutsya B kletochnymi receptorami Rastvorimye antitela po stroeniyu prakticheski identichny membrannym razlichiya kasayutsya lish C koncevoj konstantnoj chasti Molekula monomernogo immunoglobulina imeet molekulyarnuyu massu 150 170 kDa i sostoit iz chetyryoh polipeptidnyh cepej dvuh lyogkih ili L cepej angl Lite massa 50 60 kDa i dvuh tyazhyolyh ili H cepej angl Heavy massa 100 120 kDa kotorye raspolagayutsya simmetrichno i soedineny disulfidnymi svyazyami H i L cepi soedineny edinstvennoj disulfidnoj svyazyu raspolozhennoj nedaleko ot C konca lyogkoj cepi ostalnye disulfidnye svyazi skreplyayut H cepi V sostav lyogkih cepej vhodit dva gomologichnyh segmenta domena a v sostav tyazhyolyh 4 5 domenov Domeny sostoyat iz priblizitelno 110 aminokislotnyh ostatkov a o i imeyut shodnuyu prostranstvennuyu strukturu kotoraya stabilizirovana odnoj disulfidnoj svyazyu odnako ih funkcii razlichayutsya Eti domeny otnosyatsya k tak nazyvaemym immunoglobulinovym domenam soderzhashim harakternyj angl izvestnyj kak immunoglobulinovaya ukladka predstavlennaya dvumya b sloyami kotorye vzaimodejstvuyut drug s drugom s pomoshyu disulfidnyh svyazej i elektrostaticheskih vzaimodejstvij formiruya nechto napodobie sendvicha Domeny vzaimodejstvuyut drug s drugom posredstvom gidrofobnyh vzaimodejstvij Stroenie monomernogo antitela 1 fragment Fab 2 fragment Fc 3 tyazhyolye cepi 4 lyogkie cepi 5 antigensvyazyvayushie uchastki 6 sharnirnye uchastki N koncy vseh cepej uchastvuyut v raspoznavanii antigena to est obrazuyut dva odinakovyh sajta svyazyvaniya antigena Klyuchevuyu rol v processe raspoznavaniya antigena igraet sootvetstvie struktur antigena tochnee chasti molekuly antigena epitopa i antigenraspoznayushego uchastka antitela ili paratopa po principu klyuch zamok Specifichnost immunoglobulinov opredelyaetsya aminokislotnoj posledovatelnostyu antigenraspoznayushih domenov kotorye nazyvayut variabelnymi ili V domenami ih takzhe nazyvayut FV uchastkami Antigensvyazyvayushij uchastok formiruetsya V domenami tyazhyolyh i lyogkih cepej VH i VL domeny sootvetstvenno Ego formiruyut variabelnye petli b listov tri iz kotoryh otnosyatsya k VL domenam a ostavshiesya tri k VH domenam Eti petli inogda nazyvayut angl angl complementarity determining regions CDRs CDRs takzhe izvestny kak gipervariabelnye uchastki V molekule immunoglobulina obychno imeetsya 3 gipervariabelnyh uchastka polozhenie kotoryh v cepi mozhet byt razlichnym Krome togo v sostav kazhdogo V domena vhodit 4 uchastka otnositelno postoyannogo sostava karkasnye uchastki Sverhvysokaya variabelnost CDRs obespechivaet ogromnoe raznoobrazie immunoglobulinov Ostalnye domeny molekuly immunoglobulina imeyut fiksirovannuyu strukturu poetomu ih nazyvayut konstantnymi ili C domenami L cep soderzhit odin C domen oboznachaetsya CL a H cep 3 ili 4 domena kotorye oboznachayutsya CH1 CH2 CH3 CH4 C domeny ne uchastvuyut v raspoznavanii antigenov i neobhodimy dlya vzaimodejstviya s receptorami immunnyh kletok aktivacii sistemy komplementa i drugih effektornyh funkcij Dolya gipervariabelnyh polozhenij v V domenah po sravneniyu s otnositelno invariantnymi neveliko i sostavlyaet 15 20 ot vseh aminokislotnyh ostatkov Krome togo v evolyucii pozvonochnyh zhivotnyh V domeny okazalis bolee konservativnymi chem konstantnye domeny prichyom ih konservativnost svyazana s konstantnymi uchastkami Tak gomologiya VL domenov mezhdu tigrovoj i galapagosskoj akulami sostavlyaet okolo 75 a mezhdu chelovekom i sobakoj okolo 50 Antitelo nazyvayut angl esli ono mozhet raspoznavat tolko odin antigen ili epitop i bispecifichnym esli ono svyazyvaetsya s dvumya raznymi antigenami ili dvumya raznymi epitopami v sostave odnogo antigena Nekotorye antitela nazyvayut polivalentnymi ili nespecifichnymi esli oni raspoznayut neskolko antigenov Pod dejstviem proteaz molekuly immunoglobulinov rassheplyayutsya na fragmenty kotorye imeyut specialnye nazvaniya Tak papain rassheplyaet molekulu immunoglobulina na tri fragmenta dva fragmenta Fab ot angl Fragment antigen binding i odin fragment Fc ot angl Fragment cristallizable V sostav fragmentov Fab vhodyat V domeny a takzhe CL i CH1 domeny a Fc soderzhit ostalnye C domeny i soedinyayushie ih disulfidnye svyazi Pepsin razrezaet molekulu immunoglobulina nemnogo inache i dayot dvuhvalentnyj antigensvyazyvayushij F ab 2 fragment i ukorochennyj Fc fragment V oblasti C domenov nahoditsya bolshaya chast uchastkov vzaimodejstvuyushih s receptorami kletok takimi kak Fc receptory Tak v domene Sg2 raspolozheny uchastki svyazyvaniya s komponentom komplementa S4b a takzhe s receptorami FcgRI i FcgRII V domene Sg3 lokalizovan uchastok svyazyvaniya s FcgRIII Prodolzhitelnost prebyvaniya antitela v krovotoke zavisit ot osobennostej stroeniya domena CH2 Mezhdu domenami SN1 i SN2 raspolagaetsya uchastok razlichnyj po protyazhyonnosti v N cepyah raznyh izotipov i ne vhodyashij v sostav domenov V svyazi vysokim soderzhaniem prolina etot uchastok obladaet vysokoj gibkostyu poetomu ego takzhe nazyvayut sharnirnym uchastkom Imenno v nyom raspolagayutsya sajty rasshepleniya immunoglobulinov proteazami Molekuly antitel podvergayutsya glikozilirovaniyu to est yavlyayutsya glikoproteinami L cepi lisheny stabilnyh uchastkov glikozilirovaniya a v N cepyah oni predstavleny vo vseh domenah krome variabelnogo bolshe vsego ih nahoditsya v SN2 domene Sajtov N glikozilirovaniya v sostave antitel bolshe chem sajtov O glikozilirovaniya Uglevodnaya sostavlyayushaya antitel ne vliyaet na ih specifichnost odnako glikozilirovanie neobhodimo dlya stabilizacii funkcionalno vazhnyh harakteristik molekuly obespechivaet vzaimodejstvie s lektinami opredelyaet osobennosti katabolizma i biologicheskie svojstva antitel Uglevodnye fragmenty v sostave antitel chashe vsego imeyut osnovu iz ostatkov mannozy i hitobiozy KlassyTyazhyolye i lyogkie cepi sushestvuyut v neskolkih variantah otlichayushihsya strukturoj i funkciyami v svyazi s chem antitela delyat na klassy ili izotipy Vydelyayut dva tipa L cepej k i l i pyat izotipov H cepej m g a d i e V sostav odnoj molekuly immunoglobulina mogut vhodit tolko H cepi odnogo vida U mlekopitayushih sushestvuet pyat osnovnyh tipov antitel IgM IgG IgA IgD i IgE latinskie bukvy v nazvaniyah klassov antitel sootvetstvuyut grecheskim v oboznachenii izotipov N cepej Immunoglobuliny klassov IgG i IgA razdelyayut na podklassy subtipy takzhe v zavisimosti ot osobennostej N cepej Immunoglobuliny vseh klassov mogut prinadlezhat k K i L tipam v zavisimosti ot prisutstviya v ih sostave L cepej k ili l tipov sootvetstvenno Raznye izotipy H cepej imeyut otlichayusheesya kolichestvo C domenov g a i d cepi imeyut po 3 C domena a v sostav m i e cepej vhodit po 4 C domena Klassy antitel takzhe razlichayutsya stepenyu glikozilirovaniya v chastnosti naimenee glikozilirovany antitela klassa IgG Osnovnye svojstva klassov antitel perechisleny v tablice nizhe Svojstvo IgM IgG IgA IgD IgE Molekulyarnaya massa kDa 950 150 subtip IgG3 165 150 dimer 300 185 190 Kolichestvo monomerov 5 1 1 ili 2 1 1 Valentnost 5 2 2 ili 4 2 2 Izotip H cepi m g a d e Kolichestvo C domenov v H cepi 4 3 3 3 4 Kolichestvo disulfidnyh svyazej mezhdu H cepyami 4 3 12 4 ili 5 1 3 Soderzhanie v syvorotke mg ml 1 5 13 14 3 5 0 03 0 00002 0 0005 Vremya poluzhizni sut 5 10 23 IgG3 7 6 3 2 Kletki svyazyvayushie antitelo cherez Fc receptory Makrofagi monocity nejtrofily Makrofagi monocity nejtrofily slabo Tuchnye kletki bazofily Funkcii Membrannyj receptor pervichnyj immunnyj otvet Vtorichnyj immunnyj otvet zashita ot bakterij i virusov Preobladayut v sekretah slizistyh obolochek Membrannyj receptor Reaginy zashita ot parazitov Antitelo iz tyazhyolyh cepej akuly sleva i verblyuda poseredine v sravnenii s immunoglobulinom G Tyazhyolye cepi okrasheny tyomnym lyogkie svetlym Pomimo perechislennyh vyshe klassov antitel mlekopitayushih u nekotoryh pozvonochnyh zhivotnyh imeyutsya drugie klassy antitel Naprimer u kostnyh ryb imeetsya osobyj klass antitel IgT Z a u amfibij reptilij i ptic imeyutsya immunoglobuliny Y IgY kotorye sostoyat iz dvuh tyazhyolyh i dvuh lyogkih cepej i v bolshih kolichestvah nakaplivayutsya v yaichnom zheltke U hryashevyh ryb i mlekopitayushih semejstva verblyudovyh imeyutsya antitela iz tyazhyolyh cepej lishyonnye lyogkih cepej Schitaetsya chto antitela iz tyazhyolyh cepej hryashevyh ryb i verblyudovyh rezultat konvergentnoj evolyucii i oni poyavilis v svyazi s funkcionalnymi osobennostyami Okolo 50 antitel verblyudov i blizkih vidov sostavlyayut tipichnye dlya mlekopitayushih antitela iz chetyryoh cepej Sushestvuyut li zhivotnye obladayushie tolko antitelami iz tyazhyolyh cepej neizvestno FunkciiK osnovnym funkciyam antitel v immunnoj sisteme mozhno otnesti angl v hode kotoroj nejtralizuyushie antitela blokiruyut chast poverhnosti bakterialnoj kletki ili viriona i delayut ih neaktivnymi agglyutinaciyu pri kotoroj antitela skleivayut chuzherodnye kletki v komki kotorye unichtozhayutsya putyom fagocitoza precipitaciyu v hode kotoroj antitela sobirayut rastvorimye v plazme krovi antigeny v skopleniya vypadayushie v osadok podvergayushijsya fagocitozu aktivaciyu komplementa pri kotoroj antitela prisoedinyayutsya k poverhnosti patogennoj kletki blagodarya chemu eyo mogut atakovat komponenty sistemy komplementa vyzvat eyo lizis i zapustit vospalenie Antitela kotorye svyazyvayutsya s poverhnostyu chuzherodnoj kletki aktiviruyut pervyj komponent kaskada komplementa s pomoshyu svoih Fc uchastkov takoj sposob aktivacii komplementa poluchil nazvanie klassicheskogo puti aktivacii komplementa V rezultate kletka pokrytaya antitelami mozhet pogibnut dvumya sposobami Vo pervyh svyazyvanie antitel i komponentov komplementa s poverhnostyu kletki pomechaet eyo kak mishen dlya unichtozheniya fagocitami kotorye privlekayutsya k kletke nekotorymi komponentami kaskada komplementa Vo vtoryh komponenty komplementa formiruyut membranoatakuyushij kompleks na poverhnosti kletki kotoryj vyzyvaet eyo gibel v rezultate lizisa Mehanizm zavisimoj ot antitel kletochnoj citotoksichnosti Chtoby protivodejstvovat razmnozheniyu vnekletochnyh patogenov antitela skleivayut patogennye kletki vmeste vyzyvaya ih agglyutinaciyu Poskolku minimalnaya valentnost to est chislo odnovremenno svyazannyh antigenov antitela ravna dvum ono mozhet svyazat dve molekuly antigena raspolozhennye na raznyh kletkah i tem samym soedinit ih Pokryvaya poverhnost patogena antitela privlekayut k nemu effektornye immunnye kletki s pomoshyu Fc uchastkov Kletki kotorye raspoznayut Fc uchastki antitel imeyut specialnye Fc receptory FcR kotorye mogut svyazyvatsya s Fc uchastkami IgA IgG i IgE Svyazyvanie Fc receptora kletki s antitelom aktiviruet eyo chto u fagocitov proyavlyaetsya v zapuske fagocitoza u tuchnyh kletok i nejtrofilov angl naturalnyh killerov vysvobozhdenii citokinov i citotoksicheskih molekul chto v konce koncov privodit k unichtozheniyu mikroorganizma Aktivaciya naturalnyh killerov antitelami zapuskaet mehanizm izvestnyj kak angl angl antibody dependent cell mediated cytotoxicity ADCC Etot mehanizm mozhet obyasnit effektivnost monoklonalnyh antitel v lechenii raka Poskolku Fc receptory specifichny tolko k antitelam opredelyonnogo izotipa immunnaya sistema obladaet dostatochnoj gibkostyu chtoby zapuskat opredelyonnyj vid immunnogo otveta na dannogo patogena U cheloveka i vysshih primatov v plazme krovi postoyanno prisutstvuyut tak nazyvaemye angl kotorye obrazuyutsya bez predshestvuyushej infekcii vakcinacii ili inogo vozdejstviya Blagodarya etim antitelam sistema komplementa mozhet zapuskat lizis kletok mikroorganizmov i virionov obolochechnyh virusov bez predshestvuyushej aktivacii adaptivnogo immuniteta Mnogie naturalnye antitela specifichny k disaharidu galaktoze a 1 3 galaktoze a Gal kotoryj yavlyaetsya koncevym saharom glikozilirovannyh belkov poverhnosti kletki Vyrabotka etih antitel zapuskaetsya v otvet na sintez a Gal simbioticheskimi kishechnymi bakteriyami Ottorzhenie ksenotransplantata otchasti mozhno obyasnit dejstviem naturalnyh antitel recipienta atakuyushih a Gal v sostave belkov transplantata Aktivirovannye B kletki preterpevayut differencirovku v plazmaticheskie kletki sposobnye sekretirovat antitela ili B kletki pamyati kotorye sohranyayutsya v organizme v techenie dolgogo vremeni i hranyat pamyat ob antigenah s kotorymi organizm ranee stalkivalsya V prenetalnom i neonatalnom periodah antitela postupayut v organizm mladenca ot materi Nachalo vyrabotki sobstvennyh antitel razlichaetsya v raznyh klassah antitel i obychno proishodit v techenie pervyh let zhizni Pomimo perechislennyh vyshe funkcij v immunnoj sisteme antitela mogut vypolnyat i drugie nekanonicheskie roli U nekotoryh antitel kompoziciya aminokislotnyh ostatkov v sajte svyazyvaniya antigena ochen blizka k takovoj v aktivnom centre nekotoryh fermentov poetomu antitela mogut katalizirovat nekotorye himicheskie reakcii Antitela obladayushie kataliticheskoj aktivnostyu nazyvayut abzimami Pokazano chto sintez antitel s razlichnoj kataliticheskoj aktivnostyu nachinaetsya pri immunizacii promezhutochnymi soedineniyami sootvetstvuyushih reakcij Odnako po kataliticheskoj aktivnosti abzimy silno ustupayut istinnym fermentam U cheloveka kak v norme tak i pri patologii neredko detektiruyutsya antitela s proteoliticheskoj aktivnostyu kotorye rassheplyayut molekuly specifichnye dlya patogenov Proteoliticheskie antitela otnosyatsya k klassam IgG IgA i IgM Nekotorye antitela klassov IgM i IgG mogut ubivat kletki mikrorganizmov v odinochku bez uchastiya drugih effektornyh mehanizmov odnako mehanizm ih dejstviya izvesten lish v neskolkih sluchayah V chastnosti pokazano chto inaktiviruyushie monoklonalnye antitela IgM i IgG vyzyvayut izmeneniya ekspressii genov i metabolizma u patogennogo griba Cryptococcus neoformans pri svyazyvanii s poverhnostyu ego kletok Svyazyvanie antitel s poverhnostyu boleznetvornoj bakterii angl vyzyvaet formirovanie por i gibel kletki v rezultate angl Inogda raznye antitela inaktiviruyut patogena za schyot sinergicheskogo dejstviya bez uchastiya dopolnitelnyh effektornyh putej Osobye nekanonicheskie funkcii opisany u antitel klassa IgA Tak oni mogut oposredovat transepitelialnyj transport bakterij v kishechnike u myshej i regulirovat proniknovenie bakterialnyh metabolitov v kletki hozyaina Krome togo antitela mogut rabotat kak shaperony i perenoschiki raznoobraznyh soedinenij i v zdorovom organizme RaznoobraziePrakticheski vse mikroorganizmy mogut vyzyvat immunnyj otvet Dlya uspeshnogo raspoznavaniya i unichtozheniya patogenov neobhodimo bolshoe raznoobrazie antitel raspoznayushih raznye antigeny Po nekotorym ocenkam v organizme cheloveka obrazuetsya 10 mlrd razlichnyh antitel kazhdoe iz kotoryh raspoznayot unikalnyj epitop Hotya v kazhdoj osobi obrazuetsya ogromnoe kolichestvo antitel kolichestvo genov kotorye ih kodiruyut ogranicheno razmerom genoma Sushestvuet neskolko mehanizmov kotorye dayut vozmozhnost pozvonochnym zhivotnym poluchat ogromnoe chislo razlichnyh antitel s otnositelno nebolshogo kolichestva genov Variabelnost domenov Uchastki kodiruyushie komponenty antitel u cheloveka raspolagayutsya na neskolkih hromosomah Na hromosome 14 sobrany geny kodiruyushie varianty tyazhyoloj cepi lyogkie cepi k i l zakodirovany na hromosomah 22 i 2 Variabelnye domeny obrazovannye uchastkami kak lyogkoj tak i tyazhyoloj cepej otlichayutsya mezhdu antitelami obrazovannymi raznymi plazmaticheskimi kletkami Razlichiya mezhdu variabelnymi domenami zatragivayut tri petli izvestnye kak gipervariabelnye uchastki HV 1 HV 2 and HV 3 ili uchastki opredelyayushie komplementarnost CDR1 CDR2 i CDR3 Lokus tyazhyolyh cepej kodiruet 65 variabelnyh domenov s raznymi CDRs Kombinaciya kazhdogo iz etih variantov v predelah linejno raspolozhennyh genov kodiruyushih drugie domeny tyazhyoloj cepi obespechivaet ogromnoe raznoobrazie antitel Eta kombinaciya proishodit v rezultate V D J rekombinacii mehanizm kotoroj opisan nizhe V D J rekombinaciya Osnovnaya statya V D J rekombinaciya Uproshyonnaya shema V D J rekombinacii V hode processa V D J rekombinacii formiruetsya unikalnyj uchastok DNK kodiruyushij variabelnyj domen Variabelnyj uchastok tyazhyoloj ili lyogkoj cepi kodiruetsya lokusom razbitym na neskolko fragmentov subgenov kotorye oboznachayutsya V ot angl variable D ot angl diversity i J ot angl joining Subgeny V D i J kodiruyut variabelnyj uchastok tyazhyoloj cepi v to vremya kak variabelnyj uchastok lyogkoj cepi kodiruyut subgeny V i J Kazhdyj subgen predstavlen neskolkimi variantami tandemno raspolozhennymi drug za drugom na hromosome V kostnom mozge pri sozrevanii B kletki v eyo lokusah kodiruyushih variabelnye domeny proishodyat perestrojki v rezultate kotoryh v sostave lokusa ostayotsya po odnomu variantu subgenov V D i J a ostalnye varianty navsegda udalyayutsya iz genoma Poskolku kazhdyj subgen prisutstvuet v neskolkih variantah ih kombinacii budut davat antitela s raznoj specifichnostyu k antigenam Vazhnuyu rol v V D J rekombinacii igrayut belki angl kotorye vnosyat razryvy v opredelyonnye uchastki i v ih otsutstvie V D J rekombinaciya nevozmozhna Posle togo kak v hode sozrevaniya v genome B kletki dlya tyazhyoloj i lyogkoj cepej poyavilsya odin funkcionalnyj gen kodiruyushij variabelnyj domen ostalnye lokusy kodiruyushie variabelnye domeny perestayut ekspressirovatsya allelnoe isklyuchenie tak chto kazhdaya B kletka mozhet proizvodit antitela tolko s odnim variabelnym domenom Somaticheskaya gipermutaciya Posle aktivacii antigenom B kletki nachinayut intensivno proliferirovat Parallelno chastym deleniyam v lokusah kodiruyushih gipervariabelnye domeny tyazhyoloj i lyogkoj cepej nablyudaetsya povyshennaya chastota tochechnyh mutacij Etot process nazyvaetsya somaticheskoj gipermutaciej Somaticheskaya gipermutaciya proishodit s chastotoj primerno v odin mutirovavshij nukleotid variabelnogo domena na kletochnoe delenie V rezultate etogo processa dochernie kletki poyavlyayushiesya v rezultate deleniya budut producirovat antitela s nemnogo otlichayushimisya variabelnymi domenami Takim obrazom somaticheskaya gipermutaciya sluzhit eshyo odnim mehanizmom povysheniya raznoobraziya antitel i okazyvaet vliyanie na srodstvo antitel k antigenu Nekotorye mutacii ponizhayut srodstvo antitela k nekotoromu antigenu a drugie naprotiv povyshayut Te B kletki kotorye ekspressiruyut antitela s vysokim srodstvom k antigenu v hode vzaimodejstviya s drugimi kletkami poluchayut silnye signaly sposobstvuyushie vyzhivaniyu i ne podvergayutsya apoptozu Po etoj prichine B kletki kodiruyushie antitela s vysokim srodstvom k antigenu budut imet konkurentnoe preimushestvo pered B kletkami kodiruyushimi antitela s menshim srodstvom i srodstvo k antigenu s kazhdym deleniem B kletok budet povyshatsya Postepennoe povyshenie srodstva k antigenu i otbor B kletok s luchshim srodstvom proishodit pri uchastii T helperov uzhe posle V D J rekombinacii Pereklyuchenie klassov Osnovnaya statya Pereklyuchenie klassov antitel Mehanizm pereklyucheniya klassov antitel Pereklyuchenie klassov antitel proishodit posle aktivacii B kletki i pozvolyaet ej proizvodit antitela raznyh klassov IgA IgE ili IgG Razlichiya mezhdu antitelami raznyh klassov svyazany s C domenami tyazhyoloj cepi Snachala angl proizvodyat tolko poverhnostnye immunoglobuliny IgM ili IgD s odinakovoj antigennoj specifichnostyu Poskolku kazhdyj izotip svyazan so specificheskoj funkciej posle aktivacii plazmaticheskaya kletka dolzhna proizvodit antitela IgG IgA ili IgE chtoby effektivno protivodejstvovat patogenu Blagodarya pereklyucheniyu klassov raznye dochernie kletki proishodyashie ot odnoj i toj zhe B kletki mogut proizvodit antitela raznyh izotipov V hode pereklyucheniya klassov izmeneniya proishodyat lish v C domenah tyazhyoloj cepi Poetomu potomki odnoj B kletki mogut proizvodit antitela raznyh klassov no s odinakovoj antigennoj specifichnostyu Pereklyuchenie klassov proishodit pod dejstviem nekotoryh citokinov V hode pereklyucheniya klassov proishodyat perestrojki v lokuse kodiruyushem tyazhyolye cepi Dlya prohozhdeniya processa neobhodimy konservativnye nukleotidnye motivy izvestnye kak S uchastki ot angl switch kotorye nahodyatsya vyshe kazhdogo lokusa kodiruyushego tyazhyolye cepi isklyuchenie sostavlyayut lish d tipy Dalee specialnye fermenty vnosyat dva razryva v DNK po dvum S uchastkam V rezultate fragment mezhdu dvumya razryvami udalyaetsya dvucepochechnyj razryv v konstantnom uchastke repariruetsya s pomoshyu negomologichnogo soedineniya koncov Obrazovanie i sekreciyaAntitela vydelyaet osobaya raznovidnost B kletok plazmaticheskie kletki Kak i bolshinstvo sekretiruemyh belkov tyazhyolye i lyogkie cepi immunoglobulinov sinteziruyutsya ribosomami nahodyashimisya na sherohovatom endoplazmaticheskom retikulume EPR V hode sinteza obrazuyushayasya polipeptidnaya cep postupaet v lyumen EPR gde podvergaetsya glikozilirovaniyu Pravilnaya ukladka tyazhyolyh cepej i svyazyvanie s lyogkimi cepyami s obrazovaniem antitela reguliruyutsya shaperonami EPR takimi kak angl i angl Oni svyazyvayutsya s novosintezirovannymi immunoglobulinovymi polipeptidami i zashishayut ih ot razrusheniya poka oni prinimayut pravilnuyu strukturu Takzhe v lyumene EPR proishodit sborka antitela za schyot obrazovaniya disulfidnyh svyazej mezhdu tyazhyolymi i lyogkimi cepyami Posle sborki molekuly antitel osvobozhdayutsya ot shaperonov i postupayut v apparat Goldzhi gde ih uglevodnye ostatki podvergayutsya dopolnitelnomu processingu Vezikuly soderzhashie zrelye antitela otpochkovyvayutsya ot apparata Goldzhi i slivayutsya s kletochnoj membranoj posle chego membrannye formy antitel ostayutsya zayakorennymi v membrane kletki a svobodnye antitela vyhodyat v mezhkletochnoe prostranstvo Po mere sozrevaniya B kletok v kostnom mozge ekspressiya immunoglobulinov preterpevaet ryad izmenenij Samye rannie kletki B kletochnogo ryada pre B kletki sinteziruyut tolko membrannye formy tyazhyolyh cepej klassa m Eti cepi formiruyut kompleks s belkami kotorye nazyvayut surrogatnymi lyogkimi cepyami i formiruyut pre B kletochnyj receptor nebolshaya dolya kotorogo eksponiruetsya na poverhnosti B kletki Nezrelye i zrelye B kletki sinteziruyut lyogkie cepi klassov k i l kotorye soedinyayas s tyazhyolymi cepyami klassa m obrazuyut antitela IgM Zrelye B kletki ekspressiruyut membrannye formy IgM i IgD kotorye sluzhat receptorami raspoznayushimi antigeny i zapuskayushimi aktivaciyu B kletki Pre B kletochnye receptory i B kletochnye receptory nekovalentno svyazany s integrinami signalnye funkcii kotoryh neobhodimy dlya ekspressii poverhnostnyh form IgM i IgD Kogda B kletki aktiviruyutsya antigenami i drugimi stimulami oni prevrashayutsya v plazmaticheskie kletki sekretiruyushie antitela Pri perehode k plazmaticheskim kletkam dolya sekretiruemyh immunoglobulinov po sravneniyu s membrannymi rezko vozrastaet Krome togo v eto zhe vremya perehodit pereklyuchenie klassov antitel i kletka perestayot sintezirovat IgM i IgD no nachinaet vydelyat IgA IgE ili IgG EvolyuciyaAdaptivnyj immunitet i antitela v hode evolyucii poyavilis u pozvonochnyh zhivotnyh primerno 500 millionov let nazad Naibolee drevnimi klassami antitel veroyatno yavlyayutsya IgM i IgD prichyom antitela IgD kotorye est prakticheski u vseh pozvonochnyh dazhe u hryashevyh ryb schitayut drevnejshim klassom antitel antitela IgD hryashevyh ryb inogda oboznachayut IgW W sootvetstvuet grecheskoj bukve w Odnako est i pozvonochnye utrativshie IgD naprimer pticy i neskolko vidov mlekopitayushih V to zhe vremya tipichnye dlya mlekopitayushih klassy IgA IgE i IgG est ne u vseh grupp pozvonochnyh V chastnosti u kostnyh ryb otsutstvuyut IgA IgE i IgD odnako imeetsya dopolnitelnyj klass antitel IgT ili IgZ kotoryj otsutstvuet u drugih pozvonochnyh Antitela IgT T sootvetstvuet grecheskoj bukve t veroyatno zashishayut slizistye obolochki ryb Neobychnye klassy antitel est i u drugih pozvonochnyh naprimer antitela iz tyazhyolyh cepej u hryashevyh ryb i verblyudovyh a takzhe IgY amfibij reptilij i ptic Predskazanie struktury i kompyuternyj dizajn antitelDlya ispolzovaniya antitel v medicine i biotehnologiyah neobhodimo znat ih strukturu s vysokim razresheniem Informaciya o strukture antitel shiroko ispolzuetsya v belkovoj inzhenerii antitel modifikacii ih sposobnosti k svyazyvaniyu antigenov i identifikacii epitopov otdelnyh antitel Odnim iz metodov shiroko ispolzuyushihsya dlya opredeleniya struktur antitel yavlyaetsya rentgenostrukturnyj analiz odnako kristallizaciya antitel eto ochen dolgij i trudoyomkij process poetomu shiroko rasprostraneno predskazanie struktur antitel s pomoshyu vychislitelnyh metodov Odnako predskazanie ne dayot tochnyh svedenij o strukture Kompyuternoe modelirovanie struktur variabelnyh domenov mozhno proizvodit s pomoshyu programm Web Antibody Modeling WAM i Prediction of Immunoglobulin Structure PIGS Predskazanie struktury variabelnyh domenov takzhe mozhno proizvodit s pomoshyu servisa Rosetta v kotorom s pomoshyu specialnyh metodov v hode predskazaniya minimiziruetsya protyazhyonnost petel sootvetstvuyushih CDR optimiziruetsya polozhenie lyogkih i tyazhyolyh cepej otnositelno drug druga i stroyatsya modeli predskazyvayushie doking antitel s ih unikalnymi antigenami Sushestvuet neskolko programm osushestvlyayushih kompyuternyj dizajn antitel na osnovanii rezultatov bioinformaticheskogo izucheniya CDR Odin iz naibolee effektivnyh metodov identifikacii peptidov i belkov vklyuchaya antitela zhidkostnaya hromatografiya svyazannaya s tandemnoj mass spektrometriej Vysokoproizvoditelnye metody angl antitel trebuyut specialnyh vychislitelnyh podhodov dlya analiza dannyh v tom chisle dlya sekvenirovaniya angl iz dannyh mass spektrometrii a takzhe podhodov k poisku po bazam dannyh soderzhashih belkovye posledovatelnosti Osoboe znachenie dlya sekvenirovaniya aminokislot imeet metod drobovika angl kotorogo uvelicheno posredstvom fragmentacii metodami CID HCD ETD Sushestvuyut metody opredeleniya aminokislotnyh posledovatelnostej dlya kotoryh neobhodimy posledovatelnosti pohozhih belkov ili izvestnaya posledovatelnost genoma Sovremennye metody sekvenirovaniya mogut proizvodit sborku belkovyh posledovatelnostej s vysokoj tochnostyu sochetaya sekvenirovanie peptidov de novo intensivnost i pozicionnye doveritelnye ocenki poluchennye s pomoshyu poiska gomologov po bazam dannyh Primenenie v medicineDiagnostika Vyyavlenie i opredelenie koncentracii specificheskih antitel v krovi yavlyaetsya dovolno rasprostranyonnym metodom medicinskoj diagnostiki Naprimer nalichie v organizme virusa Epshtejna Barr ili bakterii Borrelia burgdorferi vyzyvayushej bolezn Lajma opredelyaetsya po titru antitel protiv nih Esli sootvetstvuyushie antitela vyyavit ne udalos to pacient ili nikogda ne stalkivalsya s etimi patogenami ili stalkivalsya ochen davno i plazmaticheskie kletki produciruyushie antitela protiv nih uzhe ischezli V klinicheskoj immunologii profil antitel pacienta harakterizuyut opredelyaya koncentracii antitel raznyh klassov s pomoshyu nefelometrii Povyshenie soderzhaniya antitel nekotoryh klassov mozhet byt poleznym dlya vyyavleniya prichin povrezhdenij pecheni kogda ustanovit tochnyj diagnoz ne udayotsya Tak povyshennoe soderzhanie IgA svidetelstvuet ob alkogolnom cirroze pecheni povyshenie urovnya IgM govorit v polzu virusnyh gepatitov i pervichnogo cirroza pecheni a uroven IgG povyshaetsya pri virusnyh gepatitah autoimmunnyh zabolevaniyah i cirroze Razvitie autoimmunnyh zabolevanij svyazano s obrazovaniem antitel raspoznayushih epitopy samogo organizma autoantitel Ih mozhno vyyavit s pomoshyu analiza krovi Antitela dejstvuyushie protiv poverhnostnyh antigenov eritrocitov vyzyvayut gemoliticheskuyu anemiyu i mogut byt vyyavleny s pomoshyu reakcii Kumbsa Reakciyu Kumbsa takzhe provodyat pri skrininge antitel pri perelivanii krovi i u beremennyh zhenshin Princip vzaimodejstviya antigenov i antitel ispolzuyut metody immunodiagnostiki takie kak immunofermentnyj analiz immunofluorescentnyj analiz vestern blot angl immunoelektroforez i magnitnyj immunoanaliz Mechenie antitel radioaktivnym izotopom ftora 18F pozvolyaet ih ispolzovat dlya vizualizacii rakovyh opuholej s pomoshyu pozitronno emissionnoj tomografii Lechenie zabolevanij Monoklonalnye antitela primenyayut dlya lecheniya revmatoidnogo artrita rasseyannogo skleroza psoriaza i mnogih vidov raka sredi kotoryh nehodzhkinskie limfomy rak tolstoj kishki golovy i shei molochnoj zhelezy Mnogie immunodeficity takie kak bolezn Brutona i angl svyazany s polnym ili chastichnym otsutstviem antitel Pacientam stradayushim ot etih zabolevanij s pomoshyu iskusstvennogo vvedeniya antitel obespechivayut angl Prenatalnaya terapiya U cheloveka na eritrocitah prisutstvuet antigen izvestnyj kak rezus faktor Rh V hode rodov ili oslozhnenij pri beremennosti krov ploda mozhet popast v krovotok materi i esli u rebyonka rezus faktor polozhitelnyj a u materi otricatelnyj to v organizme materi vyrabatyvayutsya antitela protiv rezus faktora Pri posleduyushih beremennostyah rezus polozhitelnym plodom oni mogut atakovat ego privodya k gemoliticheskoj zheltuhe novorozhdyonnyh Chtoby predotvratit vozniknovenie rezus konflikta rezus otricatelnym zhenshinam beremennym rezus polozhitelnym plodom iskusstvenno vvodyat antitela k rezus faktoru angl Vvedenie Rho D immunoglobulina neobhodimo proizvesti do togo kak rezus faktor ploda aktiviruet B kletki materi i zapustit adaptivnyj immunnyj otvet i obrazovanie B kletok pamyati Primenenie v nauchnyh issledovaniyahShema eksperimenta po polucheniyu monoklonalnyh antitel s zadannoj specifichnostyu Antitela specificheskie k zadannomu antigenu mozhno poluchit vvedya antigen v mlekopitayushee mysh krysu krolika kozu ovcu loshad i zatem vydeliv iz nego bolshoe kolichestvo antitel Krov vydelennaya iz immunizirovannogo zhivotnogo soderzhit poliklonalnye antitela to est neskolko raznyh antitel specifichnyh k odnomu i tomu zhe antigenu Poliklonalnye antitela mozhno takzhe poluchit vprysnuv antigen v yaichnyj zheltok razvivayushegosya kurinogo yajca Chtoby poluchit antitela raspoznayushie strogo opredelyonnyj epitop v sostave antigena plazmaticheskie kletki vydelyayushie antitela k antigenu vydelyayut iz zhivotnogo i angl slivaya ih s rakovymi kletkami Kletki poluchennye pri sliyanii plazmaticheskih kletok s rakovymi nazyvayut gibridomami i oni postoyanno vydelyayut nuzhnye antitela razmnozhayas v kulture kletok Iz odinochnyh gibridom poluchayut identichnye antitela nazyvaemye monoklonalnymi Poliklonalnye i monoklonalnye antitela chasto ochishayut s pomoshyu angl ili affinnoj hromatografii Ochishennye antitela nashli mnozhestvo primenenij v issledovatelskom processe Antitela ko mnogim antigenam mozhno kupit u kommercheskih kompanij V issledovaniyah antitela chashe vsego ispolzuyut dlya opredeleniya lokalizacii kletochnyh i vnekletochnyh belkov Ih takzhe primenyayut v protochnoj citometrii dlya razdeleniya kletok po tomu kakie belki oni ekspressiruyut Antitela ispolzuyut dlya otdeleniya belkov i svyazannyh s nimi molekul ot ostalnogo soderzhimogo kletochnogo lizata posredstvom immunoprecipitacii dlya identifikacii belkov razdelyonnyh gel elektroforezom s pomoshyu vestern blota Antitela sostavlyayut osnovu immunofluorescencii i immunogistohimii s pomoshyu kotoryh izuchaetsya ekspressiya i lokalizaciya interesuyushih belkov v kletkah i tkanyah Antitela mozhno ispolzovat dlya detekcii i ocenki koncentracii belkov v chastnosti s pomoshyu immunofermentnogo analiza i metoda ELISpot Nesmotrya na mnogochislennye primeneniya rabota s antitelami dovolno trudoyomka poskolku na rezultat eksperimenta vliyayut mnozhestvo faktorov kotorye neobhodimo kontrolirovat v chastnosti vliyayushie na stepen srodstva antitela k antigenu pH rastvoritel sostoyanie tkani i drugie Predprinimalos mnozhestvo popytok uluchshit sposob validacii antitel issledovatelyami Issledovateli rabotayushie s antitelami dolzhny tshatelno zapisyvat usloviya eksperimentov chtoby oni mogli byt vosproizvedeny drugimi uchyonymi Mimetiki antitelPrimer mimetika antitela iskusstvennyj peptid gruppy DARPin angl nazyvayut organicheskie soedineniya kotorye kak i antitela mogut specificheski svyazyvat antigeny Kak pravilo mimetiki antitel predstavlyayut soboj iskusstvennye peptidy massoj ot 3 do 20 kDa Inogda v roli mimetikov antitel vystupayut nukleinovye kisloty i malye molekuly odnako imi ne mogut byt iskusstvennye antitela fragmenty antitel ili ih kovalentno svyazannye kombinacii V otlichie ot antitel ih mimetiki obychno obladayut luchshej rastvorimostyu luchshe pronikayut v tkan i obladayut bolshej stabilnostyu po otnosheniyu k temperature i dejstviyu fermentov krome togo oni deshevle nastoyashih antitel Nekotorye mimetiki antitel takie kak angl i angl zaregistrirovany dlya ispolzovaniya v issledovatelskih terapevticheskih i diagnosticheskih celyah Istoriya izucheniyaKitasato Sibasaburo Termin antitelo nem Antikorper vpervye vstrechaetsya v trudah Paulya Erliha V chastnosti termin Antikorper mozhno najti v zaklyuchenii ego stati Eksperimentalnoe izuchenie immuniteta kotoraya vyshla v oktyabre 1891 goda V etoj rabote utverzhdaetsya chto esli dve substancii vyzyvayut vydelenie dvuh raznyh Antikorper to oni tozhe razlichny Tem ne menee ponachalu termin Antikorper ne zakrepilsya i dlya oboznacheniya antitel bylo predlozheno neskolko drugih terminov Immunkorper Amboceptor Zwischenkorper substance sensibilisatrice copula Desmon philocytase fixateur i Immunisin Izuchenie antitel nachalos v 1890 godu kogda Kitasato Sibasaburo i Emil Adolf fon Bering opisali dejstvie antitel protiv difterii i stolbnyachnogo toksina Sibasaburo razvil teoriyu gumoralnogo immuniteta i predpolozhil chto v syvorotke krovi imeetsya nekij mediator sposobnyj vzaimodejstvovat s chuzherodnymi antigenami Na osnove idej Sibasaburo Paul Erlih v 1897 godu vydvinul angl obyasnyayushuyu principy vzaimodejstviya antitel i antigenov On predpolozhil chto receptory bokovye cepi na poverhnosti kletok mogut specifichno vzaimodejstvovat s toksinami po principu klyuch zamok i vzaimodejstvie receptora s toksinom zapuskaet vyrabotku antitel Drugie issledovateli predpolozhili chto antitela svobodno peremeshayutsya po krovotoku V 1904 godu Almrot Rajt predpolozhil chto antitela pokryvayut poverhnost bakterialnyh kletok napravlyaya ih na fagocitoz i razrushenie etot process sejchas izvesten kak opsonizaciya V 1920 h godah angl i Osvald Everi smogli pronablyudat chto antigeny mogut uhodit v osadok pod dejstviem antitel i pokazali chto antitela imeyut belkovuyu prirodu Biohimicheskie osobennosti vzaimodejstviya antitela i antigena byli detalno izucheny v konce 1930 h godov angl V 1937 godu immunoglobuliny kak raznovidnost belkov vyyavleny s pomoshyu gel elektroforeza vo frakciyah g i angl syvorotki krovi V 1940 h godah Lajnus Poling podtverdil gipotezu Erliha otnositelno vzaimodejstviya antigenov i antitel po principu klyuch zamok i pokazal chto vzaimodejstvie antitela i antigena v bolshej stepeni zavisit ot prostranstvennoj konfiguracii antigena chem ot ego himicheskogo sostava V 1948 godu Astrid Fagreus pokazala chto antitela vydelyayut plazmaticheskie kletki raznovidnost B limfocitov V dalnejshem issledovaniya byli skoncentrirovany na izuchenii struktury antitel V nachale 1960 h godov Dzherald Edelman i Dzhozef Galli opisali lyogkuyu cep antitel i pokazali chto imenno lyogkaya cep yavlyaetsya belkom Bens Dzhonsa kotoryj byl opisan angl v 1845 godu V dalnejshem Edelman pokazal chto antitela sostoyat iz dvuh tyazhyolyh i dvuh lyogkih cepej skreplyonnyh disulfidnymi svyazyami Primerno v to zhe vremya Rodni Porter opisal Fab i Fc uchastki v sostave molekul IgG Vmeste eti issledovateli opisali strukturu i polnuyu aminokislotnuyu posledovatelnost IgG za chto v 1972 godu byli udostoeny Nobelevskoj premii po fiziologii i medicine Fragment Fv byl ochishen i opisan Devidom Givolom Rannie issledovaniya antitel byli skoncentrirovany na IgG i IgM i novye izotipy immunoglobulinov byli identificirovany v 1960 h godah Tomas Tomashi opisal sekretiruemye antitela IgA Devid Rouv i Dzhon Fej otkryli IgD a angl i angl otkryli IgE i ustanovili chto imenno eti antitela zadejstvovany v razvitii allergicheskih reakcij V 1976 godu Sudzumi Tonegava nachal seriyu eksperimentov pokazal chto geny kodiruyushie antitela preterpevayut perestrojki za schyot kotoryh sozdayotsya 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