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Korotki palindromni povtori regulyarno roztashovani grupami angl CRISPR Clustered Regularly Interspaced Short Palindromic Repeats ce pryami povtori ta unikalni poslidovnosti v DNK bakterij i arhej sho rozdilyayut yih yaki spilno z asocijovanimi genami Cas angl CRISPR associated genes zabezpechuyut zahist klitini vid chuzhoridnih genetichnih elementiv bakteriofagiv plazmid CRISPR kaseti viyavleni v genomah bagatoh bakterij i bilshosti arhej 1 Povtori mayut dovzhinu vid 24 do 48 par nukleotidiv voni mayut bivalentnu simetriyu ale yak pravilo ne ye istinnimi palindromami Povtori rozdileni variabelnimi dilyankami DNK spejserami priblizno odnakovoyi dovzhini Spejseri vidpovidayut po nukleotidnij poslidovnosti pevnim fragmentam DNK chuzhoridnih genetichnih elementiv protospejseram U zv yazku z cim bulo zaproponovano i potim pokazano sho poslidovnosti sho rozdilyayut povtori pohodyat z poslidovnostej genomiv bakteriofagiv i vidpovidno zabezpechuyut zahist klitin vid infekcij Diagrama sho ilyustruye mozhlivij mehanizm CRISPR V rezultati doslidzhen mehanizmu diyi CRISPR sistemi bulo zrobleno pripushennya sho vona ye prokariotichnim analogom sistemi RNK interferenciyi eukariot i zabezpechuye bakteriyam i arheyam zahist vid bakteriofagiv 2 Zmist 1 Rol v genetichnij regulyaciyi endogennih bakterialnih geniv 2 Metodi gennoyi inzheneriyi sho bazuyutsya na sistemi CRISPR Cas9 3 Metodi doslidzhennya sho bazuyutsya na sistemi CRISPR Cas9 4 Uspishni eksperimenti 5 Suspilstvo i etichni pitannya 6 Div takozh 7 Primitki 8 Dzherela 9 PosilannyaRol v genetichnij regulyaciyi endogennih bakterialnih geniv RedaguvatiPatogenni ta sinantropni bakteriyi mistyat veliku kilkist bilka Cas9 angl CRISPR associated 9 Bulo pokazano sho sistema CRISPR Cas mozhe brati aktivnu uchast u regulyaciyi endogennih bakterialnih geniv zokrema pri vzayemodiyi bakterij z eukariotichnim organizmom v yakomu voni parazituyut Napriklad bilok Cas9 z Francisella novicida vikoristovuye unikalnu CRISPR Cas asocijovanu malu RNK scaRNA dlya prignichennya endogennogo transkriptu mRNK sho koduye bakterialnij lipoproteyin sho dozvolyaye yij poslabiti imunnu vidpovid hazyayina j pidvishiti yiyi virulentnist 3 Metodi gennoyi inzheneriyi sho bazuyutsya na sistemi CRISPR Cas9 RedaguvatiRozrobleno metodi visokovibirkovogo aktivuvannya 4 j ingibuvannya geniv 5 sho bazuyutsya na sistemi CRISPR Cas9 CRISPR sistemi II tipu 6 7 8 9 10 11 12 13 Osnovnimi komponentami CRISPR sistemi II tipu ye CRISPR kaseta na osnovi yakoyi sintezuyutsya napryamni crPHK angl CRISPR RNA nukleaza Cas9 Csn1 i tracrPHK angl trans activating crRNA neobhidna dlya procesingu napryamnoyi RNK 1 14 15 Dlya spryamovanogo redaguvannya genoma eukariotiv vikoristovuyut Cas9 Streptococcus pyogenes Streptococcus thermophilus Neisseria meningitidis 16 17 a takozh Cas9 z Staphylococcus aureus SaCas9 yaka na 25 mensha za rozmirami sho dozvolyaye upakovuvati yiyi v adenoasocijovanij virus AAV dlya dostavki vektora v klitini zhivogo organizmu yak terapevtichnij zasib 18 19 20 Pohodzhennya fermentu nakladaye deyaki obmezhennya na vibir DNK mishenej napriklad pri vikoristanni Cas9 S pyogenes yak misheni mozhna vibirati tilki poslidovnosti za yakimi jde 5 NGG de N bud yakij nukleotid Pered vikoristannyam u genetichnih konstrukciyah gen Cas9 potribno poperedno optimizuvati za vikoristovuvanimi kodonama vidpovidno do organizmu genom yakogo peredbachayetsya modifikuvati 14 Z metoyu sproshennya manipulyacij z klonuvannyam lentivirusnih abo retrovirusnih vektoriv dostavki crPHK i tracrPHK ob yednuyut v odnu sucilnu sgPHK angl single guide RNA sgRNA tak zvanij all in one CRISPR Cas9 cloning vector 21 Ce dozvolyaye polegshiti konstruyuvannya ta klonuvannya seriyi vektoriv dostavki sho vidriznyayutsya tilki po prishitij do tracrRNA lancyuzhku gidRNK angl guide RNA yaka vpiznaye komplementarnu yij poslidovnist DNK vibranu v genomi za zamovlennyam doslidnika 22 Rozroblena takozh tehnologiya samoklonuvalnih CRISPR Cas9 sho dozvolyaye vzagali obijtisya bez klonuvannya a vikoristovuvati korotku dvolancyugovu DNK z poslidovnistyu sho koduye bazhanij lokus i plazmidu nese samorozsheplyuvalnu palindromnu sgPHK Ce dozvolyaye skorotiti chas na pidgotovki eksperimentu vsogo do 2 h godin a jogo vartist zdesheviti v shist raziv 23 Modifikaciya DNK zv yazuyuchogo domenu Cas9 i jogo zlittya z riznimi regulyatornimi domenami dozvolyaye otrimati vibirkovo napryamni na potribni dilyanki genomu za dopomogoyu RNK gidiv shtuchni faktori transkripciyi crisprTF i efektori 24 shtuchni endonukleazi restrikciyi 25 26 repressori a takozh fermenti sho modifikuyut epigenom taki yak DNK metilazi demetilazi i gistonacetiltransferazi sho dozvolyaye vibirkovo regulyuvati aktivnist pevnih geniv 27 Krim togo znajdeni analogi Cas9 yaki zdatni rozsheplyuvati zamist DNK molekuli RNK sho dozvolyaye redaguvati abo vibirkovo prignichuvati aktivnist mikroRNK 28 29 Tak napriklad Cas9 z gramnegativnoyi bakteriyi Francisella novicida FnCas9 mozhe buti pereprogramovanij tak shob spryamuvati jogo na RNK genom virusu gepatitu C sho prizvodit do ingibuvannya sintezu virusnogo bilka v klitini 30 Na osnovi ciyeyi sistemi mozhna stvoriti sotni zasobiv dlya zahistu proti riznih virusiv Metod sajt selektivnogo redaguvannya genomu za dopomogoyu fermentu sho vpiznaye neobhidnu poslidovnist lancyuga DNK za navedennyam komplementarnogo yij RNK gidu obicyaye revolyucijni zmini v doslidzhennyah ta likuvanni cilogo ryadu zahvoryuvan vid raku 31 i nevilikovnih virusnih hvorob do spadkovih genetichnih patologij na kshtalt serpovidnoklitinnoyi anemiyi i sindromu Dauna 32 Vin dozvoliv zdesheviti sprostiti i priskoriti rozrobku gennomodifikovanih mikroorganizmiv 9 roslin 33 34 i domashnoyi hudobi a takozh dopomozhe v rozroblenni gennoyi terapiyi spadkovih zahvoryuvan u lyudskih embrioniv 35 36 Tak napriklad tehnologiya rozroblena Editas dozvolyaye vzyati klitinu z tila zhivogo organizmu zaminiti pevni dilyanki DNK a potim povernuti klitinu na kolishnye misce Peredbachayetsya sho takim chinom mozhna zapustiti proces likuvannya deyakih tipiv zahvoryuvan 37 Metodi doslidzhennya sho bazuyutsya na sistemi CRISPR Cas9 RedaguvatiPrikripivshi do bilka Cas9 defektnogo po ekzonukleaznij aktivnosti zelenij fluorescentnij bilok EGFP mozhna otrimati instrument dlya vizualizaciyi genomnih poslidovnostej v zhivih klitinah ssavciv i vizualnogo viznachennya dovzhini telomer hromosomi a takozh vidstezhuvati dinamiku gennih lokusiv protyagom klitinnogo ciklu 38 Uspishni eksperimenti RedaguvatiNaukovcyam z Medichnoyi shkoli Perelmana Universitetu Pensilvaniyi ta Dityachoyi likarni Filadelfiyi CHOP vdalosya pid chas vagitnosti laboratornoyi mishi vidredaguvati gen abi zapobigti letalnomu porushennyu obminu rechovin u potomstva Doslidniki vpevneni sho taka tehnologiya dopomozhe borotisya iz vrodzhenimi zahvoryuvannyami lyudini she do narodzhennya V rezultati gennogo redaguvannya mishi ne lishe vizhili a j viyavilisya znachno zdorovishimi nizh yihni pobratimi yaki prohodili medikamentozne likuvannya HT1 Protyagom troh misyaciv pislya narodzhennya zhodnih negativnih naslidkiv vid vtruchannya v DNK ne zafiksovano 39 Vcheni u 2019 roci stvorili pershi u sviti genno redagovani yashirki vikoristovuyuchi instrument dlya redaguvannya geniv CRISPR Cas9 40 Suspilstvo i etichni pitannya RedaguvatiPitannya pro mozhlivist redaguvannya lyudskih generativnih statevih klitin z yakih formuyetsya novij organizm pidijmalosya bagatma vchenimi cherez porivnyanu prostotu vikoristannya CRISPR Cas9 sistemi Prote v kvitni 2015 roku opublikovana persha robota u zhurnali Protein amp Cell v yakij kitajski vcheni vikoristali CRISPR Cas9 sistemu dlya redaguvannya geniv nezhittyezdatnih yajceklitin lyudini dlya likuvannya talasemiyi 41 Oociti buli zaplidnenni dvoma spermatozoyidami i mali vidpovidno tri pronukleusi dvoye batkivskih ta odin materinskij Taki oociti prohodyat pershi stadiyi embrionalnogo rozvitku prote potim embrion dali rozvivatisya ne mozhe i vidbuvayetsya vikiden spontannij abort Te sho robota nad redaguvannyam genomu bula provedena nad nezhittyezdatnimi oocitami vse odno zagostrila pitannya etiki i po slovam avtora statti Dzhin yu Huanga cyu robotu vidmovilisya prijmati u najvagomishih naukovih recenzovanih zhurnalah Nature ta Science 41 V danij roboti naukovci vikoristovuvali CRISPR Cas9 sistemu dlya redaguvannya genu HBB sho koduye b globin Mutaciyi v comu geni prizvodyat do spadkovogo autosomnogo zahvoryuvannya beta talasemiyi 41 V rezultati publikaciyi ciyeyi roboti Nacionalnij institut ohoroni zdorov ya SShA onoviv zaboronu na redaguvannya embrioniv lyudini v tomu chisli i nezhittyezdatnih 42 U veresni 2015 roku dekilka naukovih ustanov Velikoyi Britaniyi taki yak Wellcome Trust ta Rada medichnih doslidzhen Velikoyi Britaniyi en opublikuvali zayavu v yakij jdetsya pro te sho vikoristannya CRISPR Cas9 sistemi v doslidzhennyah embrioniv lyudini ye vipravdanim i potribnim Nezabarom do nih priyednalisya dekilka inshih grup 43 V rezultati Londonske korolivske tovaristvo Kitajska akademiya nauk Nacionalna akademiya nauk SShA ta Nacionalna akademiya medicini SShA en domovilisya provesti samit u grudni 2015 roku dlya virishennya pitan redaguvannya geniv generativnih klitin yajceklitin spermatozoyidiv ta zigoti 43 3 grudnya 2015 roku mizhnarodnih samit z pitan redaguvannya geniv lyudini dozvoliv vikoristannya metodiv gennoyi inzheneriyi lishe na tih generativnih klitinah chi rannih embrionah lyudini yaki ne budut vikoristani dlya nabuttya vagitnosti Takozh na samiti dozvoleno rozvivati metodi gennoyi inzheneriyi dlya likuvannya geniv v somatichnih tobto ne spadkovih klitinah napr modifikaciyi imunnih klitin dlya borotbi z puhlinami Prote vprodovzh 2016 roku cya tema povinna buti detalnishe obgovorena i povinni projti she dekilka konferencij ta diskusij pered ostatochnim rishennyam mizhnarodnoyi naukovoyi spilnoti Organizatori samitu pidkreslyuyut sho voni ne nazivayut ce zaboronoyu redaguvannya 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