遗传
遺傳
유전
HEREDITAS(BEIJING)
2014年
10期
959-964
,共6页
马馨%张胜%杨树宝%王晓晨%朱屹然%李子义%栾维民
馬馨%張勝%楊樹寶%王曉晨%硃屹然%李子義%欒維民
마형%장성%양수보%왕효신%주흘연%리자의%란유민
基因组印记%母源调控基因%DNA甲基化%植入前胚胎
基因組印記%母源調控基因%DNA甲基化%植入前胚胎
기인조인기%모원조공기인%DNA갑기화%식입전배태
genomic imprinting%maternal-effect genes%DNA methylation%preimplantation embryos
基因组印记是指生殖细胞发生过程中双亲基因组发生差异表观修饰,使带有亲代印记的等位基因出现父源或母源单等位基因表达。在配子发生和早期胚胎发育过程中,基因组印记甲基化经历一个去除、重建和维持的复杂过程。这个过程中的任何环节被干扰都将导致印记紊乱,造成胚胎发生、胎盘形成及出生后发育异常。近来研究表明,早期胚胎发育过程中一些母源效应蛋白在印记基因表观调控中起重要作用。为了更好地理解这些母源因子对印记基因建立及维持的作用与机制,文章综述了DPPA3、ZFP57、TRIM28和DNMT1等母源效应因子近年来的相关研究进展,并探讨了这些因子对基因组印记的表观调控机制。
基因組印記是指生殖細胞髮生過程中雙親基因組髮生差異錶觀脩飾,使帶有親代印記的等位基因齣現父源或母源單等位基因錶達。在配子髮生和早期胚胎髮育過程中,基因組印記甲基化經歷一箇去除、重建和維持的複雜過程。這箇過程中的任何環節被榦擾都將導緻印記紊亂,造成胚胎髮生、胎盤形成及齣生後髮育異常。近來研究錶明,早期胚胎髮育過程中一些母源效應蛋白在印記基因錶觀調控中起重要作用。為瞭更好地理解這些母源因子對印記基因建立及維持的作用與機製,文章綜述瞭DPPA3、ZFP57、TRIM28和DNMT1等母源效應因子近年來的相關研究進展,併探討瞭這些因子對基因組印記的錶觀調控機製。
기인조인기시지생식세포발생과정중쌍친기인조발생차이표관수식,사대유친대인기적등위기인출현부원혹모원단등위기인표체。재배자발생화조기배태발육과정중,기인조인기갑기화경력일개거제、중건화유지적복잡과정。저개과정중적임하배절피간우도장도치인기문란,조성배태발생、태반형성급출생후발육이상。근래연구표명,조기배태발육과정중일사모원효응단백재인기기인표관조공중기중요작용。위료경호지리해저사모원인자대인기기인건립급유지적작용여궤제,문장종술료DPPA3、ZFP57、TRIM28화DNMT1등모원효응인자근년래적상관연구진전,병탐토료저사인자대기인조인기적표관조공궤제。
Genomic imprinting is a mechanism of differentially epigenetic modification that restricts monoallelic expression to either the maternally or paternally inherited copy of the gene during gametogenesis. Imprinted methyla-tion undergoes a process of erasure, acquisition, and maintenance during gametogenesis and early embryogenesis. Disruptions in any of these steps may lead to imprinting disorders, resulting in the aberrant development of embryo-genesis, placentation and postnatal growth. Recent studies have shown that maternal-effect proteins are important for the regulation of imprinted gene during the development of preimplantation embryos. In order to obtain a better un-derstanding for the mechanism of maternal-effect proteins in the maintenance of genomic imprints, the recent study progress of maternal-effect proteins, such as DPPA3, ZFP57, TRIM28 and DNMT1, are summarized, and the regula-tion mechanism of these maternal-effect proteins for genomic imprints are discussed.