首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Syncytin-A knockout mice demonstrate the critical role in placentation of a fusogenic, endogenous retrovirus-derived, envelope gene
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Syncytin-A knockout mice demonstrate the critical role in placentation of a fusogenic, endogenous retrovirus-derived, envelope gene

机译:Syncytin-A基因敲除小鼠在融合,内源性逆转录病毒衍生的包膜基因的胎盘化中发挥了关键作用

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摘要

In most mammalian species, a key process of placenta development is the fusion of trophoblast cells into a highly specialized, multinu-cleated syncytiotrophoblast layer, through which most of the maternofetal exchanges take place. Little is known about this process, despite the recent identification of 2 pairs of envelope genes of retroviral origin, independently acquired by the human (syncytin-1 and syncytin-2) and mouse (syncytin-A and syncytin-B) genomes, specifically expressed in the placenta, and with in vitro cell-cell fusion activity. By generating knockout mice, we show here that homozygous syncytin-A null mouse embryos die in utero between 11.5 and 13.5 days of gestation. Refined cellular and subcellular analyses of the syncytin-A-deficient placentae disclose specific disruption of the architecture of the syncytiotrophoblast-containing labyrinth, with the trophoblast cells failing to fuse into an interhemal syncytial layer. Lack of syncyfin-A-mediated trophoblast cell fusion is associated with cell overexpansion at the expense of fetal blood vessel spaces and with apoptosis, adding to the observed maternofetal interface structural defects to provoke decreased vascularization, inhibition of placental transport, and fetal growth retardation, ultimately resulting in death of the embryo. These results demonstrate that syncytin-A is essential for trophoblast cell differentiation and syncytiotrophoblast morphogenesis during placenta development, and they provide evidence that genes captured from ancestral retroviruses have been pivotal in the acquisition of new, important functions in mammalian evolution.
机译:在大多数哺乳动物物种中,胎盘发育的关键过程是将滋养层细胞融合到高度专业化的多核合体滋养层中,通过该层进行大多数胎儿胎儿交换。尽管最近鉴定了两对逆转录病毒起源的包膜基因,但对这一过程了解甚少,逆转录病毒起源是由人类(合体素-1和合体素-2)和小鼠(合体素-A和合体素-B)基因组独立获得的,特别表达了两对在胎盘中,并具有体外细胞间融合活性。通过产生基因敲除小鼠,我们在这里显示纯合体合子-A无效的小鼠胚胎在妊娠11.5至13.5天之间在子宫内死亡。对合体素-A缺陷型胎盘的细化细胞和亚细胞分析显示,含合体滋养层细胞的迷宫的结构发生了特定破坏,滋养层细胞无法融合到间质合胞层中。缺乏合体素A介导的滋养层细胞融合会导致细胞过度扩张,从而损害胎儿血管空间并导致细胞凋亡,从而增加观察到的胎儿胎儿界面结构缺陷,从而引起血管生成减少,胎盘运输抑制和胎儿发育迟缓,最终导致胚胎死亡。这些结果表明,合体素-A对于胎盘发育过程中的滋养层细胞分化和合体滋养层细胞形态发生是必不可少的,并且它们提供的证据表明,从祖传逆转录病毒中捕获的基因对于哺乳动物进化中新的重要功能的获取至关重要。

著录项

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  • 作者单位

    Unite des Retrovirus Endogenes et Elements Retroiedes des Eucaryotes Superieurs, Unite Mixte de Recherche 8122, Centre National de la Recherche Scientifique, Institut Gustave Roussy, 94805 Villejuif, and Universite Paris-Sud, 91405 Orsay, France;

    Unite des Retrovirus Endogenes et Elements Retroiedes des Eucaryotes Superieurs, Unite Mixte de Recherche 8122, Centre National de la Recherche Scientifique, Institut Gustave Roussy, 94805 Villejuif, and Universite Paris-Sud, 91405 Orsay, France;

    Vectorologie et Transfert de Genes, Unite Mixte de Recherche 8121, Institut Gustave Roussy, 94805 Villejuif, and Universite Paris-Sud, 91405 Orsay, France;

    Laboratoire de Replication de I'ADN et Ultrastructure du Noyau, Formation de Recherche en Evolution 2937, Institut Andre Lwoff, 94801 Villejuif, France;

    Laboratoire de Replication de I'ADN et Ultrastructure du Noyau, Formation de Recherche en Evolution 2937, Institut Andre Lwoff, 94801 Villejuif, France;

    Vectorologie et Transfert de Genes, Unite Mixte de Recherche 8121, Institut Gustave Roussy, 94805 Villejuif, and Universite Paris-Sud, 91405 Orsay, France;

    Unite des Retrovirus Endogenes et Elements Retroiedes des Eucaryotes Superieurs, Unite Mixte de Recherche 8122, Centre National de la Recherche Scientifique, Institut Gustave Roussy, 94805 Villejuif, and Universite Paris-Sud, 91405 Orsay, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cell-cell fusion; placenta; syncytiotrophoblast; embryonic lethality; mammalian evolution;

    机译:细胞间融合;胎盘;合体滋养细胞胚胎致死率哺乳动物进化;

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