首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Roles for Laminin in Embryogenesis: Exencephaly, Syndactyly, and Placentopathy in Mice Lacking the Laminin α5 Chain
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Roles for Laminin in Embryogenesis: Exencephaly, Syndactyly, and Placentopathy in Mice Lacking the Laminin α5 Chain

机译:层粘连蛋白在胚胎发生中的作用:缺乏层粘连蛋白α5链的小鼠的运动,综合征和胎盘病变。

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摘要

Laminins are the major noncollagenous glycoproteins of all basal laminae (BLs). They are α/β/γ heterotrimers assembled from 10 known chains, and they subserve both structural and signaling roles. Previously described mutations in laminin chain genes result in diverse disorders that are manifested postnatally and therefore provide little insight into laminin's roles in embryonic development. Here, we show that the laminin α5 chain is required during embryogenesis. The α5 chain is present in virtually all BLs of early somite stage embryos and then becomes restricted to specific BLs as development proceeds, including those of the surface ectoderm and placental vasculature. BLs that lose α5 retain or acquire other α chains. Embryos lacking laminin α5 die late in embryogenesis. They exhibit multiple developmental defects, including failure of anterior neural tube closure (exencephaly), failure of digit septation (syndactyly), and dysmorphogenesis of the placental labyrinth. These defects are all attributable to defects in BLs that are α5 positive in controls and that appear ultrastructurally abnormal in its absence. Other laminin α chains accumulate in these BLs, but this compensation is apparently functionally inadequate. Our results identify new roles for laminins and BLs in diverse developmental processes.
机译:层粘连蛋白是所有基底层(BLs)的主要非胶原糖蛋白。它们是由10条已知链组装而成的α/β/γ异三聚体,并同时发挥结构和信号作用。先前描述的层粘连蛋白链基因突变导致多种疾病,这些疾病在出生后表现出来,因此对层粘连蛋白在胚胎发育中的作用了解甚少。在这里,我们表明层粘连蛋白α5链是胚胎发生过程中所必需的。 α5链实际上存在于早期体节期胚胎的所有BL中,然后随着发育的发展而被限制在特定的BL中,包括表面外胚层和胎盘脉管系统的BL。丢失α5的BL保留或获得其他α链。缺乏层粘连蛋白α5的胚在胚发生中死亡。它们表现出多种发育缺陷,包括前神经管闭合失败(无意识),手指分隔失败(连指)以及胎盘迷路的畸形发生。这些缺陷都归因于BLs的缺陷,这些缺陷在对照中为α5阳性,并且在不存在时出现超微结构异常。其他层粘连蛋白α链在这些BL中积累,但这种补偿在功能上显然不足。我们的结果确定了层粘连蛋白和BL在不同的发育过程中的新作用。

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