首页> 外文期刊>Human Molecular Genetics >KASH protein Syne-2/Nesprin-2 and SUN proteins SUN1/2 mediate nuclear migration during mammalian retinal development.
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KASH protein Syne-2/Nesprin-2 and SUN proteins SUN1/2 mediate nuclear migration during mammalian retinal development.

机译:KASH蛋白Syne-2 / Nesprin-2和SUN蛋白SUN1 / 2在哺乳动物视网膜发育过程中介导核迁移。

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摘要

Nuclear movement relative to cell bodies is a fundamental process during certain aspects of mammalian retinal development. During the generation of photoreceptor cells in the cell division cycle, the nuclei of progenitors oscillate between the apical and basal surfaces of the neuroblastic layer (NBL). This process is termed interkinetic nuclear migration (INM). Furthermore, newly formed photoreceptor cells migrate and form the outer nuclear layer (ONL). In the current study, we demonstrated that a KASH domain-containing protein, Syne-2/Nesprin-2, as well as SUN domain-containing proteins, SUN1 and SUN2, play critical roles during INM and photoreceptor cell migration in the mouse retina. A deletion mutation of Syne-2/Nesprin-2 or double mutations of Sun1 and Sun2 caused severe reduction of the thickness of the ONL, mislocalization of photoreceptor nuclei and profound electrophysiological dysfunction of the retina characterized by a reduction of a- and b-wave amplitudes. We also provide evidence that Syne-2/Nesprin-2 forms complexes with either SUN1 or SUN2 at the nuclear envelope to connect the nucleus with dynein/dynactin and kinesin molecular motors during the nuclear migrations in the retina. These key retinal developmental signaling results will advance our understanding of the mechanism of nuclear migration in the mammalian retina.
机译:相对于细胞体的核运动是哺乳动物视网膜发育某些方面的基本过程。在细胞分裂周期中的感光细胞生成过程中,祖细胞核在成神经细胞层(NBL)的顶表面和底表面之间振荡。这个过程被称为动能核迁移(INM)。此外,新形成的感光细胞迁移并形成外核层(ONL)。在当前的研究中,我们证明了含KASH域的蛋白Syne-2 / Nesprin-2以及含SUN域的蛋白SUN1和SUN2在小鼠视网膜INM和感光细胞迁移过程中起着关键作用。 Syne-2 / Nesprin-2的缺失突变或Sun1和Sun2的双重突变导致ONL厚度的严重减少,光感受器核的错误定位以及以a波和b波减少为特征的视网膜严重电生理功能障碍振幅。我们还提供证据,表明Syne-2 / Nesprin-2在核被膜中与SUN1或SUN2形成复​​合物,以在视网膜中的核迁移过程中将核与动力蛋白/动力蛋白和驱动蛋白分子马达相连接。这些关键的视网膜发育信号转导结果将提高我们对哺乳动物视网膜中核迁移机制的理解。

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