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Myosin-X knockout is semi-lethal and demonstrates that myosin-X functions in neural tube closure pigmentation hyaloid vasculature regression and filopodia formation

机译:Myosin-X基因敲除具有半致死作用证明其在神经管闭合色素沉着玻璃样血管系统退化和丝状伪足形成中起作用

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摘要

Myosin-X (Myo10) is an unconventional myosin best known for its striking localization to the tips of filopodia. Despite the broad expression of Myo10 in vertebrate tissues, its functions at the organismal level remain largely unknown. We report here the generation of KO-first (Myo10 tm1a/tm1a), floxed (Myo10 tm1c/tm1c), and KO mice (Myo10 tm1d/tm1d). Complete knockout of Myo10 is semi-lethal, with over half of homozygous KO embryos exhibiting exencephaly, a severe defect in neural tube closure. All Myo10 KO mice that survive birth exhibit a white belly spot, all have persistent fetal vasculature in the eye, and ~50% have webbed digits. Myo10 KO mice that survive birth can breed and produce litters of KO embryos, demonstrating that Myo10 is not absolutely essential for mitosis, meiosis, adult survival, or fertility. KO-first mice and an independent spontaneous deletion (Myo10 m1J/m1J) exhibit the same core phenotypes. During retinal angiogenesis, KO mice exhibit a ~50% decrease in endothelial filopodia, demonstrating that Myo10 is required to form normal numbers of filopodia in vivo. The Myo10 mice generated here demonstrate that Myo10 has important functions in mammalian development and provide key tools for defining the functions of Myo10 in vivo.
机译:Myosin-X(Myo10)是一种非常规的肌球蛋白,以其在丝状伪足尖端的显着定位而闻名。尽管Myo10在脊椎动物组织中广泛表达,但其在机体水平上的功能仍然未知。我们在这里报告KO-first(Myo10 tm1a / tm1a ),亚麻(Myo10 tm1c / tm1c )和KO小鼠(Myo10 tm1d / tm1d < / sup>)。 Myo10的完全敲除是半致死的,超过一半的纯合KO胚胎表现出脑电图,这是神经管闭合的严重缺陷。所有存活下来的Myo10 KO小鼠的腹部都有白色斑点,眼睛均具有持久的胎儿脉管系统,约50%的小鼠具有蹼状手指。存活下来的Myo10 KO小鼠可以繁殖并产下KO胚胎,这表明Myo10对于有丝分裂,减数分裂,成年存活或生育不是绝对必要的。 KO-first小鼠和独立的自发缺失(Myo10 m1J / m1J )表现出相同的核心表型。在视网膜血管生成过程中,KO小鼠的内皮丝状伪足减少了约50%,这表明需要Myo10才能在体内形成正常数量的丝状伪足。此处产生的 Myo10 小鼠证明 Myo10 在哺乳动物发育中具有重要功能,并为定义 Myo10体内功能提供了关键工具。

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