SLMAP3 通过涉及细胞骨架元素、ABP 和 PCP 的机制对神经形成至关重要。

IF 3.3 2区 生物学 Q1 BIOLOGY Life Science Alliance Pub Date : 2024-10-04 Print Date: 2024-12-01 DOI:10.26508/lsa.202302545
Taha Rehmani, Ana Paula Dias, Billi Dawn Applin, Maysoon Salih, Balwant S Tuana
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引用次数: 0

摘要

SLMAP3是一种尾锚膜蛋白,以亚细胞器为靶标,被认为能调节Hippo信号传导。SLMAP3 的全面缺失会导致小鼠胚胎晚期致死,一些胚胎会表现出神经管缺陷,如颅骨畸形。我们在此研究中发现,SLMAP3 -/-胚胎的神经板长度缩短、宽度增加,这表明收敛性延伸受阻。在 SLMAP3 -/-E12.5大脑中,平面细胞极性(PCP)成分Dvl2/3的表达以及下游靶标ROCK2、cofilin和JNK1/2的活性均失调。此外,细胞骨架蛋白(γ-微管蛋白、肌动蛋白和巢蛋白)和顶端成分(PKCζ和ZO-1)在SLMAP3 -/-胚胎的神经管中错误定位,PCP蛋白(Fzd6和pDvl2)的共定位随之减少。然而,在去除了 SLMAP3 的培养神经上皮细胞中没有发现 PCP 或细胞骨架蛋白的变化,这表明 SLMAP3 在体内对神经形成的这些过程是必不可少的。在 SLMAP3 -/-胚胎、大脑和神经管中,SLMAP3 的缺失对 Hippo 信号转导没有影响。蛋白质组分析表明,SLMAP3 与细胞骨架成分(包括胚胎大脑中的 nestin、tropomyosin 4、中间丝、plectin、PCP 蛋白 SCRIB 和 STRIPAK 成员)存在相互作用组。这些结果揭示了 SLMAP3 通过调节细胞骨架组织和 PCP 通路在神经管发育中的关键作用。
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SLMAP3 is essential for neurulation through mechanisms involving cytoskeletal elements, ABP, and PCP.

SLMAP3 is a tail-anchored membrane protein that targets subcellular organelles and is believed to regulate Hippo signaling. The global loss of SLMAP3 causes late embryonic lethality in mice, with some embryos exhibiting neural tube defects such as craniorachischisis. We show here that SLMAP3 -/- embryos display reduced length and increased width of neural plates, signifying arrested convergent extension. The expression of planar cell polarity (PCP) components Dvl2/3 and the activity of the downstream targets ROCK2, cofilin, and JNK1/2 were dysregulated in SLMAP3 -/- E12.5 brains. Furthermore, the cytoskeletal proteins (γ-tubulin, actin, and nestin) and apical components (PKCζ and ZO-1) were mislocalized in neural tubes of SLMAP3 -/- embryos, with a subsequent decrease in colocalization of PCP proteins (Fzd6 and pDvl2). However, no changes in PCP or cytoskeleton proteins were found in cultured neuroepithelial cells depleted of SLMAP3, suggesting an essential requirement for SLMAP3 for these processes in vivo for neurulation. The loss of SLMAP3 had no impact on Hippo signaling in SLMAP3 -/- embryos, brains, and neural tubes. Proteomic analysis revealed SLMAP3 in an interactome with cytoskeletal components, including nestin, tropomyosin 4, intermediate filaments, plectin, the PCP protein SCRIB, and STRIPAK members in embryonic brains. These results reveal a crucial role of SLMAP3 in neural tube development by regulating the cytoskeleton organization and PCP pathway.

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来源期刊
Life Science Alliance
Life Science Alliance Agricultural and Biological Sciences-Plant Science
CiteScore
5.80
自引率
2.30%
发文量
241
审稿时长
10 weeks
期刊介绍: Life Science Alliance is a global, open-access, editorially independent, and peer-reviewed journal launched by an alliance of EMBO Press, Rockefeller University Press, and Cold Spring Harbor Laboratory Press. Life Science Alliance is committed to rapid, fair, and transparent publication of valuable research from across all areas in the life sciences.
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