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细胞信号衔接蛋白EPS-8对线虫表皮伸长至关重要,并与锚蛋白重复序列蛋白VAB-19相互作用。

The cell signaling adaptor protein EPS-8 is essential for C. elegans epidermal elongation and interacts with the ankyrin repeat protein VAB-19.

作者信息

Ding Mei, King Ryan S, Berry Emily C, Wang Ying, Hardin Jeff, Chisholm Andrew D

机构信息

Department of Molecular, Cellular and Developmental Biology, University of California Santa Cruz, Santa Cruz, California, USA.

出版信息

PLoS One. 2008 Oct 3;3(10):e3346. doi: 10.1371/journal.pone.0003346.

Abstract

BACKGROUND

The epidermal cells of the C. elegans embryo undergo coordinated cell shape changes that result in the morphogenetic process of elongation. The cytoskeletal ankyrin repeat protein VAB-19 is required for cell shape changes and localizes to cell-matrix attachment structures. The molecular functions of VAB-19 in this process are obscure, as no previous interactors for VAB-19 have been described.

METHODOLOGY/PRINCIPAL FINDINGS: In screens for VAB-19 binding proteins we identified the signaling adaptor EPS-8. Within C. elegans epidermal cells, EPS-8 and VAB-19 colocalize at cell-matrix attachment structures. The central domain of EPS-8 is necessary and sufficient for its interaction with VAB-19. eps-8 null mutants, like vab-19 mutants, are defective in epidermal elongation and in epidermal-muscle attachment. The eps-8 locus encodes two isoforms, EPS-8A and EPS-8B, that appear to act redundantly in epidermal elongation. The function of EPS-8 in epidermal development involves its N-terminal PTB and central domains, and is independent of its C-terminal SH3 and actin-binding domains. VAB-19 appears to act earlier in the biogenesis of attachment structures and may recruit EPS-8 to these structures.

CONCLUSIONS/SIGNIFICANCE: EPS-8 and VAB-19 define a novel pathway acting at cell-matrix attachments to regulate epithelial cell shape. This is the first report of a role for EPS-8 proteins in cell-matrix attachments. The existence of EPS-8B-like isoforms in Drosophila suggests this function of EPS-8 proteins could be conserved among other organisms.

摘要

背景

秀丽隐杆线虫胚胎的表皮细胞经历协调的细胞形状变化,从而导致伸长的形态发生过程。细胞骨架锚蛋白重复序列蛋白VAB - 19是细胞形状变化所必需的,并定位于细胞 - 基质附着结构。VAB - 19在此过程中的分子功能尚不清楚,因为此前尚未描述过VAB - 19的相互作用蛋白。

方法/主要发现:在筛选VAB - 19结合蛋白的过程中,我们鉴定出了信号转导衔接蛋白EPS - 8。在秀丽隐杆线虫的表皮细胞内,EPS - 8和VAB - 19共定位于细胞 - 基质附着结构。EPS - 8的中央结构域对于其与VAB - 19的相互作用是必需且充分的。与vab - 19突变体一样,eps - 8基因敲除突变体在表皮伸长和表皮 - 肌肉附着方面存在缺陷。eps - 8基因座编码两种异构体,EPS - 8A和EPS - 8B,它们在表皮伸长过程中似乎发挥冗余作用。EPS - 8在表皮发育中的功能涉及其N端的PTB结构域和中央结构域,且独立于其C端的SH3结构域和肌动蛋白结合结构域。VAB - 19似乎在附着结构的生物发生过程中更早发挥作用,并可能将EPS - 8招募至这些结构。

结论/意义:EPS - 8和VAB - 19定义了一条作用于细胞 - 基质附着以调节上皮细胞形状的新途径。这是关于EPS - 8蛋白在细胞 - 基质附着中的作用的首次报道。果蝇中存在EPS - 8B样异构体表明EPS - 8蛋白的这种功能可能在其他生物体中保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8016/2553197/12c2464d3936/pone.0003346.g001.jpg

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