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原肌球蛋白调节蛋白在细胞上皮形态发生过程中,抵抗应激条件下的 α-连环蛋白依赖的连接-肌动蛋白网络。

Tropomodulin protects α-catenin-dependent junctional-actin networks under stress during epithelial morphogenesis.

机构信息

Department of Biology, State University of New York at Geneseo, 353 Integrated Science Center, 1 College Circle, Geneseo, NY 14454, USA.

出版信息

Curr Biol. 2012 Aug 21;22(16):1500-5. doi: 10.1016/j.cub.2012.06.025. Epub 2012 Jul 5.

Abstract

α-catenin is central to recruitment of actin networks to the cadherin-catenin complex, but how such networks are subsequently stabilized against stress applied during morphogenesis is poorly understood. To identify proteins that functionally interact with α-catenin in this process, we performed enhancer screening using a weak allele of the C. elegans α-catenin, hmp-1, thereby identifying UNC-94/tropomodulin. Tropomodulins (Tmods) cap the minus ends of F-actin in sarcomeres. They also regulate lamellipodia, can promote actin nucleation, and are required for normal cardiovascular development and neuronal growth-cone morphology. Tmods regulate the morphology of cultured epithelial cells, but their role in epithelia in vivo remains unexplored. We find that UNC-94 is enriched within a HMP-1-dependent junctional-actin network at epidermal adherens junctions subject to stress during morphogenesis. Loss of UNC-94 leads to discontinuity of this network, and high-speed filming of hmp-1(fe4);unc-94(RNAi) embryos reveals large junctional displacements that depend on the Rho pathway. In vitro, UNC-94 acts in combination with HMP-1, leading to longer actin bundles than with HMP-1 alone. Our data suggest that Tmods protect actin filaments recruited by α-catenin from minus-end subunit loss, enabling them to withstand the stresses of morphogenesis.

摘要

α-连环蛋白是将肌动蛋白网络募集到钙粘蛋白-连环蛋白复合物的核心,但对于这些网络如何在形态发生过程中应对施加的压力而得到稳定,人们知之甚少。为了鉴定在这个过程中与α-连环蛋白功能相互作用的蛋白质,我们使用 C. elegans 的α-连环蛋白弱等位基因 hmp-1 进行了增强筛选,从而鉴定出 UNC-94/原肌球蛋白。原肌球蛋白(Tmods)在肌节中加帽 F-肌动蛋白的负端。它们还调节片状伪足,可以促进肌动蛋白成核,并且是正常心血管发育和神经元生长锥形态所必需的。Tmods 调节培养的上皮细胞的形态,但它们在体内上皮组织中的作用仍未被探索。我们发现,UNC-94 在表皮黏着连接处的 HMP-1 依赖性连接肌动蛋白网络中富集,该网络在形态发生过程中受到压力。UNC-94 的缺失导致该网络的不连续性,并且对 hmp-1(fe4);unc-94(RNAi) 胚胎进行高速拍摄显示出依赖 Rho 途径的大连接位移。在体外,UNC-94 与 HMP-1 结合发挥作用,导致肌动蛋白束比单独使用 HMP-1 更长。我们的数据表明,Tmods 保护由α-连环蛋白募集的肌动蛋白丝免于末端亚基丢失,使它们能够承受形态发生的压力。

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