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突触黏附蛋白与 LIM 结构域蛋白 zyxin 相互作用,对于细胞黏附和迁移是必需的。

Synemin interacts with the LIM domain protein zyxin and is essential for cell adhesion and migration.

机构信息

Muscle Biology Group, Department of Biochemistry, Biophysics and Molecular Biology and of Animal Science, Iowa State University, Ames, 3110 Molecular Biology Bldg, IA 50011-3260, USA.

出版信息

Exp Cell Res. 2010 Feb 1;316(3):491-505. doi: 10.1016/j.yexcr.2009.10.015. Epub 2009 Oct 21.

Abstract

Synemin is a unique cytoplasmic intermediate filament protein for which there is limited understanding of its exact cellular functions. The single human synemin gene encodes at least two splice variants named alpha-synemin and beta-synemin, with the larger alpha-synemin containing an additional 312 amino acid insert within the C-terminal tail domain. We report herein that, by using the entire tail domain of the smaller beta-synemin as the bait in a yeast two-hybrid screen of a human skeletal muscle cDNA library, the LIM domain protein zyxin was identified as an interaction partner for human synemin. The synemin binding site in human zyxin was subsequently mapped to the C-terminal three tandem LIM-domain repeats, whereas the binding site for zyxin within beta-synemin is within the C-terminal 332 amino acid region (SNbetaTII) at the end of the long tail domain. Transient expression of SNbetaTII within mammalian cells markedly reduced zyxin protein level, blocked localization of zyxin at focal adhesion sites and resulted in decreased cell adhesion and increased motility. Knockdown of synemin expression with siRNAs within mammalian cells resulted in significantly compromised cell adhesion and cell motility. Our results suggest that synemin participates in focal adhesion dynamics and is essential for cell adhesion and migration.

摘要

神经束蛋白是一种独特的细胞质中间丝蛋白,其确切的细胞功能还知之甚少。人类单个神经束蛋白基因至少编码两种剪接变体,命名为α-神经束蛋白和β-神经束蛋白,较大的α-神经束蛋白在 C 末端尾部结构域内含有另外 312 个氨基酸插入。我们在此报告,使用较小的β-神经束蛋白的整个尾部结构域作为酵母双杂交筛选人骨骼肌 cDNA 文库的诱饵,发现 LIM 结构域蛋白 zyxin 是人神经束蛋白的相互作用伙伴。人 zyxin 中的神经束蛋白结合位点随后被映射到 C 末端三个串联 LIM 结构域重复,而 zyxin 在β-神经束蛋白中的结合位点位于长尾部末端的 C 末端 332 个氨基酸区域(SNbetaTII)。哺乳动物细胞中瞬时表达 SNbetaTII 显著降低了 zyxin 蛋白水平,阻止了 zyxin 在粘着斑部位的定位,并导致细胞粘着减少和运动性增加。用 siRNA 在哺乳动物细胞中敲低神经束蛋白表达导致细胞粘着和细胞运动性显著受损。我们的结果表明,神经束蛋白参与粘着斑动力学,对于细胞粘着和迁移是必需的。

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