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肌动蛋白细胞骨架的组织不当会影响起始阶段的蛋白质合成。

Improper organization of the actin cytoskeleton affects protein synthesis at initiation.

作者信息

Gross Stephane R, Kinzy Terri Goss

机构信息

Department of Molecular Genetics, Robert Wood Johnson Medical School, University of Medicine and Dentistry of New Jersey, Piscataway, NJ 08854, USA.

出版信息

Mol Cell Biol. 2007 Mar;27(5):1974-89. doi: 10.1128/MCB.00832-06. Epub 2006 Dec 18.

Abstract

Although the actin cytoskeleton and the translation machinery are considered to be separate cellular complexes, growing evidence supports overlapping regulation of the two systems. Because of its interaction with actin, the eukaryotic translation elongation factor 1A (eEF1A) is proposed to be a regulator or link between these processes. Using a genetic approach with the yeast Saccharomyces cerevisiae, specific regions of eEF1A responsible for actin interactions and bundling were identified. Five new mutations were identified along one face of eEF1A. Dramatic changes in cell growth, cell morphology, and actin cable and patch formation as well as a unique effect on total translation in strains expressing the F308L or S405P eEF1A mutant form were observed. The translation effects do not correlate with reduced translation elongation but instead include an initiation defect. Biochemical analysis of the eEF1A mutant forms demonstrated reduced actin-bundling activity in vitro. Reduced total translation and/or the accumulation of 80S ribosomes in strains with either a mutation or a null allele of genes encoding actin itself or actin-regulating proteins Tpm1p, Mdm20p, and Bnirp/Bni1p was observed. Our data demonstrate that eEF1A, other actin binding proteins, and actin mutants affect translation initiation through the actin cytoskeleton.

摘要

尽管肌动蛋白细胞骨架和翻译机制被认为是独立的细胞复合体,但越来越多的证据支持这两个系统存在重叠调控。由于真核翻译延伸因子1A(eEF1A)与肌动蛋白相互作用,它被认为是这些过程之间的调节因子或连接物。利用酿酒酵母的遗传学方法,确定了eEF1A中负责与肌动蛋白相互作用和捆绑的特定区域。在eEF1A的一个面上发现了五个新突变。观察到表达F308L或S405P eEF1A突变形式的菌株在细胞生长、细胞形态、肌动蛋白电缆和斑块形成方面发生了显著变化,以及对总翻译产生了独特影响。翻译效应与翻译延伸的降低无关,而是包括起始缺陷。对eEF1A突变形式的生化分析表明,其在体外的肌动蛋白捆绑活性降低。在编码肌动蛋白本身或肌动蛋白调节蛋白Tpm1p、Mdm20p和Bnirp/Bni1p的基因发生突变或缺失等位基因的菌株中,观察到总翻译减少和/或80S核糖体积累。我们的数据表明,eEF1A、其他肌动蛋白结合蛋白和肌动蛋白突变体通过肌动蛋白细胞骨架影响翻译起始。

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