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首页> 外文期刊>Journal of cell biology >Actin mutations that show suppression with fimbrin mutations identify a likely fimbrin-binding site on actin.
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Actin mutations that show suppression with fimbrin mutations identify a likely fimbrin-binding site on actin.

机译:显示被纤维蛋白突变抑制的肌动蛋白突变鉴定了肌动蛋白上可能的纤维蛋白结合位点。

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Actin interacts with a large number of different proteins that modulate its assembly and mediate its functions. One such protein is the yeast actin-binding protein Sac6p, which is homologous to vertebrate fimbrin (Adams, A. E. M., D. Botstein, and D. G. Drubin. 1991. Nature (Lond.). 354:404-408.). Sac6p was originally identified both genetically (Adams, A. E. M., and D. Botstein. 1989. Genetics. 121:675-683.) by dominant, reciprocal suppression of a temperature-sensitive yeast actin mutation (act1-1), as well as biochemically (Drubin, D. G., K. G. Miller, and D. Botstein. 1988. J. Cell Biol. 107: 2551-2561.). To identify the region on actin that interacts with Sac6p, we have analyzed eight different act1 mutations that show suppression with sac6 mutant alleles, and have asked whether (a) these mutations occur in a small defined region on the crystal structure of actin; and (b) the mutant actins are defective in their interaction with Sac6p in vitro. Sequence analysis indicates that all of these mutations change residues that cluster in the small domain of the actin crystal structure, suggesting that this region is an important part of the Sac6p-binding domain. Biochemical analysis reveals defects in the ability of several of the mutant actins to bind Sac6p, and a reduction in Sac6p-induced cross-linking of mutant actin filaments. Together, these observations identify a likely site of interaction of fimbrin on actin.
机译:肌动蛋白与大量不同的蛋白质相互作用,从而调节其组装并介导其功能。一种这样的蛋白是酵母肌动蛋白结合蛋白Sac6p,其与脊椎动物纤蛋白(Adams,A.E.M.,D.Botstein,和D.G.Drubin.1991.Nature(Lond。)。354:404-408。)同源。 Sac6p最初是通过显性,相互抑制温度敏感性酵母肌动蛋白突变(act1-1)以及通过生物化学方法从遗传学上(Adams,AEM和D. Botstein。1989. Genetics。121:675-683。)鉴定的。 (Drubin,DG,KG Miller,和D.Botstein.1988。J.CellBiol.107:2551-2561。)。为了鉴定肌动蛋白上与Sac6p相互作用的区域,我们分析了八个不同的act1突变,这些突变显示了sac6突变等位基因的抑制作用,并询问(a)这些突变是否发生在肌动蛋白晶体结构上的一个小区域内; (b)突变肌动蛋白在体外与Sac6p的相互作用存在缺陷。序列分析表明,所有这些突变都改变了聚集在肌动蛋白晶体结构小结构域中的残基,表明该区域是Sac6p结合结构域的重要组成部分。生化分析显示几种突变肌动蛋白结合Sac6p的能力存在缺陷,并且Sac6p诱导的突变肌动蛋白丝的交联减少。这些观察结果共同确定了纤维蛋白在肌动蛋白上相互作用的可能部位。

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