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肌球蛋白I的SH3结构域和TEDS规则磷酸化位点是体内功能所必需的。

The myosin I SH3 domain and TEDS rule phosphorylation site are required for in vivo function.

作者信息

Novak K D, Titus M A

机构信息

Department of Cell Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Mol Biol Cell. 1998 Jan;9(1):75-88. doi: 10.1091/mbc.9.1.75.

Abstract

The class I myosins play important roles in controlling many different types of actin-based cell movements. Dictyostelium cells either lacking or overexpressing amoeboid myosin Is have significant defects in cortical activities such as pseudopod extension, cell migration, and macropinocytosis. The existence of Dictyostelium null mutants with strong phenotypic defects permits complementation analysis as a means of exploring important functional features of the myosin I heavy chain. Mutant Dictyostelium cells lacking two myosin Is exhibit profound defects in growth, endocytosis, and rearrangement of F-actin. Expression of the full-length myoB heavy chain in these cells fully rescues the double mutant defects. However, mutant forms of the myoB heavy chain in which a serine at the consensus phosphorylation site has been altered to an alanine or in which the C-terminal SH3 domain has been removed fail to complement the null phenotype. The wild-type and mutant forms of the myoB heavy chain appeared to be properly localized when they were expressed in the myosin I null mutants. These results suggest that the amoeboid myosin I consensus phosphorylation site and SH3 domains do not play a role in the localization of myosin I, but are absolutely required for in vivo function.

摘要

I类肌球蛋白在控制许多不同类型的基于肌动蛋白的细胞运动中发挥着重要作用。缺乏或过表达变形虫肌球蛋白I的盘基网柄菌细胞在皮质活动中存在显著缺陷,如伪足延伸、细胞迁移和巨胞饮作用。具有强烈表型缺陷的盘基网柄菌基因敲除突变体的存在使得互补分析成为探索肌球蛋白I重链重要功能特征的一种手段。缺乏两种肌球蛋白I的突变盘基网柄菌细胞在生长、内吞作用和F-肌动蛋白重排方面表现出严重缺陷。在这些细胞中全长肌球蛋白B重链的表达完全挽救了双突变体的缺陷。然而,在共有磷酸化位点处的丝氨酸已被改变为丙氨酸或C末端SH3结构域已被去除的肌球蛋白B重链突变形式无法互补基因敲除表型。当野生型和突变型肌球蛋白B重链在肌球蛋白I基因敲除突变体中表达时,它们似乎定位正确。这些结果表明,变形虫肌球蛋白I共有磷酸化位点和SH3结构域在肌球蛋白I的定位中不起作用,但对于体内功能是绝对必需的。

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