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β1A整合素的细胞质酪氨酸在v-src介导的转化中的作用

Role of the cytoplasmic tyrosines of beta 1A integrins in transformation by v-src.

作者信息

Sakai T, Jove R, Fässler R, Mosher D F

机构信息

Department of Medicine and University of Wisconsin Comprehensive Cancer Center, University of Wisconsin, 1300 University Avenue, Madison, WI 53706, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Mar 27;98(7):3808-13. doi: 10.1073/pnas.240456398. Epub 2001 Mar 20.

Abstract

GD25 cells lacking beta 1 integrins or expressing beta 1A with mutations of conserved cytoplasmic tyrosines (Y783, Y795) to phenylalanine have poor directed migration to platelet-derived growth factor or lysophosphatidic acid when compared with GD25 cells expressing wild-type beta 1A. We studied the effects of v-src on these cells. Transformation with v-src caused tyrosine and serine phosphorylation of wild-type beta1 A but not of Y783/795F doubly mutated beta 1A. v-src-transformed cells had rounded and/or fusiform morphology and poor assembly of fibronectin matrix. Adhesion to fibronectin or laminin and coupling of focal contacts to actin-containing cytoskeleton were preserved in transformed Y783/795F cells but lost on transformation when beta 1A was wild type. Transformed Y783/795F cells also retained ability, albeit limited, to migrate across filters, whereas transformed cells with wild-type beta 1A were unable to transverse filters. Studies of single tyrosine mutants showed that the more important tyrosine for retaining ability to adhere, assemble focal contacts, and migrate is Y783. These results suggest that overactive phosphorylation of cytoplasmic residues of beta 1A, particularly Y783, accounts in part for the phenotype of v-src-transformed cells.

摘要

与表达野生型β1A的GD25细胞相比,缺乏β1整合素或表达带有保守胞质酪氨酸(Y783、Y795)突变为苯丙氨酸的β1A的GD25细胞,对血小板衍生生长因子或溶血磷脂酸的定向迁移能力较差。我们研究了v-src对这些细胞的影响。用v-src转化导致野生型β1A的酪氨酸和丝氨酸磷酸化,但Y783/795F双突变的β1A则没有。v-src转化的细胞具有圆形和/或梭形形态,纤连蛋白基质组装不良。在转化的Y783/795F细胞中,对纤连蛋白或层粘连蛋白的粘附以及粘着斑与含肌动蛋白细胞骨架的偶联得以保留,但当β1A为野生型时,转化后则丧失。转化的Y783/795F细胞也保留了穿过滤膜迁移的能力,尽管有限,而具有野生型β1A的转化细胞则无法穿过滤膜。对单个酪氨酸突变体的研究表明,对于保留粘附、组装粘着斑和迁移能力而言,更重要的酪氨酸是Y783。这些结果表明,β1A胞质残基,特别是Y783的过度磷酸化,部分解释了v-src转化细胞的表型。

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