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v-Fms癌基因产物的酪氨酸807控制细胞形态以及与p120RasGAP的结合。

Tyrosine 807 of the v-Fms oncogene product controls cell morphology and association with p120RasGAP.

作者信息

Trouliaris S, Smola U, Chang J H, Parsons S J, Niemann H, Tamura T

机构信息

Institut für Virologie, Justus-Liebig-Universität Giessen, Germany.

出版信息

J Virol. 1995 Oct;69(10):6010-20. doi: 10.1128/JVI.69.10.6010-6020.1995.

Abstract

Expression of the v-fms oncogene of feline sarcoma virus in fibroblasts causes surface exposure of an activated receptor tyrosine kinase, v-Fms, that is autophosphorylated at multiple sites within its cytoplasmic domain. Cellular proteins interacting with this part of v-Fms modulate the mitogenic activity and morphology of the cells. We show here that the tyrosine residue in position 807 (Y-807) of the v-Fms molecule constitutes a major autophosphorylation site. The replacement of this residue by phenylalanine (Y807F mutation) allowed us to functionally dissect v-Fms-specific mitogenic and morphogenic cascades. Cells expressing the mutant v-Fms molecule resembled wild-type (wt) v-Fms-transformed (wt-v-Fms) cells in terms of [3H]thymidine uptake rates and activation of the Ras/Raf-1 mitogenic cascade. Such cells showed, however, a flat morphology and contained intact actin cables and fibronectin network. Our studies indicate that the v-Fms molecule controls cell morphology by a cascade that involves a direct interaction with p120RasGAP and p190RhoGAP: (i) in contrast to wt v-Fms molecules, the Y807F v-Fms protein failed to associate with and phosphorylate p120RasGAP; (ii) tight complexes between p120RasGAP and p190RhoGAP as well as detectable RhoGAP activity were present exclusively in wt-v-Fms cells; and (iii) p190RhoGAP was dispersed throughout the cytoplasm of wt-v-Fms cells, whereas its distribution was restricted to perinuclear regions of cells expressing the mutant v-Fms gene.

摘要

猫肉瘤病毒的v-fms癌基因在成纤维细胞中的表达会导致活化的受体酪氨酸激酶v-Fms在细胞表面暴露,该激酶在其细胞质结构域内的多个位点发生自身磷酸化。与v-Fms这一部分相互作用的细胞蛋白会调节细胞的有丝分裂活性和形态。我们在此表明,v-Fms分子第807位的酪氨酸残基(Y-807)构成一个主要的自身磷酸化位点。用苯丙氨酸取代该残基(Y807F突变)使我们能够从功能上剖析v-Fms特异性的有丝分裂和形态发生级联反应。表达突变型v-Fms分子的细胞在[³H]胸苷摄取率和Ras/Raf-1有丝分裂级联反应的激活方面与野生型(wt)v-Fms转化的(wt-v-Fms)细胞相似。然而,这类细胞呈现扁平形态,含有完整的肌动蛋白丝束和纤连蛋白网络。我们的研究表明,v-Fms分子通过一个涉及与p120RasGAP和p190RhoGAP直接相互作用的级联反应来控制细胞形态:(i)与wt v-Fms分子不同,Y807F v-Fms蛋白无法与p120RasGAP结合并使其磷酸化;(ii)p120RasGAP和p190RhoGAP之间的紧密复合物以及可检测到的RhoGAP活性仅存在于wt-v-Fms细胞中;(iii)p190RhoGAP分散在wt-v-Fms细胞的整个细胞质中,而其分布局限于表达突变型v-Fms基因的细胞的核周区域。

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