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W突变对p145c-kit酪氨酸激酶活性及底物相互作用的差异效应。

Differential effects of W mutations on p145c-kit tyrosine kinase activity and substrate interaction.

作者信息

Herbst R, Shearman M S, Obermeier A, Schlessinger J, Ullrich A

机构信息

Department of Molecular Biology, Max-Planck-Institut für Biochemie, Martinsried, Federal Republic of Germany.

出版信息

J Biol Chem. 1992 Jul 5;267(19):13210-6.

PMID:1377679
Abstract

The c-kit gene, mapped to the dominant white spotting (W) locus of the mouse (Chabot, B., Stephenson, D. A., Chapman, V. M., Besmer, P., and Bernstein, A. (1988) Nature 335, 88-89; Geissler, E. N., Ryan, M. A., and Housman, D. E. (1988) Cell 55, 185-192), encodes a receptor tyrosine kinase, p145c-kit. Germline mutations at the W locus lead to loss of function alterations in p145c-kit, and result in mice with developmental defects of varying severity in the melanocytic, hematopoietic stem cell, and primordial germ cell lineages. To investigate in more detail the effect of W mutations on p145c-kit signaling, three mutations, W42, Wv, and W41, that confer severe, intermediate, and mild phenotypic characteristics, respectively, were introduced into the human p145c-kit tyrosine kinase domain. These mutations attenuated the intrinsic tyrosine kinase activity of the receptor to different degrees. In addition, they had differential effects on the interaction of the p145c-kit substrates, phospholipase C gamma, GTPase-activating protein, and the receptor-binding subunit of phosphatidylinositol 3'-kinase, p85. Notably, the Wv mutation, while retaining significant receptor tyrosine kinase activity, was unable to bind phospholipase C gamma and GTPase-activating protein, but could still associate with p85. These results suggest that the location of W mutations may be an important determinant of the specificity of substrate association and phosphorylation, and may explain, at least in part, the cell type-specific defects associated with certain W alleles.

摘要

原癌基因c-kit定位于小鼠的显性白斑(W)位点(查博特,B.,斯蒂芬森,D.A.,查普曼,V.M.,贝斯默,P.,和伯恩斯坦,A.(1988年)《自然》335卷,88 - 89页;盖斯勒,E.N.,瑞安,M.A.,和豪斯曼,D.E.(1988年)《细胞》55卷,185 - 192页),编码一种受体酪氨酸激酶p145c-kit。W位点的种系突变导致p145c-kit功能丧失性改变,并导致小鼠在黑素细胞、造血干细胞和原始生殖细胞谱系中出现不同严重程度的发育缺陷。为了更详细地研究W突变对p145c-kit信号传导的影响,分别赋予严重、中度和轻度表型特征的三个突变W42、Wv和W41被引入人p145c-kit酪氨酸激酶结构域。这些突变不同程度地减弱了受体的内在酪氨酸激酶活性。此外,它们对p145c-kit底物磷脂酶Cγ、GTP酶激活蛋白和磷脂酰肌醇3'-激酶的受体结合亚基p85的相互作用有不同影响。值得注意的是,Wv突变虽然保留了显著的受体酪氨酸激酶活性,但无法结合磷脂酶Cγ和GTP酶激活蛋白,但仍能与p85结合。这些结果表明,W突变的位置可能是底物结合和磷酸化特异性的重要决定因素,并且可能至少部分解释了与某些W等位基因相关的细胞类型特异性缺陷。

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