Src homology 2 domain substitution modulates the kinase and transforming activities of the Fes protein-tyrosine kinase.

J A Rogers, H Y Cheng, T E Smithgall
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Abstract

The c-fes proto-oncogene encodes a Mr 93,000 protein-tyrosine kinase (Fes) that is strongly expressed in myeloid cells and has been implicated in myelomonocytic differentiation. Fes autophosphorylation and transforming activity are highly restrained after ectopic expression in fibroblasts, indicating tight negative regulation of Fes kinase activity in vivo. Here we investigated the regulatory role of the Fes Src homology 2 (SH2) domain by producing a series of chimeric constructs in which the Fes SH2 domain was replaced with those of the transforming oncogenes v-Fps and v-Src or by the NH2-terminal SH2 domain of the Ras GTPase-activating protein. Wild-type and chimeric Fes proteins readily underwent tyrosine autophosphorylation in vitro and produced identical cyanogen bromide phosphopeptide cleavage patterns, indicating that the SH2 substitutions did not influence overall kinase activity or autophosphorylation site selection. However, metabolic labeling of Rat-2 fibroblasts expressing each construct showed that only the Fes/Src SH2 chimera was active in vivo. Consistent with this result, the Fes/Src SH2 domain chimera exhibited potent transforming activity in fibroblasts and enhanced differentiation-inducing activity in K-562 myeloid leukemia cells. In addition, the Fes/Src SH2 chimera exhibited constitutive localization to focal adhesions in Rat-2 fibroblasts and induced the attachment and spreading of TF-1 myeloid cells. These data demonstrate a central role for the SH2 domain in the regulation of Fes kinase activity and biological function in vivo.

Src同源2结构域取代调节Fes蛋白酪氨酸激酶的激酶和转化活性。
c-fes原癌基因编码Mr 93,000蛋白酪氨酸激酶(Fes),该蛋白酪氨酸激酶在髓细胞中强烈表达,并与髓单核细胞分化有关。在成纤维细胞中异位表达后,Fes的自磷酸化和转化活性受到高度抑制,表明体内Fes激酶活性受到严格的负调控。在这里,我们通过制造一系列嵌合结构来研究Fes Src同源2 (SH2)结构域的调控作用,其中Fes SH2结构域被转化癌基因v-Fps和v-Src或Ras gtpase激活蛋白的nh2末端SH2结构域取代。野生型和嵌合型Fes蛋白在体外容易发生酪氨酸自磷酸化,并产生相同的溴化氰磷酸肽切割模式,表明SH2取代不影响总体激酶活性或自磷酸化位点选择。然而,表达每种结构的大鼠-2成纤维细胞的代谢标记表明,只有Fes/Src SH2嵌合体在体内是活跃的。与此结果一致,Fes/Src SH2结构域嵌合体在成纤维细胞中表现出强大的转化活性,并在K-562髓系白血病细胞中表现出增强的诱导分化活性。此外,Fes/Src SH2嵌合体在大鼠-2成纤维细胞中表现出局部黏附的组成性定位,并诱导TF-1骨髓细胞的黏附和扩散。这些数据表明SH2结构域在体内Fes激酶活性和生物学功能的调控中起着核心作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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