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v-kit的致癌激活涉及一个假定的酪氨酸底物相互作用位点的缺失。

Oncogenic activation of v-kit involves deletion of a putative tyrosine-substrate interaction site.

作者信息

Herbst R, Munemitsu S, Ullrich A

机构信息

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

出版信息

Oncogene. 1995 Jan 19;10(2):369-79.

PMID:7530827
Abstract

The transforming gene of the Hardy-Zuckerman-4 strain of feline sarcoma virus, v-kit, arose by transduction of the cellular c-kit gene, which encodes the receptor tyrosine kinase (RTK) p145c-kit. To gain insight into the molecular basis of the v-kit transforming potential, we characterized the feline c-kit by cDNA cloning. Comparison of the feline v-kit and c-kit sequences revealed, in addition to deletions of the extracellular and transmembrane domains, three additional mutations in the v-kit oncogene product: deletion of tyrosine-569 and valine-570, the exchange of aspartate at position 761 to glycine, and replacement of the C-terminal 50 amino acids by five unrelated residues. Examinations of individual v-kit mutations in the context of chimeric receptors yielded inhibitory effects for some mutants on both autophosphorylation and substrate phosphorylation functions. In contrast, deletion of tyrosine-569 and valine-570 significantly enhanced transforming and mitogenic activities of p145c-kit, while the other mutations had no significant effects. Conservation in subclass III RTKs and the identification of the corresponding residue in beta PDGF-R, Y579, as a binding site for src family tyrosine kinases suggests an important role for Y568 in kit signal regulation and the definition of its oncogenic potential. Repositioning of Y571 by an inframe two codon deletion may be the crucial alteration resulting in enhancement of v-kit oncogenic activity.

摘要

猫肉瘤病毒哈代-祖克曼4型毒株的转化基因v-kit,是通过转导细胞c-kit基因产生的,该细胞基因编码受体酪氨酸激酶(RTK)p145c-kit。为深入了解v-kit转化潜能的分子基础,我们通过cDNA克隆对猫c-kit进行了表征。猫v-kit和c-kit序列的比较显示,除了细胞外和跨膜结构域的缺失外,v-kit癌基因产物还有另外三个突变:酪氨酸-569和缬氨酸-570缺失,第761位的天冬氨酸被甘氨酸替换,以及C末端的50个氨基酸被五个不相关的残基取代。在嵌合受体背景下对单个v-kit突变的检测发现,一些突变体对自身磷酸化和底物磷酸化功能均有抑制作用。相比之下,酪氨酸-569和缬氨酸-570的缺失显著增强了p145c-kit的转化和促有丝分裂活性,而其他突变则无显著影响。III类RTKs中的保守性以及在β-PDGF-R中对应残基Y579作为src家族酪氨酸激酶结合位点的鉴定表明,Y568在kit信号调节及其致癌潜能的定义中起重要作用。通过框内两个密码子缺失对Y571进行重新定位可能是导致v-kit致癌活性增强的关键改变。

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