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v-Src激酶结构域中的成簇半胱氨酸残基:对蛋白质稳定性、细胞转化及对除草菌素A敏感性的关键作用

Clustered cysteine residues in the kinase domain of v-Src: critical role for protein stability, cell transformation and sensitivity to herbimycin A.

作者信息

Senga T, Miyazaki K, Machida K, Iwata H, Matsuda S, Nakashima I, Hamaguchi M

机构信息

Department of Molecular Pathogenesis, Nagoya University School of Medicine, 65 Tsurumai-cho, Showa-Ku, Nagoya 466-8550, Japan.

出版信息

Oncogene. 2000 Jan 13;19(2):273-9. doi: 10.1038/sj.onc.1203296.

Abstract

We have previously reported the activation of Src by mercuric chloride based on the sulfhydryl modification. To evaluate the significance of cysteine residues in v-Src, we replaced each cysteine to alanine by oligonucleotide-directed mutagenesis and examined its effect on cell transformation. Of ten cysteine residues scattered over v-Src, four cysteines clustered in kinase domain, Cys483, Cys487, Cys496 and Cys498, were important for protein stability and cell transformation, whereas those in SH2 domain were dispensable. A single mutation in Cys498 yielded suppression of kinase activity and a temperature-sensitivity in anchorage independent growth. Double mutation either in Cys483/Cys487 or in Cys496/Cys498 yielded clear temperature-sensitivity in cell transformation and in stability of Src protein. Instability of Src protein was magnified by quadruple mutation in the cysteines, which decreased the half-life of Src to be less than one quarter of that of wild-type. In addition, both Cys483/Cyr487 and Cys496/Cys498 kinases became resistant to in vitro inactivation by herbimycin A, which directly inactivates v-Src in addition to its effect on HSP90. Taken together, our results strongly suggest that the cysteine clustered motif of v-Src are critical for protein stability, cell transformation and in vitro inactivation by herbimycin A.

摘要

我们之前曾报道过基于巯基修饰的氯化汞对Src的激活作用。为了评估v-Src中半胱氨酸残基的重要性,我们通过寡核苷酸定向诱变将每个半胱氨酸替换为丙氨酸,并检测其对细胞转化的影响。在v-Src中分散的10个半胱氨酸残基中,聚集在激酶结构域的4个半胱氨酸,即Cys483、Cys487、Cys496和Cys498,对蛋白质稳定性和细胞转化很重要,而SH2结构域中的半胱氨酸则是可有可无的。Cys498中的单个突变导致激酶活性受到抑制,并在不依赖贴壁生长中产生温度敏感性。Cys483/Cys487或Cys496/Cys498中的双突变在细胞转化和Src蛋白稳定性方面产生明显的温度敏感性。半胱氨酸的四重突变放大了Src蛋白的不稳定性,使Src的半衰期缩短至野生型的四分之一以下。此外,Cys483/Cyr487和Cys496/Cys498激酶对除草霉素A的体外失活均产生抗性,除草霉素A除了对HSP90有作用外,还能直接使v-Src失活。综上所述,我们的结果强烈表明,v-Src的半胱氨酸聚集基序对蛋白质稳定性、细胞转化以及除草霉素A的体外失活至关重要。

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