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对INK4-CDK4/6-Rb通路的新见解:甘菊环蛋白对INK4蛋白的拮抗作用调节CDK4介导的Rb磷酸化。

Novel insights into the INK4-CDK4/6-Rb pathway: counter action of gankyrin against INK4 proteins regulates the CDK4-mediated phosphorylation of Rb.

作者信息

Li Junan, Tsai Ming-Daw

机构信息

Department of Biochemistry, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

Biochemistry. 2002 Mar 26;41(12):3977-83. doi: 10.1021/bi011550s.

Abstract

The newly discovered oncogenic protein gankyrin, which contains six ankyrin repeats, has been reported to be involved in the phosphorylation and degradation of the retinoblastoma gene product, Rb. Using in vitro systems, we have identified a peptide fragment of gankyrin, 176LHLACDEERN185, which is responsible for binding of gankyrin to Rb. We further demonstrated a different mechanism for gankyrin to facilitate the phosphorylation of Rb, by binding with cyclin-dependent kinase 4 (CDK4). This binding does not inhibit the Rb-phosphorylating kinase activity of CDK4, but it competes with p16 binding to CDK4 and counteracts the inhibitory function of p16. We then showed that binding of gankyrin to CDK4 and the consequent counter action of p16 function were not affected by the Rb-binding peptide 176LHLACDEERN185, indicating that the two mechanisms are independent. They also involve different structural regions of gankyrin. While the Rb-binding motif is located at the fifth ankyrin repeat, truncation mutants of gankyrin, with the first three or four ankyrin repeats remaining, are sufficient for binding to CDK4 and for counteracting the inhibitory function of p16. These results demonstrate the potential importance of gankyrin in cell cycle control and tumorigenesis and suggest an expanded INK4-CDK4/6-Rb pathway.

摘要

新发现的致癌蛋白甘菊环蛋白含有六个锚蛋白重复序列,据报道它参与视网膜母细胞瘤基因产物Rb的磷酸化和降解过程。利用体外系统,我们鉴定出甘菊环蛋白的一个肽段,即176LHLACDEERN185,它负责甘菊环蛋白与Rb的结合。我们进一步证明了甘菊环蛋白促进Rb磷酸化的不同机制,即通过与细胞周期蛋白依赖性激酶4(CDK4)结合来实现。这种结合并不抑制CDK4的Rb磷酸化激酶活性,但它与p16竞争结合CDK4,并抵消p16的抑制功能。然后我们发现,甘菊环蛋白与CDK4的结合以及随之而来的对p16功能的反作用不受Rb结合肽176LHLACDEERN185的影响,这表明这两种机制是相互独立的。它们还涉及甘菊环蛋白的不同结构区域。虽然Rb结合基序位于第五个锚蛋白重复序列处,但保留前三个或四个锚蛋白重复序列的甘菊环蛋白截短突变体足以与CDK4结合并抵消p16的抑制功能。这些结果证明了甘菊环蛋白在细胞周期调控和肿瘤发生中的潜在重要性,并提示了INK4 - CDK4/6 - Rb通路的扩展。

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