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非洲爪蟾细胞周期蛋白依赖性激酶抑制剂p27Xic1的C末端结构域对于不依赖磷酸化的蛋白水解而言既是必要的也是充分的。

The C-terminal domain of the Xenopus cyclin-dependent kinase inhibitor, p27Xic1, is both necessary and sufficient for phosphorylation-independent proteolysis.

作者信息

Chuang Li-Chiou, Zhu Xi-Ning, Herrera Carlos R, Tseng Hui-Min, Pfleger Cathie M, Block Karen, Yew P Renee

机构信息

Department of Molecular Medicine, Institute of Biotechnology, University of Texas Health Science Center at San Antonio, San Antonio, Texas 78245, USA.

出版信息

J Biol Chem. 2005 Oct 21;280(42):35290-8. doi: 10.1074/jbc.M506430200. Epub 2005 Aug 23.

Abstract

Cell cycle progression is regulated by cyclin-dependent kinases (CDKs), cyclins, and CDK inhibitors. In the frog, Xenopus laevis, the CDK inhibitor p27(Xic1) (Xic1) inhibits DNA synthesis by negatively regulating CDK2-cyclin E. Using the frog egg extract as a model system for the study of Xic1, studies have demonstrated that Xic1 protein levels are regulated by nuclear ubiquitination and proteolysis. To characterize the molecular mechanism that regulates Xic1 turnover, we have identified the minimal sequences of Xic1 that are necessary and sufficient for its nuclear ubiquitination and degradation. Using deletion mutagenesis, our studies indicated that the C-terminal 50 amino acids of Xic1 are critical for its proteolysis beyond a role in nuclear transport. Replacement of the Xic1 C terminus with the SV40 nuclear localization sequence resulted in the nuclear localization of Xic1 but not its ubiquitination or degradation. Our deletion studies also indicated that the CDK2-cyclin binding domain of Xic1 is important for its efficient retention in the nucleus. Further deletion analyses identified at least 3 lysine residues within the Xic1 C terminus that are targeted for specific ubiquitination. Importantly, our studies demonstrated that the Xic1 C-terminal 50 amino acids can serve as a nuclear degradation signal when fused to a stable heterologous nuclear protein. Moreover, a 30-amino-acid region within the C terminus of Xic1 can serve as a nuclear ubiquitination signal. To address the role of phosphorylation on Xic1 turnover, all the potential phosphorylation sites within the C-terminal 50 amino acids of Xic1 were mutated to alanine to prevent possible phosphorylation. This resulted in a Xic1 protein that was nevertheless degraded in a manner similar to wild-type Xic1, suggesting that phosphorylation of Xic1 is not critical for its nuclear ubiquitination or proteolysis.

摘要

细胞周期进程受细胞周期蛋白依赖性激酶(CDK)、细胞周期蛋白和CDK抑制剂调控。在非洲爪蟾(Xenopus laevis)中,CDK抑制剂p27(Xic1)(Xic1)通过负向调节CDK2-细胞周期蛋白E来抑制DNA合成。利用蛙卵提取物作为研究Xic1的模型系统,研究表明Xic1蛋白水平受细胞核泛素化和蛋白水解调控。为了阐明调节Xic1周转的分子机制,我们确定了Xic1的最小序列,该序列对于其细胞核泛素化和降解是必需且充分的。通过缺失诱变,我们的研究表明,Xic1的C末端50个氨基酸对于其蛋白水解至关重要,这超出了其在核转运中的作用。用SV40核定位序列替换Xic1的C末端导致Xic1定位于细胞核,但不发生泛素化或降解。我们的缺失研究还表明,Xic1的CDK2-细胞周期蛋白结合结构域对于其在细胞核中的有效保留很重要。进一步的缺失分析确定了Xic1 C末端至少3个赖氨酸残基是特异性泛素化的靶点。重要的是,我们的研究表明,当与稳定的异源核蛋白融合时,Xic1的C末端50个氨基酸可作为核降解信号。此外,Xic1 C末端内的一个30个氨基酸区域可作为核泛素化信号。为了研究磷酸化对Xic1周转的作用,将Xic1 C末端50个氨基酸内的所有潜在磷酸化位点突变为丙氨酸以防止可能的磷酸化。这产生了一种Xic1蛋白,但其降解方式与野生型Xic1相似,表明Xic1的磷酸化对于其细胞核泛素化或蛋白水解并不关键。

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