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人胸苷激酶1的有丝分裂降解依赖于后期促进复合物/细胞周期体-CDH1介导的途径。

Mitotic degradation of human thymidine kinase 1 is dependent on the anaphase-promoting complex/cyclosome-CDH1-mediated pathway.

作者信息

Ke Po-Yuan, Chang Zee-Fen

机构信息

Graduate Institute of Biochemistry and Molecular Biology, National Taiwan University College of Medicine, No. 1, Section 1 Jen-Ai Road, Taipei 100, Taiwan, Republic of China.

出版信息

Mol Cell Biol. 2004 Jan;24(2):514-26. doi: 10.1128/MCB.24.2.514-526.2004.

Abstract

The expression of human thymidine kinase 1 (hTK1) is highly dependent on the growth states and cell cycle stages in mammalian cells. The amount of hTK1 is significantly increased in the cells during progression to the S and M phases, and becomes barely detectable in the early G(1) phase by a proteolytic control during mitotic exit. This tight regulation is important for providing the correct pool of dTTP for DNA synthesis at the right time in the cell cycle. Here, we investigated the mechanism responsible for mitotic degradation of hTK1. We show that hTK1 is degraded via a ubiquitin-proteasome pathway in mammalian cells and that anaphase-promoting complex/cyclosome (APC/C) activator Cdh1 is not only a necessary but also a rate-limiting factor for mitotic degradation of hTK1. Furthermore, a KEN box sequence located in the C-terminal region of hTK1 is required for its mitotic degradation and interaction capability with Cdh1. By in vitro ubiquitinylation assays, we demonstrated that hTK1 is targeted for degradation by the APC/C-Cdh1 ubiquitin ligase dependent on this KEN box motif. Taken together, we concluded that activation of the APC/C-Cdh1 complex during mitotic exit controls timing of hTK1 destruction, thus effectively minimizing dTTP formation from the salvage pathway in the early G(1) phase of the cell cycle in mammalian cells.

摘要

人胸苷激酶1(hTK1)的表达高度依赖于哺乳动物细胞的生长状态和细胞周期阶段。在细胞进入S期和M期的过程中,hTK1的量显著增加,而在有丝分裂退出时通过蛋白水解控制,在G1期早期几乎检测不到。这种严格的调控对于在细胞周期的正确时间为DNA合成提供正确的dTTP池很重要。在这里,我们研究了hTK1有丝分裂降解的机制。我们发现hTK1在哺乳动物细胞中通过泛素-蛋白酶体途径降解,后期促进复合物/细胞周期体(APC/C)激活剂Cdh1不仅是hTK1有丝分裂降解的必要因素,也是限速因素。此外,位于hTK1 C末端区域的KEN盒序列是其有丝分裂降解和与Cdh1相互作用能力所必需的。通过体外泛素化试验,我们证明hTK1通过依赖于该KEN盒基序的APC/C-Cdh1泛素连接酶被靶向降解。综上所述,我们得出结论,有丝分裂退出期间APC/C-Cdh1复合物的激活控制着hTK1破坏的时间,从而有效地减少了哺乳动物细胞周期G1期早期补救途径中dTTP的形成。

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