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小家鼠细胞周期蛋白依赖性激酶3基因中的一个提前终止突变。

A premature-termination mutation in the Mus musculus cyclin-dependent kinase 3 gene.

作者信息

Ye X, Zhu C, Harper J W

机构信息

Department of Biochemistry and Molecular Biology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Feb 13;98(4):1682-6. doi: 10.1073/pnas.98.4.1682. Epub 2001 Feb 6.

Abstract

Our understanding of the mammalian cell cycle is due in large part to the analysis of cyclin-dependent kinase (CDK) 2 and CDK4/6. These kinases are regulated by E and D type cyclins, respectively, and coordinate the G(1)/S-phase transition. In contrast, little is known about CDK3, a homolog of CDK2 and cell division cycle kinase 2 (CDC2). Previous studies using ectopic expression of human CDK3 suggest a role for this kinase in the G(1)/S-phase transition, but analysis of the endogenous kinase has been stymied by the low levels of protein present in cells and by the absence of an identifiable cyclin partner. Herein we report the presence of a single point mutation in the CDK3 gene from several Mus musculus strains commonly used in the laboratory. This mutation results in the replacement of a conserved tryptophan (Trp-187) within kinase consensus domain IX with a stop codon. The protein predicted to be encoded by this allele is truncated near the T loop, which is involved in activation by CDK-activating kinase. This mutation also deletes motif XI known to be required for kinase function and is, therefore, expected to generate a null allele. In stark contrast, CDK3 from two wild-mice species (Mus spretus and Mus mus castaneus) lack this mutation. These data indicate that CDK3 is not required for M. musculus development and suggest that any functional role played by CDK3 in the G(1)/S-phase transition is likely to be redundant with another CDK.

摘要

我们对哺乳动物细胞周期的理解在很大程度上归功于对细胞周期蛋白依赖性激酶(CDK)2和CDK4/6的分析。这些激酶分别受E型和D型细胞周期蛋白调节,并协调G(1)/S期转换。相比之下,人们对CDK3知之甚少,它是CDK2和细胞分裂周期激酶2(CDC2)的同源物。先前使用人CDK3异位表达的研究表明该激酶在G(1)/S期转换中起作用,但由于细胞中存在的蛋白水平较低以及缺乏可识别的细胞周期蛋白伴侣,对内源激酶的分析受到阻碍。在此我们报告了来自实验室常用的几种小家鼠品系的CDK3基因中存在一个单点突变。该突变导致激酶保守结构域IX内的一个保守色氨酸(Trp-187)被一个终止密码子取代。预计由该等位基因编码的蛋白质在T环附近被截断,T环参与CDK激活激酶的激活。该突变还删除了已知激酶功能所需的基序XI,因此预计会产生一个无效等位基因。与之形成鲜明对比的是,来自两种野生小鼠物种(西班牙小鼠和栗色小鼠)的CDK3没有这种突变。这些数据表明CDK3对小家鼠的发育不是必需的,并表明CDK3在G(1)/S期转换中所起的任何功能作用可能与另一种CDK冗余。

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