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鉴定一种参与细胞周期进程和纺锤体组织的新型中心体/微管相关卷曲螺旋蛋白。

Identification of a novel centrosome/microtubule-associated coiled-coil protein involved in cell-cycle progression and spindle organization.

作者信息

Patzke Sebastian, Hauge Helena, Sioud Mouldy, Finne Eivind Farmen, Sivertsen Einar Andreas, Delabie Jan, Stokke Trond, Aasheim Hans-Christian

机构信息

Department of Immunology, The Norwegian Radium Hospital, Montebello, 0310 Oslo, Norway.

出版信息

Oncogene. 2005 Feb 10;24(7):1159-73. doi: 10.1038/sj.onc.1208267.

Abstract

Here we describe the identification of a novel vertebrate-specific centrosome/spindle pole-associated protein (CSPP) involved in cell-cycle regulation. The protein is predicted to have a tripartite domain structure, where the N- and C-terminal domains are linked through a coiled-coil mid-domain. Experimental analysis of the identified domains revealed that spindle association is dependent on the N-terminal and the coiled-coil mid domain. The expression of CSPP at the mRNA level was detected in all tested cell lines and in testis tissue. Ectopic expression of CSPP in HEK293T cells blocked cell-cycle progression in early G1 phase and in mitosis in a dose-dependent manner. Interestingly, mitosis-arrested cells contained aberrant spindles and showed impairment of chromosome congression. Inhibition of CSPP gene expression by small interfering RNAs induced cell-cycle arrest/delay in S phase. This phenotype was characterized by elevated levels of cyclin A, decreased levels of cyclin E and hyperphosphorylation of the S-phase checkpoint kinase Chk1. The activation of Chk1 may indicate a replication stress response due to an inappropriate G1/S-phase transition. Taken together, we demonstrate that CSPP is associated with centrosomes and microtubules and may play a role in the regulation of G(1)/S-phase progression and spindle assembly.

摘要

在此,我们描述了一种参与细胞周期调控的新型脊椎动物特异性中心体/纺锤体极相关蛋白(CSPP)的鉴定。该蛋白预计具有三重结构域结构,其中N端和C端结构域通过卷曲螺旋中间结构域相连。对所鉴定结构域的实验分析表明,纺锤体的结合依赖于N端和卷曲螺旋中间结构域。在所有测试的细胞系和睾丸组织中均检测到CSPP在mRNA水平的表达。CSPP在HEK293T细胞中的异位表达以剂量依赖的方式阻断了细胞周期在早期G1期和有丝分裂期的进程。有趣的是,有丝分裂阻滞的细胞含有异常纺锤体,并表现出染色体排列异常。通过小干扰RNA抑制CSPP基因表达可诱导细胞周期在S期停滞/延迟。这种表型的特征是细胞周期蛋白A水平升高、细胞周期蛋白E水平降低以及S期检查点激酶Chk1的过度磷酸化。Chk1的激活可能表明由于G1/S期过渡不当而产生的复制应激反应。综上所述,我们证明CSPP与中心体和微管相关,可能在G(1)/S期进程和纺锤体组装的调控中发挥作用。

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