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细胞周期蛋白依赖性激酶2抑制激酶Myt1的C末端结构域与细胞周期蛋白依赖性激酶2复合物相互作用,是抑制G(2)/M期进程所必需的。

The C-terminal domain of the Cdc2 inhibitory kinase Myt1 interacts with Cdc2 complexes and is required for inhibition of G(2)/M progression.

作者信息

Wells N J, Watanabe N, Tokusumi T, Jiang W, Verdecia M A, Hunter T

机构信息

Molecular Biology and Virology Laboratory, The Salk Institute, La Jolla, California 92037, USA.

出版信息

J Cell Sci. 1999 Oct;112 ( Pt 19):3361-71. doi: 10.1242/jcs.112.19.3361.

Abstract

Activation of Cdc2, is the universal event controlling the onset of mitosis. In higher eukaryotes, Cdc2 activity is in part regulated by inhibitory phosphorylation of Thr14 and Tyr15, catalyzed by Wee1 and Myt1, which prevents catastrophic premature entry into mitosis. In this study we defined the function of Myt1 by overexpression studies in both S. pombe and a human osteosarcoma cell line. Similar to Wee1, overexpression of human Myt1 prevented entry into mitosis in both cell types; however, Myt1 catalytic activity was not essential for the cell cycle delay observed with human cells. Myt1 expression was restricted to proliferating cells. Furthermore, we detected no major decline in Myt1 protein abundance prior to the entry into mitosis, which coincides with the loss of Myt1 activity. We localized mitotic phosphoepitopes, recognized by the monoclonal antibody MPM-2, to the C-terminal domain of Myt1. The mitotic peptidyl-prolyl isomerase, Pin1, was able to associate with this domain in a phosphorylation-dependent manner. Truncation of the C-terminal domain of Myt1 prevented its ability to induce G(2)/M phase arrest in overexpression studies in human cells and dramatically reduced its ability to phosphorylate Cdc2 in vitro. We demonstrate that the C-terminal domain of Myt1 was required for recruitment of Cdc2, and we infer that this domain lies in the cytoplasm because it can interact with and is phosphorylated by Cdc2. In conclusion, we propose that Myt1 can negatively regulate Cdc2/cyclin B1 and inhibit G(2)/M progression by two means, both of which require the C-terminal domain; first, Myt1 can bind and sequester Cdc2/cyclin B1 in the cytoplasm preventing entry into the nucleus, and, second, it can phosphorylate associated Cdc2/cyclin B1 at Thr14 and Tyr15 thus inhibiting its catalytic activity.

摘要

Cdc2的激活是控制有丝分裂起始的普遍事件。在高等真核生物中,Cdc2的活性部分受Wee1和Myt1催化的苏氨酸14和酪氨酸15抑制性磷酸化调节,这可防止灾难性的过早进入有丝分裂。在本研究中,我们通过在粟酒裂殖酵母和人骨肉瘤细胞系中的过表达研究确定了Myt1的功能。与Wee1相似,人Myt1的过表达在两种细胞类型中均阻止了进入有丝分裂;然而,Myt1催化活性对于人细胞中观察到的细胞周期延迟并非必需。Myt1表达仅限于增殖细胞。此外,我们在进入有丝分裂之前未检测到Myt1蛋白丰度的显著下降,这与Myt1活性的丧失一致。我们将单克隆抗体MPM-2识别的有丝分裂磷酸表位定位到Myt1的C末端结构域。有丝分裂肽基脯氨酰异构酶Pin1能够以磷酸化依赖的方式与该结构域结合。在人细胞的过表达研究中,Myt1 C末端结构域的截断阻止了其诱导G(2)/M期阻滞的能力,并显著降低了其在体外磷酸化Cdc2的能力。我们证明Myt1的C末端结构域是募集Cdc2所必需的,并且我们推断该结构域位于细胞质中,因为它可以与Cdc2相互作用并被其磷酸化。总之,我们提出Myt1可以通过两种方式负调节Cdc2/细胞周期蛋白B1并抑制G(2)/M进程,这两种方式都需要C末端结构域;第一,Myt1可以在细胞质中结合并隔离Cdc2/细胞周期蛋白B1,阻止进入细胞核,第二,它可以在苏氨酸14和酪氨酸15处磷酸化相关的Cdc2/细胞周期蛋白B1,从而抑制其催化活性。

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