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C-TAK1蛋白激酶使人类Cdc25C的丝氨酸216位点发生磷酸化,并促进14-3-3蛋白结合。

C-TAK1 protein kinase phosphorylates human Cdc25C on serine 216 and promotes 14-3-3 protein binding.

作者信息

Peng C Y, Graves P R, Ogg S, Thoma R S, Byrnes M J, Wu Z, Stephenson M T, Piwnica-Worms H

机构信息

Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Cell Growth Differ. 1998 Mar;9(3):197-208.

PMID:9543386
Abstract

Cdc25C is a dual-specificity protein kinase that controls entry into mitosis by dephosphorylating Cdc2 on both threonine 14 and tyrosine 15. Cdc25C is phosphorylated on serine 216 throughout interphase but not during mitosis. Serine 216 phosphorylation mediates the binding of 14-3-3 protein to Cdc25C, and Cdc25C/14-3-3 complexes are present throughout interphase but not during mitosis. Here we report the cloning of a human kinase denoted C-TAK1 (for Cdc twenty-five C associated protein kinase) that phosphorylates Cdc25C on serine 216 in vitro. C-TAK1 is ubiquitously expressed in human tissues and cell lines and is distinct from the DNA damage checkpoint kinase Chk1, shown previously to phosphorylate Cdc25C on serine 216. Cotransfection of Cdc25C with C-TAK1 resulted in enhanced phosphorylation of Cdc25C on serine 216. In addition, a physical interaction between C-TAK1 and Cdc25C was observed upon transient overexpression in COS-7 cells. Finally, coproduction of Cdc25C and C-TAK1 in bacteria resulted in the stoichiometric phosphorylation of Cdc25C on serine 216 and facilitated 14-3-3 protein binding in vitro. Taken together, these results suggest that one function of C-TAK1 may be to regulate the interactions between Cdc25C and 14-3-3 in vivo by phosphorylating Cdc25C on serine 216.

摘要

Cdc25C是一种双特异性蛋白激酶,通过使Cdc2的苏氨酸14和酪氨酸15去磷酸化来控制进入有丝分裂。Cdc25C在整个间期在丝氨酸216处被磷酸化,但在有丝分裂期间不被磷酸化。丝氨酸216磷酸化介导14-3-3蛋白与Cdc25C的结合,并且Cdc25C/14-3-3复合物在整个间期都存在,但在有丝分裂期间不存在。在此我们报告克隆了一种人类激酶,命名为C-TAK1(Cdc25C相关蛋白激酶),它在体外使Cdc25C的丝氨酸216磷酸化。C-TAK1在人类组织和细胞系中普遍表达,并且不同于先前显示能使Cdc25C的丝氨酸216磷酸化的DNA损伤检查点激酶Chk1。Cdc25C与C-TAK1共转染导致Cdc25C的丝氨酸216磷酸化增强。此外,在COS-7细胞中瞬时过表达时观察到C-TAK1与Cdc25C之间存在物理相互作用。最后,在细菌中共表达Cdc25C和C-TAK1导致Cdc25C的丝氨酸216化学计量磷酸化,并在体外促进14-3-3蛋白结合。综上所述,这些结果表明C-TAK1的一个功能可能是通过使Cdc25C的丝氨酸216磷酸化来调节体内Cdc25C与14-3-3之间的相互作用。

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