14-3-3 - β与Wee1的羧基端结合可增加Wee1的稳定性、激酶活性和G2-M细胞群。

Y Wang, C Jacobs, K E Hook, H Duan, R N Booher, Y Sun
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引用次数: 0

摘要

Wee1蛋白激酶在细胞周期进程中起着重要的调控作用。它通过磷酸化Tyr15抑制Cdc-2活性,并在G2-M期阻滞细胞。为了了解Wee1在细胞周期中的调控作用,采用酵母双杂交筛选方法鉴定Wee1结合蛋白。鉴定出的8个阳性克隆中有5个编码14-3-3 β。在293细胞的体内结合实验表明,全长Wee1和nh2末端截断的Wee1都能与14-3-3 - β结合。14-3-3 β结合位点被定位到cooh末端一致基序RSVSLT上(密码子639 ~ 646)。与14-3-3 - β结合后,全长Wee1蛋白水平升高,而截短的Wee1蛋白水平不升高。随着蛋白水平的升高,Wee1与14-3-3 - β共表达时,其激酶活性也随之升高。增加的Wee1蛋白水平/酶活性至少在一定程度上是与14-3-3 -共表达时Wee1蛋白半衰期增加的原因。nh2末端截断的Wee1蛋白的半衰期远比全长蛋白的半衰期长,且不受14-3-3 β共转染的影响。生物学上,14-3-3 β /Wee1的共表达增加了G2-M期的细胞数量。因此,Wee1与14-3-3 - β结合,增加了其生化活性和生物学功能。这一发现揭示了14-3-3调控G2-M阻滞的新机制,并表明Wee1的nh2末端结构域包含一个决定Wee1稳定性的负调控序列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Binding of 14-3-3beta to the carboxyl terminus of Wee1 increases Wee1 stability, kinase activity, and G2-M cell population.

Wee1 protein kinase plays an important regulatory role in cell cycle progression. It inhibits Cdc-2 activity by phosphorylating Tyr15 and arrests cells at G2-M phase. In an attempt to understand Wee1 regulation during cell cycle, yeast two-hybrid screening was used to identify Wee1-binding protein(s). Five of the eight positive clones identified encode 14-3-3beta. In vivo binding assay in 293 cells showed that both full-length and NH2-terminal truncated Wee1 bind with 14-3-3beta. The 14-3-3beta binding site was mapped to a COOH-terminal consensus motif, RSVSLT (codons 639 to 646). Binding with 14-3-3beta increases the protein level of full-length Wee1 but not of the truncated Wee1. Accompanying the protein level increases, the kinase activity of Wee1 also increases when coexpressed with 14-3-3beta. Increased Wee1 protein level/enzymatic activity is accountable, at least in part, to an increased Wee1 protein half-life when coexpressed with 14-3-3beta. The protein half-life of the NH2-terminal truncated Wee1 is much longer than that of the full-length protein and is not affected by 14-3-3beta cotransfection. Biologically, 14-3-3beta/Wee1 coexpression increases the cell population at G2-M phase. Thus, Wee1 binding with 14-3-3beta increases its biochemical activity as well as its biological function. The finding reveals a novel mechanism by which 14-3-3 regulates G2-M arrest and suggests that the NH2-terminal domain of Wee1 contains a negative regulatory sequence that determines Wee1 stability.

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