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双重特异性磷酸酶 hYVH1(DUSP12)是细胞 DNA 含量的新型调节剂。

The dual-specificity phosphatase hYVH1 (DUSP12) is a novel modulator of cellular DNA content.

机构信息

University of Windsor, Windsor, Ontario, Canada.

出版信息

Cell Cycle. 2011 May 15;10(10):1669-78. doi: 10.4161/cc.10.10.15641.

Abstract

The dual-specificity phosphatase hYVH1 (DUSP12) is an evolutionary conserved phosphatase that also contains a unique zinc-binding domain. Recent evidence suggests that this enzyme plays a role in cell survival and ribosome biogenesis. Here, we report that hYVH1 expression also affects cell cycle progression. Overexpression of hYVH1 caused a significant increase in polyploidy and in the G 2/M cell population, with a subsequent decrease in the G 0/G 1 population. Phosphatase activity is dispensable, while the zinc-binding domain is necessary and sufficient for hYVH1-mediated cell cycle changes. In agreement with this, siRNA-mediated silencing of hYVH1 expression resulted in a dramatic increase in the G 0/G 1 population and susceptibility to cellular senescence. Additionally, mass spectrometry-based methods identified novel hYVH1 phosphorylation sites, including a C-terminal modification at position Ser ( 335) in the zinc-binding domain. Interestingly, phosphorylation at Ser335 regulates subcellular targeting of hYVH1 and augments the hYVH1 G 2/M phenotype. Collectively we demonstrate that hYVH1 is a novel modulator of cell cycle progression; a function mainly mediated by its C-terminal zinc-binding domain.

摘要

双重特异性磷酸酶 hYVH1(DUSP12)是一种进化上保守的磷酸酶,它还含有一个独特的锌结合域。最近的证据表明,这种酶在细胞存活和核糖体生物发生中发挥作用。在这里,我们报告 hYVH1 的表达也会影响细胞周期进程。hYVH1 的过表达导致多倍体和 G2/M 细胞群体显著增加,随后 G0/G1 群体减少。磷酸酶活性是可有可无的,而锌结合域是 hYVH1 介导的细胞周期变化所必需和充分的。与此一致,hYVH1 表达的 siRNA 介导沉默导致 G0/G1 群体显著增加,并易发生细胞衰老。此外,基于质谱的方法鉴定了 hYVH1 的新磷酸化位点,包括锌结合域位置 Ser(335)的 C 末端修饰。有趣的是,Ser335 磷酸化调节 hYVH1 的亚细胞靶向,并增强 hYVH1 的 G2/M 表型。总之,我们证明 hYVH1 是细胞周期进程的新型调节剂;其主要通过其 C 末端锌结合域介导的功能。

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