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Mps1激活环自磷酸化增强激酶活性。

Mps1 activation loop autophosphorylation enhances kinase activity.

作者信息

Mattison Christopher P, Old William M, Steiner Estelle, Huneycutt Brenda J, Resing Katheryn A, Ahn Natalie G, Winey Mark

机构信息

Molecular Cellular, and Developmental Biology, University of Colorado, Colorado 80309, USA.

出版信息

J Biol Chem. 2007 Oct 19;282(42):30553-61. doi: 10.1074/jbc.M707063200. Epub 2007 Aug 28.

Abstract

The Mps1 protein kinase is required for proper assembly of the mitotic spindle, checkpoint signaling, and several other aspects of cell growth and differentiation. Mps1 regulation is mediated by cell cycle-dependent changes in transcription and protein level. There is also a strong correlation between hyperphosphorylated mitotic forms of Mps1 and increased kinase activity. We investigated the role that autophosphorylation plays in regulating human Mps1 (hMps1) protein kinase activity. Here we report that hyperphosphorylated hMps1 forms are not the only active forms of the kinase. However, autophosphorylation of hMps1 within the activation loop is required for full activity in vitro. Mass spectrometry analysis of de novo synthesized enzyme in Escherichia coli identified autophosphorylation sites at residues Thr(675), Thr(676), and Thr(686), but phosphatase-treated and reactivated enzyme was only phosphorylated on Thr(676). Mutation of Thr(676) in hMps1 or the corresponding Thr(591) residue within yeast Mps1 reduces kinase activity in vitro. We find that overexpression of an hMps1-T676A mutation inhibits centrosome duplication in RPE1 cells. Likewise, yeast cells harboring mps1-T591A as the sole MPS1 allele are not viable. Our data strongly support the conclusion that site-specific Mps1 autophosphorylation within the activation loop is required for full activity in vitro and function in vivo.

摘要

Mps1蛋白激酶对于有丝分裂纺锤体的正确组装、检查点信号传导以及细胞生长和分化的其他几个方面是必需的。Mps1的调节是由转录和蛋白质水平上细胞周期依赖性变化介导的。Mps1的超磷酸化有丝分裂形式与激酶活性增加之间也存在很强的相关性。我们研究了自身磷酸化在调节人Mps1(hMps1)蛋白激酶活性中所起的作用。在此我们报告,超磷酸化的hMps1形式不是该激酶的唯一活性形式。然而,hMps1在激活环内的自身磷酸化是其体外充分活性所必需的。对大肠杆菌中从头合成的酶进行质谱分析,确定了苏氨酸(Thr)残基Thr(675)、Thr(676)和Thr(686)处的自身磷酸化位点,但经磷酸酶处理并重新激活的酶仅在Thr(676)处被磷酸化。hMps1中Thr(676)或酵母Mps1中相应的Thr(591)残基发生突变会降低体外激酶活性。我们发现hMps1-T676A突变的过表达抑制了RPE1细胞中的中心体复制。同样,以mps1-T591A作为唯一MPS1等位基因的酵母细胞无法存活。我们的数据有力地支持了这样的结论,即激活环内位点特异性的Mps1自身磷酸化是其体外充分活性和体内功能所必需的。

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