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Control of microtubule dynamics by oncoprotein 18: dissection of the regulatory role of multisite phosphorylation during mitosis.

机译:通过癌蛋白18控制微管动力学:剖析有丝分裂过程中多位磷酸化的调节作用。

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Oncoprotein 18 (Op18; also termed p19, 19K, metablastin, stathmin, and prosolin) is a conserved protein that regulates microtubule (MT) dynamics. Op18 is multisite phosphorylated on four Ser residues during mitosis; two of these Ser residues, Ser-25 and Ser-38, are targets for cyclin-dependent protein kinases (CDKs), and the other two Ser residues, Ser-16 and Ser-63, are targets for an unidentified protein kinase. Mutations of the two CDK sites have recently been shown to result in a mitotic block caused by destabilization of MTs. To understand the role of Op18 in regulation of MT dynamics during mitosis, in this study we dissected the functions of all four phosphorylation sites of Op18 by combining genetic, morphological, and biochemical analyses. The data show that all four phosphorylation sites are involved in switching off Op18 activity during mitosis, an event that appears to be essential for formation of the spindle during metaphase. However, the mechanisms by which specific sites down-regulate Op18 activity differ. Hence, dual phosphorylation on the CDK sites Ser-25 and Ser-38 appears to be required for phosphorylation of Ser-16 and Ser-63; however, by themselves, the CDK sites are of only minor importance in direct regulation of Op18 activity. Subsequent phosphorylation of either Ser-16, Ser-63, or both efficiently switches off Op18 activity.
机译:癌蛋白18(Op18;也称为p19、19K,成胚素,stathmin和prosolin)是一种保守的蛋白,可调节微管(MT)动力学。 Op18在有丝分裂过程中在四个Ser残基上被多位磷酸化;这些Ser残基中的两个Ser-25和Ser-38是细胞周期蛋白依赖性蛋白激酶(CDK)的靶标,另外两个Ser残基Ser-16和Ser-63是未知的蛋白激酶的靶标。最近显示两个CDK位点的突变会导致MT不稳定导致有丝分裂阻滞。为了了解Op18在有丝分裂过程中MT动态调节中的作用,在这项研究中,我们通过结合遗传,形态学和生化分析,剖析了Op18的所有四个磷酸化位点的功能。数据显示,所有四个磷酸化位点均参与有丝分裂期间关闭Op18活性,这一事件似乎对中期形成纺锤体至关重要。但是,特定位点下调Op18活性的机制不同。因此,似乎需要CDK位点Ser-25和Ser-38上的双重磷酸化才能实现Ser-16和Ser-63的磷酸化。然而,就其本身而言,CDK位点在直接调节Op18活性中仅次要地位。随后的Ser-16,Ser-63或两者的磷酸化可有效关闭Op18活性。

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