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非洲爪蟾卵提取物中纺锤体组装过程中Op18的调控

Regulation of Op18 during spindle assembly in Xenopus egg extracts.

作者信息

Budde P P, Kumagai A, Dunphy W G, Heald R

机构信息

Department of Molecular & Cell Biology, University of California, Berkeley, 94720, USA.

出版信息

J Cell Biol. 2001 Apr 2;153(1):149-58. doi: 10.1083/jcb.153.1.149.

Abstract

Oncoprotein 18 (Op18) is a microtubule-destabilizing protein that is negatively regulated by phosphorylation. To evaluate the role of the three Op18 phosphorylation sites in Xenopus (Ser 16, 25, and 39), we added wild-type Op18, a nonphosphorylatable triple Ser to Ala mutant (Op18-AAA), and to mimic phosphorylation, a triple Ser to Glu mutant (Op18-EEE) to egg extracts and monitored spindle assembly. Op18-AAA dramatically decreased microtubule length and density, while Op18-EEE did not significantly affect spindle microtubules. Affinity chromatography with these proteins revealed that the microtubule-destabilizing activity correlated with the ability of Op18 to bind tubulin. Since hyperphosphorylation of Op18 is observed upon addition of mitotic chromatin to extracts, we reasoned that chromatin-associated proteins might play a role in Op18 regulation. We have performed a preliminary characterization of the chromatin proteins recruited to DNA beads, and identified the Xenopus polo-like kinase Plx1 as a chromatin-associated kinase that regulates Op18 phosphorylation. Depletion of Plx1 inhibits chromatin-induced Op18 hyperphosphorylation and spindle assembly in extracts. Therefore, Plx1 may promote microtubule stabilization and spindle assembly by inhibiting Op18.

摘要

癌蛋白18(Op18)是一种微管解聚蛋白,其活性受到磷酸化的负调控。为了评估非洲爪蟾中Op18的三个磷酸化位点(丝氨酸16、25和39)的作用,我们将野生型Op18、一种不可磷酸化的丝氨酸突变为丙氨酸的三重突变体(Op18 - AAA)以及模拟磷酸化的丝氨酸突变为谷氨酸的三重突变体(Op18 - EEE)添加到卵提取物中,并监测纺锤体组装情况。Op18 - AAA显著降低了微管的长度和密度,而Op18 - EEE对纺锤体微管没有显著影响。用这些蛋白进行亲和层析分析表明,微管解聚活性与Op18结合微管蛋白的能力相关。由于在提取物中加入有丝分裂染色质后可观察到Op18的过度磷酸化,我们推测与染色质相关的蛋白可能在Op18的调控中发挥作用。我们对募集到DNA磁珠上的染色质蛋白进行了初步表征,并鉴定出非洲爪蟾polo样激酶Plx1是一种与染色质相关的激酶,它可调节Op18的磷酸化。去除Plx1可抑制提取物中染色质诱导的Op18过度磷酸化和纺锤体组装。因此,Plx1可能通过抑制Op18来促进微管稳定和纺锤体组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9fc/2185528/e45bbe5d1d5f/JCB0010119.f5.jpg

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