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Spc29和Spc42中的关键磷酸化事件指导酵母中心体复制的多个步骤。

Key phosphorylation events in Spc29 and Spc42 guide multiple steps of yeast centrosome duplication.

作者信息

Jones Michele Haltiner, O'Toole Eileen T, Fabritius Amy S, Muller Eric G, Meehl Janet B, Jaspersen Sue L, Winey Mark

机构信息

Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder, CO 80309.

Department of Molecular and Cellular Biology, University of California, Davis, Davis, CA 95616.

出版信息

Mol Biol Cell. 2018 Sep 15;29(19):2280-2291. doi: 10.1091/mbc.E18-05-0296. Epub 2018 Jul 25.

DOI:10.1091/mbc.E18-05-0296
PMID:30044722
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6249810/
Abstract

Phosphorylation modulates many cellular processes during cell cycle progression. The yeast centrosome (called the spindle pole body, SPB) is regulated by the protein kinases Mps1 and Cdc28/Cdk1 as it nucleates microtubules to separate chromosomes during mitosis. Previously we completed an SPB phosphoproteome, identifying 297 sites on 17 of the 18 SPB components. Here we describe mutagenic analysis of phosphorylation events on Spc29 and Spc42, two SPB core components that were shown in the phosphoproteome to be heavily phosphorylated. Mutagenesis at multiple sites in Spc29 and Spc42 suggests that much of the phosphorylation on these two proteins is not essential but enhances several steps of mitosis. Of the 65 sites examined on both proteins, phosphorylation of the Mps1 sites Spc29-T18 and Spc29-T240 was shown to be critical for function. Interestingly, these two sites primarily influence distinct successive steps; Spc29-T240 is important for the interaction of Spc29 with Spc42, likely during satellite formation, and Spc29-T18 facilitates insertion of the new SPB into the nuclear envelope and promotes anaphase spindle elongation. Phosphorylation sites within Cdk1 motifs affect function to varying degrees, but mutations only have significant effects in the presence of an MPS1 mutation, supporting a theme of coregulation by these two kinases.

摘要

磷酸化在细胞周期进程中调节许多细胞过程。酵母中心体(称为纺锤体极体,SPB)在有丝分裂期间通过蛋白激酶Mps1和Cdc28/Cdk1进行调节,因为它在微管成核时分离染色体。此前我们完成了一个SPB磷酸化蛋白质组,鉴定出18个SPB组件中17个组件上的297个位点。在这里,我们描述了对Spc29和Spc42上磷酸化事件的诱变分析,这两个SPB核心组件在磷酸化蛋白质组中显示为高度磷酸化。Spc29和Spc42多个位点的诱变表明,这两种蛋白质上的大部分磷酸化并非必需,但可增强有丝分裂的几个步骤。在这两种蛋白质上检测的65个位点中,Mps1位点Spc29-T18和Spc29-T240的磷酸化对功能至关重要。有趣的是,这两个位点主要影响不同的连续步骤;Spc29-T240对于Spc29与Spc42的相互作用很重要,可能在卫星形成期间,而Spc29-T18促进新的SPB插入核膜并促进后期纺锤体伸长。Cdk1基序内的磷酸化位点对功能有不同程度的影响,但突变仅在存在MPS1突变时才有显著影响,支持这两种激酶共同调节的主题。

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本文引用的文献

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2
Two-step phosphorylation of Ana2 by Plk4 is required for the sequential loading of Ana2 and Sas6 to initiate procentriole formation.Plk4 对 Ana2 的两步磷酸化对于 Ana2 和 Sas6 的顺序加载以启动前中心粒形成是必需的。
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Big Lessons from Little Yeast: Budding and Fission Yeast Centrosome Structure, Duplication, and Function.
有序组装为酵母中心体复制周期中的固有不对称性提供了基础,这需要细胞周期蛋白依赖性激酶。
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Functions and regulation of the Polo-like kinase Cdc5 in the absence and presence of DNA damage.在有无DNA损伤情况下Polo样激酶Cdc5的功能及调控
Curr Genet. 2018 Feb;64(1):87-96. doi: 10.1007/s00294-017-0727-2. Epub 2017 Aug 2.
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Characterization of spindle pole body duplication reveals a regulatory role for nuclear pore complexes.纺锤极体复制的特征揭示了核孔复合体的调控作用。
J Cell Biol. 2017 Aug 7;216(8):2425-2442. doi: 10.1083/jcb.201612129. Epub 2017 Jun 28.
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A ternary membrane protein complex anchors the spindle pole body in the nuclear envelope in budding yeast.一种三元膜蛋白复合物将纺锤极体锚定在芽殖酵母的核膜中。
J Biol Chem. 2017 May 19;292(20):8447-8458. doi: 10.1074/jbc.M117.780601. Epub 2017 Mar 29.
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Duplication of the Yeast Spindle Pole Body Once per Cell Cycle.酵母纺锤体极体在每个细胞周期复制一次。
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