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有丝分裂后期激酶 Dbf2 直接磷酸化几丁质合成酶 Chs2 以调节出芽酵母的胞质分裂。

Mitotic exit kinase Dbf2 directly phosphorylates chitin synthase Chs2 to regulate cytokinesis in budding yeast.

机构信息

Department of Cell and Developmental Biology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.

出版信息

Mol Biol Cell. 2012 Jul;23(13):2445-56. doi: 10.1091/mbc.E12-01-0033. Epub 2012 May 9.

Abstract

How cell cycle machinery regulates extracellular matrix (ECM) remodeling during cytokinesis remains poorly understood. In the budding yeast Saccharomyces cerevisiae, the primary septum (PS), a functional equivalent of animal ECM, is synthesized during cytokinesis by the chitin synthase Chs2. Here, we report that Dbf2, a conserved mitotic exit kinase, localizes to the division site after Chs2 and directly phosphorylates Chs2 on several residues, including Ser-217. Both phosphodeficient (chs2-S217A) and phosphomimic (chs2-S217D) mutations cause defects in cytokinesis, suggesting that dynamic phosphorylation-dephosphorylation of Ser-217 is critical for Chs2 function. It is striking that Chs2-S217A constricts asymmetrically with the actomyosin ring (AMR), whereas Chs2-S217D displays little or no constriction and remains highly mobile at the division site. These data suggest that Chs2 phosphorylation by Dbf2 triggers its dissociation from the AMR during the late stage of cytokinesis. Of interest, both chs2-S217A and chs2-S217D mutants are robustly suppressed by increased dosage of Cyk3, a cytokinesis protein that displays Dbf2-dependent localization and also stimulates Chs2-mediated chitin synthesis. Thus Dbf2 regulates PS formation through at least two independent pathways: direct phosphorylation and Cyk3-mediated activation of Chs2. Our study establishes a mechanism for direct cell cycle control of ECM remodeling during cytokinesis.

摘要

细胞周期机制如何调节细胞分裂过程中的细胞外基质(ECM)重塑尚不清楚。在芽殖酵母酿酒酵母中,初级隔膜(PS)是 ECM 的功能等价物,在细胞分裂过程中由几丁质合成酶 Chs2 合成。在这里,我们报告说,保守的有丝分裂退出激酶 Dbf2 在 Chs2 之后定位到分裂位点,并直接在几个残基上磷酸化 Chs2,包括 Ser-217。磷酸缺陷(chs2-S217A)和磷酸模拟(chs2-S217D)突变都导致细胞分裂缺陷,这表明 Ser-217 的动态磷酸化-去磷酸化对 Chs2 功能至关重要。引人注目的是,Chs2-S217A 与肌动球蛋白环(AMR)不对称收缩,而 Chs2-S217D 收缩很少或没有收缩,并且在分裂位点仍然高度移动。这些数据表明,Dbf2 对 Chs2 的磷酸化触发了 Chs2 在细胞分裂后期与 AMR 的解离。有趣的是,chs2-S217A 和 chs2-S217D 突变体都被细胞分裂蛋白 Cyk3 的剂量增加显著抑制,Cyk3 显示出依赖 Dbf2 的定位,并且还刺激 Chs2 介导的几丁质合成。因此,Dbf2 通过至少两种独立的途径调节 PS 的形成:直接磷酸化和 Cyk3 介导的 Chs2 激活。我们的研究建立了细胞周期直接控制细胞分裂过程中 ECM 重塑的机制。

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