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首页> 外文期刊>Molecular and Cellular Biology >Mitotic Exit Control of the Saccharomyces cerevisiae Ndr/LATS Kinase Cbk1 Regulates Daughter Cell Separation after Cytokinesis
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Mitotic Exit Control of the Saccharomyces cerevisiae Ndr/LATS Kinase Cbk1 Regulates Daughter Cell Separation after Cytokinesis

机译:酿酒酵母Ndr / LATS激酶Cbk1的有丝分裂退出控制调节细胞分裂后的子细胞分离。

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摘要

Saccharomyces cerevisiae cell division ends with destruction of a septum deposited during cytokinesis; this must occur only after the structure's construction is complete. Genes involved in septum destruction are induced by the transcription factor Ace2, which is activated by the kinase Cbk1, an Ndr/LATS-related protein that functions in a system related to metazoan hippo pathways. Phosphorylation of a conserved hydrophobic motif (HM) site regulates Cbk1; at peak levels in late mitosis we found that approximately 3% of Cbk1 carries this modification. HM site phosphorylation prior to mitotic exit occurs in response to activation of the FEAR (Cdc fourteen early anaphase release) pathway. However, HM site phosphorylation is not sufficient for Cbk1 to act on Ace2: the kinase is also negatively regulated prior to cytokinesis, likely by cyclin-dependent kinase (CDK) phosphorylation. Cbk1 cannot phosphorylate Ace2 until after mitotic exit network (MEN)-initiated release of the phosphatase Cdc14. Treatment of Cbk1 with Cdc14 in vitro does not increase its intrinsic enzymatic activity, but Cdc14 is required for Cbk1 function in vivo. Thus, we propose that Cdc14 coordinates cell separation with mitotic exit via FEAR-initiated phosphorylation of the Cbk1 HM site and MEN-activated reversal of mitotic CDK phosphorylations that block both Cbk1 and Ace2 function.
机译:酿酒酵母细胞分裂以胞质分裂过程中沉积的隔膜破坏而告终。只有在结构的构造完成后才能发生这种情况。涉及隔膜破坏的基因是由转录因子Ace2诱导的,该转录因子被激酶Cbk1激活,该激酶是Ndr / LATS相关蛋白,在与后生动物 hippo 通路相关的系统中起作用。保守的疏水基序(HM)位点的磷酸化调节Cbk1;在晚期有丝分裂的峰值水平,我们发现大约3%的Cbk1带有这种修饰。 FEAR(Cdc f ourteen e arly a naphase r elease)途径。但是,HM位点磷酸化不足以使Cbk1作用于Ace2:激酶在胞质分裂之前也受到负调控,这可能是细胞周期蛋白依赖性激酶(CDK)磷酸化的结果。 Cbk1不能磷酸化Ace2,直到有丝分裂退出网络(MEN)引发的磷酸酶Cdc14释放后。体外用Cdc14 处理Cbk1不会增加其固有的酶促活性,但体内Cemb的Cbk1功能需要Cdc14。因此,我们建议Cdc14通过FEAR引发的Cbk1 HM位点的磷酸化和MEN激活的有丝分裂CDK磷酸化的逆转来协调细胞分裂与有丝分裂出口,阻断Cbk1和Ace2功能。

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