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Loss of the Greatwall Kinase Weakens the Spindle Assembly Checkpoint

机译:长城激酶的损失削弱了主轴装配检查点

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摘要

The Greatwall kinase/Mastl is an essential gene that indirectly inhibits the phosphatase activity toward mitotic Cdk1 substrates. Here we show that although Mastl knockout (MastlNULL) MEFs enter mitosis, they progress through mitosis without completing cytokinesis despite the presence of misaligned chromosomes, which causes chromosome segregation defects. Furthermore, we uncover the requirement of Mastl for robust spindle assembly checkpoint (SAC) maintenance since the duration of mitotic arrest caused by microtubule poisons in MastlNULL MEFs is shortened, which correlates with premature disappearance of the essential SAC protein Mad1 at the kinetochores. Notably, MastlNULL MEFs display reduced phosphorylation of a number of proteins in mitosis, which include the essential SAC kinase MPS1. We further demonstrate that Mastl is required for multi-site phosphorylation of MPS1 as well as robust MPS1 kinase activity in mitosis. In contrast, treatment of MastlNULL cells with the phosphatase inhibitor okadaic acid (OKA) rescues the defects in MPS1 kinase activity, mislocalization of phospho-MPS1 as well as Mad1 at the kinetochore, and premature SAC silencing. Moreover, using in vitro dephosphorylation assays, we demonstrate that Mastl promotes persistent MPS1 phosphorylation by inhibiting PP2A/B55-mediated MPS1 dephosphorylation rather than affecting Cdk1 kinase activity. Our findings establish a key regulatory function of the Greatwall kinase/Mastl->PP2A/B55 pathway in preventing premature SAC silencing.
机译:长壁激酶/ Mastl是一种必需基因,可以间接抑制针对有丝分裂Cdk1底物的磷酸酶活性。在这里,我们显示了尽管Mastl基因敲除(Mastl NULL )MEF进入有丝分裂,但尽管存在未对齐的染色体,但它们仍通过有丝分裂而没有完成细胞分裂,从而导致染色体分离缺陷。此外,由于Mastl NULL MEF中由微管毒物引起的有丝分裂停滞的时间缩短了,因此我们发现了Mastl对坚固的纺锤体装配检查点(SAC)维护的要求,这与必需SAC的过早消失有关。动植物的蛋白Mad1。值得注意的是,Mastl NULL MEF在有丝分裂中显示出许多蛋白质的磷酸化程度降低,其中包括必需的SAC激酶MPS1。我们进一步证明,Mastl是MPS1的多位磷酸化以及有丝分裂中强大的MPS1激酶活性所必需的。相比之下,用磷酸酶抑制剂冈田酸(OKA)处理Mastl NULL 细胞可以挽救MPS1激酶活性,磷酸-MPS1和Mad1在动粒上的定位错误以及SAC过早沉默的缺陷。此外,使用体外去磷酸化测定,我们证明Mastl通过抑制PP2A / B55介导的MPS1去磷酸化而不是影响Cdk1激酶活性来促进持久性MPS1磷酸化。我们的发现建立了长壁激酶/ Mastl-> PP2A / B55通路在预防SAC过早沉默中的关键调控功能。

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