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Autophosphorylation-dependent activation of human Mps1 is required for the spindle checkpoint

机译:纺锤体检查点需要人类磷酸化依赖于人类磷酸化的激活

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摘要

The spindle checkpoint ensures the accuracy of chromosome segregation during mitosis. The protein serine/threonine kinase, Mps1, is a critical component of the spindle checkpoint in human cells and regulates the kinetochore localization of key checkpoint proteins. The kinase activity of Mps1 is required for the spindle checkpoint, but how Mps1 is activated during mitosis is unclear. Here, we show that the endogenous Mps1 in mitotic HeLa cells is phosphorylated on T676, a residue in the activation loop. This phosphorylation event on Mps1 is required for its kinase activity in vitro and for spindle checkpoint signaling in vivo. T676 phosphorylation of Mps1 increases during mitosis and can occur through intermolecular/trans autophosphory-lation. Induced dimerization of Mps1 is sufficient to activate its kinase activity in cells. We speculate that the kinetochore localization of Mps1 raises its local concentration, leading to its activation during mitosis through more efficient trans autophosphorylation.
机译:主轴检查点可确保有丝分裂期间染色体分离的准确性。丝氨酸/苏氨酸激酶Mps1是人类细胞中纺锤体检查点的关键组成部分,它调节关键检查点蛋白的动粒定位。 Mps1的激酶活性是纺锤体检查点所必需的,但尚不清楚在有丝分裂过程中如何激活Mps1。在这里,我们显示有丝分裂HeLa细胞中的内源性Mps1在激活环上的一个残基T676上被磷酸化。 Mps1上的这种磷酸化事件是其体外激酶活性和体内纺锤体检查点信号传导所必需的。 Mps1的T676磷酸化在有丝分裂过程中增加,并可通过分子间/反式自磷酸化发生。 Mps1的诱导二聚化足以激活其在细胞中的激酶活性。我们推测,Mps1的线粒体定位会提高其局部浓度,从而通过更有效的反式自磷酸化作用使其在有丝分裂过程中被激活。

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