Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309, USA.
J Biol Chem. 2010 Dec 3;285(49):38730-9. doi: 10.1074/jbc.M110.177642. Epub 2010 Sep 30.
Mps1 is a protein kinase that regulates normal mitotic progression and the spindle checkpoint in response to spindle damage. The levels of Mps1 are relatively low in cells during interphase but elevated in mitosis or upon activation of the spindle checkpoint, although the dynamic range of Mps1 expression and the Mps1 catalytic mechanism have not been carefully characterized. Our recent structural studies of the Mps1 kinase domain revealed that the carboxyl-terminal tail region of Mps1 is unstructured, raising the question of whether this region has any functional role in Mps1 catalysis. Here we first determined the cellular abundance of Mps1 during cell cycle progression and found that Mps1 levels vary between 60,000 per cell in early G(1) and 110,000 per cell during mitosis. We studied phosphorylation of a number of Mps1 substrates in vitro and in culture cells. Unexpectedly, we found that the unstructured carboxyl-terminal region of Mps1 plays an essential role in substrate recruitment. Kinetics studies using the purified recombinant wild type and mutant kinases indicate that the carboxyl-terminal tail is largely dispensable for autophosphorylation of Mps1 but critical for trans-phosphorylation of substrates in vitro and in cultured cells. Mps1 mutant without the unstructured tail region is defective in mediating spindle assembly checkpoint activation. Our results underscore the importance of the unstructured tail region of Mps1 in kinase activation.
Mps1 是一种蛋白激酶,可调节有丝分裂的正常进展,并在纺锤体受到损伤时响应激活纺锤体检查点。在细胞间期,Mps1 的水平相对较低,但在有丝分裂或纺锤体检查点被激活时会升高,尽管 Mps1 表达的动态范围和 Mps1 的催化机制尚未得到仔细表征。我们最近对 Mps1 激酶结构域的研究表明,Mps1 的羧基末端尾部区域没有结构,这就提出了一个问题,即该区域在 Mps1 催化中是否具有任何功能作用。在这里,我们首先确定了 Mps1 在细胞周期进程中的细胞丰度,发现 Mps1 的水平在早期 G1 期每个细胞 60,000 左右,在有丝分裂期间每个细胞 110,000 左右。我们在体外和培养细胞中研究了许多 Mps1 底物的磷酸化。出乎意料的是,我们发现无结构的羧基末端区域在底物募集中起着重要作用。使用纯化的重组野生型和突变型激酶进行的动力学研究表明,羧基末端尾巴对于 Mps1 的自身磷酸化在很大程度上是可有可无的,但对于体外和培养细胞中底物的转磷酸化是至关重要的。缺乏无结构尾部区域的 Mps1 突变体在介导纺锤体组装检查点激活方面存在缺陷。我们的结果强调了 Mps1 无结构尾部区域在激酶激活中的重要性。