Wong Jim, Lerrigo Robert, Jang Chang-Young, Fang Guowei
Department of Biological Sciences, Stanford University, Stanford, CA 94305-5020, USA.
Mol Biol Cell. 2008 May;19(5):2083-91. doi: 10.1091/mbc.e07-10-1088. Epub 2008 Mar 5.
HURP is a spindle-associated protein that mediates Ran-GTP-dependent assembly of the bipolar spindle and promotes chromosome congression and interkinetochore tension during mitosis. We report here a biochemical mechanism of HURP regulation by Aurora A, a key mitotic kinase that controls the assembly and function of the spindle. We found that HURP binds to microtubules through its N-terminal domain that hyperstabilizes spindle microtubules. Ectopic expression of this domain generates defects in spindle morphology and function that reduce the level of tension across sister kinetochores and activate the spindle checkpoint. Interestingly, the microtubule binding activity of this N-terminal domain is regulated by the C-terminal region of HURP: in its hypophosphorylated state, C-terminal HURP associates with the microtubule-binding domain, abrogating its affinity for microtubules. However, when the C-terminal domain is phosphorylated by Aurora A, it no longer binds to N-terminal HURP, thereby releasing the inhibition on its microtubule binding and stabilizing activity. In fact, ectopic expression of this C-terminal domain depletes endogenous HURP from the mitotic spindle in HeLa cells in trans, suggesting the physiological importance for this mode of regulation. We concluded that phosphorylation of HURP by Aurora A provides a regulatory mechanism for the control of spindle assembly and function.
HURP是一种与纺锤体相关的蛋白质,在有丝分裂过程中介导Ran - GTP依赖的双极纺锤体组装,并促进染色体汇聚和动粒间张力。我们在此报告了由Aurora A(一种控制纺锤体组装和功能的关键有丝分裂激酶)对HURP进行调控的生化机制。我们发现HURP通过其N端结构域与微管结合,该结构域可超稳定纺锤体微管。该结构域的异位表达会导致纺锤体形态和功能缺陷,从而降低姐妹动粒间的张力水平并激活纺锤体检查点。有趣的是,这个N端结构域的微管结合活性受HURP C端区域的调控:在其低磷酸化状态下,C端HURP与微管结合结构域结合,消除其对微管的亲和力。然而,当C端结构域被Aurora A磷酸化时,它不再与N端HURP结合,从而解除对其微管结合和稳定活性的抑制。事实上,该C端结构域的异位表达会反式耗尽HeLa细胞有丝分裂纺锤体中的内源性HURP,这表明这种调控模式具有生理重要性。我们得出结论,Aurora A对HURP的磷酸化提供了一种控制纺锤体组装和功能的调控机制。