Fu Guosheng, Ding Xia, Yuan Kai, Aikhionbare Felix, Yao Jianhui, Cai Xin, Jiang Kai, Yao Xuebiao
Laboratory of Cellular Dynamics, Hefei National Laboratory, University of Science & Technology of China, Hefei, China.
Cell Res. 2007 Jul;17(7):608-18. doi: 10.1038/cr.2007.55.
Chromosome segregation in mitosis is orchestrated by the interaction of the kinetochore with spindle microtubules. Our recent study shows that NEK2A interacts with MAD1 at the kinetochore and possibly functions as a novel integrator of spindle checkpoint signaling. However, it is unclear how NEK2A regulates kinetochore-microtubule attachment in mitosis. Here we show that NEK2A phosphorylates human Sgo1 and such phosphorylation is essential for faithful chromosome congression in mitosis. NEK2A binds directly to HsSgo1 in vitro and co-distributes with HsSgo1 to the kinetochore of mitotic cells. Our in vitro phosphorylation experiment demonstrated that HsSgo1 is a substrate of NEK2A and the phosphorylation sites were mapped to Ser(14) and Ser(507) as judged by the incorporation of (32)P. Although such phosphorylation is not required for assembly of HsSgo1 to the kinetochore, expression of non-phosphorylatable mutant HsSgo1 perturbed chromosome congression and resulted in a dramatic increase in microtubule attachment errors, including syntelic and monotelic attachments. These findings reveal a key role for the NEK2A-mediated phosphorylation of HsSgo1 in orchestrating dynamic kinetochore-microtubule interaction. We propose that NEK2A-mediated phosphorylation of human Sgo1 provides a link between centromeric cohesion and spindle microtubule attachment at the kinetochores.
有丝分裂过程中的染色体分离是由动粒与纺锤体微管的相互作用所精心调控的。我们最近的研究表明,NEK2A在动粒处与MAD1相互作用,并且可能作为纺锤体检查点信号的一种新型整合因子发挥作用。然而,目前尚不清楚NEK2A在有丝分裂过程中是如何调节动粒-微管附着的。在此我们表明,NEK2A可磷酸化人源Sgo1,且这种磷酸化对于有丝分裂中染色体的正确排列至关重要。NEK2A在体外可直接与HsSgo1结合,并与HsSgo1共同分布于有丝分裂细胞的动粒处。我们的体外磷酸化实验表明,HsSgo1是NEK2A的底物,根据(32)P的掺入情况判断,磷酸化位点定位于Ser(14)和Ser(507)。尽管这种磷酸化对于HsSgo1组装到动粒上并非必需,但不可磷酸化的突变型HsSgo1的表达扰乱了染色体排列,并导致微管附着错误(包括着丝粒一侧双连附着和单着丝粒附着)显著增加。这些发现揭示了NEK2A介导的HsSgo1磷酸化在协调动态动粒-微管相互作用中的关键作用。我们提出,NEK2A介导的人源Sgo1磷酸化在着丝粒黏连与动粒处纺锤体微管附着之间提供了一种联系。