Belham Christopher, Roig Joan, Caldwell Jennifer A, Aoyama Yumi, Kemp Bruce E, Comb Michael, Avruch Joseph
Department of Molecular Biology and Medical Services, Massachusetts General Hospital, and Harvard Medical School, Boston, Massachusetts 02114, USA.
J Biol Chem. 2003 Sep 12;278(37):34897-909. doi: 10.1074/jbc.M303663200. Epub 2003 Jul 2.
The Nek family of protein kinases in humans is composed of 11 members that share an amino-terminal catalytic domain related to NIMA, an Aspergillus kinase involved in the control of several aspects of mitosis, and divergent carboxyl-terminal tails of varying length. Nek6 (314AA) and Nek7 (303AA), 76% identical, have little noncatalytic sequence but bind to the carboxyl-terminal noncatalytic tail of Nercc1/Nek9, a NIMA family protein kinase that is activated in mitosis. Microinjection of anti-Nercc1 antibodies leads to spindle abnormalities and prometaphase arrest or chromosome missegregation. Herein we show that Nek6 is increased in abundance and activity during mitosis; activation requires the phosphorylation of Ser206 on the Nek6 activation loop. This phosphorylation and the activity of recombinant Nek6 is stimulated by coexpression with an activated mutant of Nercc1. Moreover, Nercc1 catalyzes the direct phosphorylation of prokaryotic recombinant Nek6 at Ser206 in vitro concomitant with 20-25-fold activation of Nek6 activity; Nercc1 activates Nek7 in vitro in a similar manner. Nercc1/Nek9 is likely to be responsible for the activation of Nek6 during mitosis and probably participates in the regulation of Nek7 as well. These findings support the conclusion that Nercc1/Nek9 and Nek6 represent a novel cascade of mitotic NIMA family protein kinases whose combined function is important for mitotic progression.
人类中的Nek蛋白激酶家族由11个成员组成,这些成员共享一个与NIMA相关的氨基末端催化结构域,NIMA是一种参与有丝分裂多个方面调控的曲霉激酶,以及长度各异的不同羧基末端尾巴。Nek6(314个氨基酸)和Nek7(303个氨基酸)的序列一致性为76%,几乎没有非催化序列,但它们能与Nercc1/Nek9的羧基末端非催化尾巴结合,Nercc1/Nek9是一种在有丝分裂中被激活的NIMA家族蛋白激酶。显微注射抗Nercc1抗体可导致纺锤体异常和前中期停滞或染色体错分离。在此我们表明,Nek6在有丝分裂期间丰度和活性增加;激活需要Nek6激活环上的Ser206磷酸化。与Nercc1的激活突变体共表达可刺激这种磷酸化以及重组Nek6的活性。此外,Nercc1在体外催化原核重组Nek6在Ser206处的直接磷酸化,同时使Nek6活性激活20至25倍;Nercc1以类似方式在体外激活Nek7。Nercc1/Nek9可能负责有丝分裂期间Nek6的激活,并且可能也参与Nek7的调节。这些发现支持了Nercc1/Nek9和Nek6代表一种新型有丝分裂NIMA家族蛋白激酶级联反应的结论,其联合功能对有丝分裂进程很重要。