Heallen Todd R, Adams Henry P, Furuta Tokiko, Verbrugghe Koen J, Schumacher Jill M
Department of Genetics, University of Texas M.D. Anderson Cancer Center, Houston, TX 77030, USA.
Dev Cell. 2008 Oct;15(4):603-16. doi: 10.1016/j.devcel.2008.08.005.
The Aurora B kinase is the enzymatic core of the chromosomal passenger complex, which is a critical regulator of mitosis. To identify novel regulators of Aurora B, we performed a genome-wide screen for suppressors of a temperature-sensitive lethal allele of the C. elegans Aurora B kinase AIR-2. This screen uncovered a member of the Afg2/Spaf subfamily of Cdc48-like AAA ATPases as an essential inhibitor of AIR-2 stability and activity. Depletion of CDC-48.3 restores viability to air-2 mutant embryos and leads to abnormally high AIR-2 levels at the late telophase/G1 transition. Furthermore, CDC-48.3 binds directly to AIR-2 and inhibits its kinase activity from metaphase through telophase. While canonical p97/Cdc48 proteins have been assigned contradictory roles in the regulation of Aurora B, our results identify a member of the Afg2/Spaf AAA ATPases as a critical in vivo inhibitor of this kinase during embryonic development.
极光B激酶是染色体乘客复合体的酶核心,而该复合体是有丝分裂的关键调节因子。为了鉴定极光B的新型调节因子,我们针对秀丽隐杆线虫极光B激酶AIR-2的温度敏感致死等位基因的抑制子进行了全基因组筛选。该筛选发现Cdc48样AAA ATP酶的Afg2/Spaf亚家族的一个成员是AIR-2稳定性和活性的重要抑制剂。耗尽CDC-48.3可恢复air-2突变胚胎的活力,并导致末期/ G1期晚期AIR-2水平异常升高。此外,CDC-48.3直接与AIR-2结合,并从中期到末期抑制其激酶活性。虽然经典的p97/Cdc48蛋白在极光B的调节中具有相互矛盾的作用,但我们的结果确定Afg2/Spaf AAA ATP酶的一个成员是胚胎发育过程中该激酶的关键体内抑制剂。