Zou Wei, Yan Jinyuan, Zhao Ninghui, Niu Shanzhuang, Huang Xiaowei
Laboratory for Conservation and Utilization of Bio-Resources, and Key Laboratory for Microbial Resources of the Ministry of Education, Yunnan University, Kunming, PR China.
Department of Neurosurgery, The Second Affiliated Hospital of Kunmin Medical College, Kunming 650101, PR China.
Biochem Biophys Res Commun. 2015 Feb 27;458(1):208-13. doi: 10.1016/j.bbrc.2015.01.113. Epub 2015 Jan 31.
Septin is a conserved eukaryotic family of GTP-binding filament-forming proteins with functions in cytokinesis and other processes. It has been suggested that the dynamic assembly of septin, including the processes from septin initially localizing to the presumptive bud site to the septin collar finally splitting into two cells, coordinates closely with the checkpoint response of cell cycle. Here, we discovered that over-expression of Alcohol sensitive Ring/PHD finger 1 protein (Asr1p) in Saccharomyces cerevisiae triggered the Swe1p-dependent cell cycle checkpoint for a G2/M transition delay, and this G2/M transition delay was caused by the septin defect. Since it was shown that Asr1p affected actin dynamics through the interaction with Crn1p and crn1 should be epistatic to asr1 in the regulation of actin, the gene knockout of crn1 in the Asr1p over-expression strain restored the defects in septin and cell cycle along with the disordered actin dynamics. Our investigation further showed that the disturbed septin assembly caused by abnormal Asr1p lead to the abnormal localization of the checkpoint proteins such as Gla4/PAK and Cdc5/Polo, and finally triggered the Swe1p-dependent G2/M transition arrest. Additionally, the Ring finger/PHD domains of Asr1p were illustrated to be required but not sufficient for its role in septin. Taken together, our current data suggested a close relationship in the assembly between septin and actin cytoskeleton, which also partially explained how actin cytoskeleton participated in the regulation of the checkpoint of G2/M.
Septin是一个保守的真核生物GTP结合丝状蛋白家族,在胞质分裂和其他过程中发挥作用。有人提出,Septin的动态组装,包括从Septin最初定位于假定的芽位点到Septin环最终分裂成两个细胞的过程,与细胞周期的检查点反应密切协调。在这里,我们发现酿酒酵母中酒精敏感型环/PHD指蛋白1(Asr1p)的过表达触发了Swe1p依赖的细胞周期检查点,导致G2/M期转换延迟,而这种G2/M期转换延迟是由Septin缺陷引起的。由于已表明Asr1p通过与Crn1p相互作用影响肌动蛋白动力学,并且在肌动蛋白调节中crn1应该对asr1上位,因此在Asr1p过表达菌株中敲除crn1基因可恢复Septin和细胞周期的缺陷以及肌动蛋白动力学紊乱。我们的研究进一步表明,Asr1p异常导致的Septin组装紊乱导致了Gla4/PAK和Cdc5/Polo等检查点蛋白的异常定位,最终触发了Swe1p依赖的G2/M期转换阻滞。此外,Asr1p的环指/PHD结构域被证明是其在Septin中发挥作用所必需的,但并不充分。综上所述,我们目前的数据表明Septin与肌动蛋白细胞骨架的组装之间存在密切关系,这也部分解释了肌动蛋白细胞骨架如何参与G2/M检查点的调节。