Nam Sung Chang, Sung Hyeran, Kang Seung Hye, Joo Jin Young, Lee Soo Jae, Chung Yeon Bok, Lee Chong-Kil, Song Sukgil
Research and Development Center, Pigeon, Chopyeongmyeon, Jincheon, Chungbuk, Republic of Korea.
J Microbiol. 2007 Jun;45(3):227-33.
In budding yeast, septin plays as a scaffold to recruits protein components and regulates crucial cellular events including bud site selection, bud morphogenesis, Cdc28 activation pathway, and cytokinesis. Phosphorylation of Bni5 isolated as a suppressor for septin defect is essential to Swe1-dependent regulation of bud morphogenesis and mitotic entry. The mechanism by which Bni5 regulates normal septin function is not completely understood. Here, we provide evidence that Bni5 phosphorylation is important for interaction with septin component Cdc11 and for timely delocalization from septin filament at late mitosis. Phosphorylation-deficient bni5-4A was synthetically lethal with hof1Delta. bni5-4A cells had defective structure of septin ring and connected cell morphology, indicative of defects in cytokinesis. Two-hybrid analysis revealed that bni5-4A has a defect in direct interaction with Cdc11 and Cdc12. GFP-tagged bni5-4A was normally localized at mother-bud neck of budded cells before middle of mitosis. In contrast, at large-budded telophase cells, bni5-4A-GFP was defective in localization and disappeared from the neck approximately 2 min earlier than that of wild type, as evidenced by time-lapse analysis. Therefore, earlier delocalization of bni5-4A from septin filament is consistent with phosphorylation-dependent interaction with the septin component. These results suggest that timely delocalization of Bni5 by phosphorylation is important for septin function and regulation of cytokinesis.
在芽殖酵母中,隔膜蛋白作为一种支架招募蛋白质组分,并调节关键的细胞活动,包括芽位选择、芽形态发生、Cdc28激活途径和胞质分裂。作为隔膜蛋白缺陷抑制因子分离得到的Bni5的磷酸化对于Swe1依赖的芽形态发生和有丝分裂进入的调节至关重要。Bni5调节正常隔膜蛋白功能的机制尚未完全了解。在这里,我们提供证据表明,Bni5磷酸化对于与隔膜蛋白组分Cdc11的相互作用以及在有丝分裂后期从隔膜丝及时去定位很重要。磷酸化缺陷型bni5-4A与hof1Delta发生合成致死。bni5-4A细胞具有缺陷的隔膜环结构和连接的细胞形态,表明存在胞质分裂缺陷。双杂交分析显示,bni5-4A与Cdc11和Cdc12的直接相互作用存在缺陷。带有绿色荧光蛋白(GFP)标签的bni5-4A在有丝分裂中期之前正常定位于出芽细胞的母-芽颈部。相比之下,在大芽末期细胞中,bni5-4A-GFP的定位存在缺陷,并且比野生型早约2分钟从颈部消失,延时分析证明了这一点。因此,bni5-4A从隔膜丝的提前去定位与与隔膜蛋白组分的磷酸化依赖性相互作用一致。这些结果表明,通过磷酸化使Bni5及时去定位对于隔膜蛋白功能和胞质分裂的调节很重要。