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Shs1 Plays Separable Roles in Septin Organization and Cytokinesis in Saccharomyces cerevisiae

机译:Shs1在酿酒酵母中Septin组织和胞质分裂中起着不同的作用。

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摘要

In Saccharomyces cerevisiae, five septins (Cdc3, Cdc10, Cdc11, Cdc12, and Shs1/Sep7) form the septin ring at the bud neck during vegetative growth. We show here that disruption of SHS1 caused cold-sensitive growth in the W303 background, with cells arrested in chains, indicative of a cytokinesis defect. Surprisingly, the other four septins appeared to form an apparently normal septin ring in shs1Δ cells grown under the restrictive condition. We found that Myo1 and Iqg1, two components of the actomyosin contractile ring, and Cyk3, a component of the septum formation, were either delocalized or mislocalized in shs1Δ cells, suggesting that Shs1 plays supportive roles in cytokinesis. We also found that deletion of SHS1 enhanced or suppressed the septin defect in cdc10Δ and cdc11Δ cells, respectively, suggesting that Shs1 is involved in septin organization, exerting different effects on septin-ring assembly, depending on the composition of the septin subunits. Furthermore, we constructed an shs1-100c allele that lacks the coding sequence for the C-terminal 32 amino acids. This allele still displayed the genetic interactions with the septin mutants, but did not show cytokinesis defects as described above, suggesting that the roles of Shs1 in septin organization and cytokinesis are separable.
机译:在酿酒酵母中,在营养生长过程中,五个隔膜(Cdc3,Cdc10,Cdc11,Cdc12和Shs1 / Sep7)在芽颈处形成隔膜环。我们在这里显示,SHS1的破坏在W303背景中引起冷敏性生长,细胞被链锁住,表明胞质分裂缺陷。令人惊讶的是,在限制性条件下生长的shs1Δ细胞中,其他四个Septins似乎形成了一个看起来正常的Septin环。我们发现Myo1和Iqg1是放线菌素收缩环的两个组成部分,而Cyk3是隔垫形成的一个组成部分,在shs1Δ细胞中已被离域或错位,这表明Shs1在胞质分裂中起支持作用。我们还发现SHS1的缺失分别增强或抑制了cdc10Δ和cdc11Δ细胞中的septin缺陷,这表明Shs1参与了septin的组织,对septin环的组装产生了不同的影响,具体取决于septin亚基的组成。此外,我们构建了一个shs1-100c等位基因,它缺少C端32个氨基酸的编码序列。该等位基因仍显示出与septin突变体的遗传相互作用,但如上所述没有显示胞质分裂缺陷,表明Shs1在Septin组织和胞质分裂中的作用是可分离的。

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