首页> 美国卫生研究院文献>Molecular and Cellular Biology >SCFCdc4 Enables Mating Type Switching in Yeast by Cyclin-Dependent Kinase-Mediated Elimination of the Ash1 Transcriptional Repressor
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SCFCdc4 Enables Mating Type Switching in Yeast by Cyclin-Dependent Kinase-Mediated Elimination of the Ash1 Transcriptional Repressor

机译:SCFCdc4通过细胞周期蛋白依赖性激酶介导的消除Ash1转录阻遏物实现酵母中的交配类型切换。

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摘要

In the budding yeast Saccharomyces cerevisiae, mother cells switch mating types between >a and α forms, whereas daughter cells do not. This developmental asymmetry arises because the expression of the HO endonuclease, which initiates the interconversion of >a and α mating type cassettes, is extinguished by the daughter-specific Ash1 transcriptional repressor. When daughters become mothers in the subsequent cell cycle, Ash1 must be eliminated to enable a new developmental state. Here, we report that the ubiquitin ligase SCFCdc4 mediates the phosphorylation-dependent elimination of Ash1. The inactivation of SCFCdc4 stabilizes Ash1 in vivo, and consistently, Ash1 binds to and is ubiquitinated by SCFCdc4 in a phosphorylation-dependent manner in vitro. The mutation of a critical in vivo cyclin-dependent kinase (CDK) phosphorylation site (Thr290) on Ash1 reduces its ubiquitination and rate of degradation in vivo and decreases the frequency of mating type switching. Ash1 associates with active Cdc28 kinase in vivo and is targeted to SCFCdc4 in a Cdc28-dependent fashion in vivo and in vitro. Ash1 recognition by Cdc4 appears to be mediated by at least three phosphorylation sites that form two redundant diphosphorylated degrons. The phosphorylation-dependent elimination of Ash1 by the ubiquitin-proteasome system thus underpins developmental asymmetry in budding yeast.
机译:在出芽的酿酒酵母中,母细胞在> a 和α形式之间切换交配类型,而子细胞则没有。出现这种发育不对称的原因是,HO内切核酸酶的表达(其启动> a 和α交配型盒的相互转化)被子特异性的Ash1转录阻遏物消除了。当子代在随后的细胞周期中成为母亲时,必须消除Ash1以实现新的发育状态。在这里,我们报道泛素连接酶SCF Cdc4 介导了Ash1的磷酸化依赖性消除。 SCF Cdc4 的失活在体内稳定了Ash1,并且在体外,Ash1始终以磷酸化依赖性方式与SCF Cdc4 结合并被其泛素化。 Ash1上关键的体内细胞周期蛋白依赖性激酶(CDK)磷酸化位点(Thr290)的突变降低了其泛素化和体内降解速率,并降低了交配类型转换的频率。 Ash1在体内与活性Cdc28激酶相关联,并在体内和体外以Cdc28依赖性的方式靶向SCF Cdc4 。 Cdc4对Ash1的识别似乎是由至少三个磷酸化位点介导的,这些位点形成了两个冗余的双磷酸化的退化子。因此,泛素-蛋白酶体系统消除了Ash1的磷酸化依赖性,从而消除了发芽酵母中的发育不对称性。

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