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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Degradation of the Saccharomyces cerevisiae Mating-Type Regulator α1: Genetic Dissection of Cis-determinants and Trans-acting Pathways
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Degradation of the Saccharomyces cerevisiae Mating-Type Regulator α1: Genetic Dissection of Cis-determinants and Trans-acting Pathways

机译:酿酒酵母交配型调节器α1的降解:顺式决定簇的遗传解剖和反式作用途径

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Mating phenotype in the yeast Saccharomyces cerevisiae is a dynamic trait, and efficient transitions between alternate haploid cell types allow the organism to access the advantageous diploid form. Mating identity is determined by cell type-specific transcriptional regulators, but these factors must be rapidly removed upon mating-type switching to allow the master regulators of the alternate state to establish a new gene expression program. Targeted proteolysis by the ubiquitin–proteasome system is a commonly employed strategy to quickly disassemble regulatory networks, and yeast use this approach to evoke efficient switching from the α to the a phenotype by ensuring the rapid removal of the α2 transcriptional repressor. Transition to the a cell phenotype, however, also requires the inactivation of the α1 transcriptional activator, but the mechanism by which this occurs is currently unknown. Here, we report a central role for the ubiquitin–proteasome system in α1 inactivation. The α1 protein is constitutively short lived and targeted for rapid turnover by multiple ubiquitin-conjugation pathways. Intriguingly, the α-domain, a conserved region of unknown function, acts as a degradation signal for a pathway defined by the SUMO-targeted ligase Slx5–Slx8, which has also been implicated in the rapid destruction of α2. Our observations suggest coordinate regulation in the turnover of two master regulatory transcription factors ensures a rapid mating-type switch.
机译:酵母酿酒酵母中的交配表型是一种动态性状,交替单倍体细胞类型之间的有效过渡使生物体能够获得有利的二倍体形式。交配身份是由细胞类型特异性的转录调节因子决定的,但是必须在交配类型切换后迅速去除这些因素,以允许处于替代状态的主调节因子建立新的基因表达程序。泛素-蛋白酶体系统的靶向蛋白水解是快速拆卸调节网络的常用策略,酵母利用这种方法通过确保快速去除α2转录阻遏物来引起从α到表型的有效转换。然而,向细胞表型的转变还需要灭活α1转录激活因子,但是目前尚不清楚其发生的机制。在这里,我们报道了泛素-蛋白酶体系统在α1失活中的核心作用。 α1蛋白的组成寿命很短,并通过多种泛素结合途径靶向快速更新。有趣的是,功能未知的保守结构域α结构域作为SUMO靶向连接酶Slx5–Slx8定义的途径的降解信号,该途径也与α2的快速破坏有关。我们的观察结果表明,两个主要调控转录因子的周转中的协调调控可确保快速的交配型转换。

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