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首页> 外文期刊>Nature cell biology >A ubiquitin-selective AAA-ATPase mediates transcriptional switching by remodelling a repressor-promoter DNA complex.
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A ubiquitin-selective AAA-ATPase mediates transcriptional switching by remodelling a repressor-promoter DNA complex.

机译:泛素选择性AAA-ATPase通过重构建阻遏物-启动子DNA复合物来介导转录转换。

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摘要

Switches between different phenotypes and their underlying states of gene transcription occur as cells respond to intrinsic developmental cues or adapt to changing environmental conditions. Post-translational modification of the master regulatory transcription factors that define the initial phenotype is a common strategy to direct such transitions. Emerging evidence indicates that the modification of key transcription factors by the small polypeptide ubiquitin has a central role in many of these transitions. However, the molecular mechanisms by which ubiquitylation regulates the switching of promoters between active and inactive states are largely unknown. Ubiquitylation of the yeast transcriptional repressor alpha2 is necessary to evoke the transition between mating-types, and here we dissect the impact of this modification on alpha2 dynamics at its target promoters. Ubiquitylation of alpha2 does not alter DNA occupancy by depleting the existing pool of the transcription factor, despite its well-characterized function in directing repressor turnover. Rather, alpha2 ubiquitylation has a direct role in the rapid removal of the repressor from its DNA targets. This disassembly of alpha2 from DNA depends on the ubiquitin-selective AAA-ATPase Cdc48. Our findings expand the functional targets of Cdc48 to include active transcriptional regulatory complexes in the nucleus. These data reveal an ubiquitin-dependent extraction pathway for dismantling transcription factor-DNA complexes and provide an archetype for the regulation of transcriptional switching events by ubiquitylation.
机译:当细胞对内在的发育线索做出反应或适应不断变化的环境条件时,就会在不同的表型及其基因转录的潜在状态之间进行切换。定义初始表型的主要调控转录因子的翻译后修饰是指导此类转变的常见策略。新兴证据表明,小多肽泛素对关键转录因子的修饰在许多这些过渡中起着核心作用。但是,泛素化调节启动子在活跃状态和非活跃状态之间转换的分子机制尚不清楚。酵母转录阻遏物alpha2的泛素化对于引起交配类型之间的过渡是必需的,在这里我们剖析了这种修饰对其目标启动子对其alpha2动力学的影响。尽管α2的泛素化在指导阻遏物更新方面具有很好的功能,但它不会通过消耗转录因子的现有集合来改变DNA的占有率。而是,α2泛素化在从其DNA靶中快速去除阻遏物上具有直接作用。从DNA上解离alpha2取决于泛素选择性AAA-ATPase Cdc48。我们的发现扩大了Cdc48的功能靶标,使其在细胞核中包括了活性转录调节复合物。这些数据揭示了用于破坏转录因子-DNA复合物的泛素依赖性提取途径,并为通过泛素化调节转录转换事件提供了原型。

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