首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Rush hour at the promoter: how the ubiquitin-proteasome pathway polices the traffic flow of nuclear receptor-dependent transcription.
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Rush hour at the promoter: how the ubiquitin-proteasome pathway polices the traffic flow of nuclear receptor-dependent transcription.

机译:在启动子上的高峰时间:泛素-蛋白酶体途径如何调控核受体依赖性转录的流量。

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摘要

Nuclear receptor-dependent transcription requires the functional activities of many proteins in order to achieve proper gene expression. Progress in understanding transcription mechanisms has revealed the unexpected involvement of the ubiquitin-proteasome pathway in the transcriptional process. In some instances, stabilization of the transcription protein augments the functional role or activation state of that protein, but other evidence supports the hypothesis that degradation of that factor may be required in order for transcription to proceed. Perhaps most peculiar is the observation that several yeast models support the uncoupling of ubiquitylation from concomitant proteasome-mediated degradation, with the former responsible for regulating posttranslational modification of histones and controlling differential recruitment of a transcription factor to distinct promoters. Additionally, the ATPases of the 19S proteasome regulatory cap have been shown to function in transcription elongation, independently of their role in proteolysis. This review summarizes and discusses progress thus far in integrating the disparate fields of ubiquitylation and proteasome-mediated protein degradation with gene transcription.
机译:核受体依赖性转录需要许多蛋白质的功能活性才能实现正确的基因表达。在理解转录机制方面的进展表明,泛素-蛋白酶体途径意外参与了转录过程。在某些情况下,转录蛋白的稳定化增强了该蛋白的功能作用或激活状态,但是其他证据支持了这样的假设,即为了进行转录,可能需要降解该因子。也许最奇特的发现是,几种酵母模型支持泛素化与伴随的蛋白酶体介导的降解的解偶联,而前者负责调节组蛋白的翻译后修饰并控制转录因子向不同启动子的差异募集。此外,已证明19S蛋白酶体调节帽的ATPase在转录延伸中起作用,而与它们在蛋白水解中的作用无关。这篇综述总结并讨论了迄今为止在整合泛素化和蛋白酶体介导的蛋白质降解与基因转录的不同领域方面的进展。

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