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Ubiquitin and control of transcription

机译:泛素和转录控制

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Eukaryotic transcription is one of the most complex cellular processes and constitutes the first step in protein synthesis.Ubiquitination and subsequent degradation by the 26 S proteasome,on the other hand,represents the final chapter in the life of a protein.Intriguingly,ubiquitin and the ubiquitin-proteasome system play vital roles in the regulation of transcription.Ubiquitin has dual modus operandi:firstly,ubiquitin functions via the 26 S proteasome - it is tagged to components of the transcription machinery,marking them for degradation via the proteasome,which results in the proper exchange of complexes during transcription and the prompt removal of activators after each round of transcription;and secondly,ubiquitin can function independently of the proteasome - histone ubiquitmation results in heterochromatin relaxation and assembly of transcription complexes on the promoter,and ubiquitmation of transcription factors enhances their transcriptional-activation function.Although ubiquitin and the ubiquitin-proteasome system were initially perceived as a graveyard for proteins,recent advances in molecular biological techniques have redefined their role as a regulatory system that influences the fate of many cellular processes,such as apoptosis,transcription and cell cycle progression.
机译:真核生物转录是最复杂的细胞过程之一,是蛋白质合成的第一步。泛素化和随后被26 S蛋白酶体降解代表了蛋白质生命的最后一章。泛素-蛋白酶体系统在转录调控中起着至关重要的作用。泛素具有双重操作方式:首先,泛素通过26 S蛋白酶体发挥功能-它被标记到转录机制的各个成分上,标记它们通过蛋白酶体降解,从而导致转录过程中复合物的正确交换和每轮转录后迅速去除活化剂;其次,泛素可以独立于蛋白酶体发挥作用-组蛋白泛素化会导致异染色质松弛和转录复合物在启动子上的组装,以及转录因子的泛素化增强其转录激活功能。 uitin和泛素-蛋白酶体系统最初被认为是蛋白质的墓地,分子生物学技术的最新进展已经重新定义了它们作为调节系统的作用,该调节系统影响许多细胞过程的命运,例如凋亡,转录和细胞周期进程。

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