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首页> 外文期刊>The Lancet >Indian generic drugs debate heats up
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Indian generic drugs debate heats up

机译:印度仿制药辩论升温

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RecQ-like helicases are a highly conserved family of proteins which are critical for preserving genome integrity. Genome instability is considered a hallmark of cancer and mutations within three of the five human RECQ genes cause hereditary syndromes that are associated with cancer predisposition. The human RecQ-like helicase BLM has a central role in DNA damage signaling, repair, replication, and telomere maintenance. BLM and its budding yeast orthologue Sgs1 unwind double-stranded DNA intermediates. Intriguingly, BLM functions in both a pro- and anti-recombinogenic manner upon replicative damage, acting on similar substrates. Thus, BLM activity must be intricately controlled to prevent illegitimate recombination events that could have detrimental effects on genome integrity. In recent years it has become evident that post-translational modifications (PTMs) of BLM allow a fine-tuning of its function. To date, BLM phosphorylation, ubiquitination, and SUMOylation have been identified, in turn regulating its subcellular localization, protein-protein interactions, and protein stability. In this review, we will discuss the cellular context of when and how these different modifications of BLM occur. We will reflect on the current model of how PTMs control BLM function during DNA damage repair and compare this to what is known about post-translational regulation of the budding yeast orthologue Sgs1. Finally, we will provide an outlook toward future research, in particular to dissect the cross-talk between the individual PTMs on BLM.
机译:RecQ样解旋酶是高度保守的蛋白质家族,对保持基因组完整性至关重要。基因组不稳定被认为是癌症的标志,五个人类RECQ基因中的三个内的突变会导致与癌症易感性相关的遗传综合征。人类RecQ样解旋酶BLM在DNA损伤信号转导,修复,复制和端粒维持中具有重要作用。 BLM及其发芽的酵母直向同源物Sgs1展开双链DNA中间体。有趣的是,BLM在复制性损伤时以促重组和抗重组的方式起作用,作用于相似的底物。因此,必须严密控制BLM活性,以防止可能对基因组完整性造成不利影响的非法重组事件。近年来,很明显,BLM的翻译后修饰(PTM)可以对其功能进行微调。迄今为止,已经鉴定出BLM的磷酸化,泛素化和SUMOylation,进而调节其亚细胞定位,蛋白质-蛋白质相互作用和蛋白质稳定性。在这篇综述中,我们将讨论何时以及如何发生BLM的这些不同修饰的细胞环境。我们将反思当前模型,即PTM在DNA损伤修复过程中如何控制BLM的功能,并将其与已知的酵母直向同源物Sgs1的翻译后调控进行比较。最后,我们将提供对未来研究的展望,特别是剖析BLM上各个PTM之间的串扰。

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