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New insights into the biogenesis of nuclear RNA polymerases?

机译:关于核RNA聚合酶生物发生的新见解?

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More than 30 years of research on nuclear RNA polymerases (RNAP I, II, and III) has uncovered numerous factors that regulate the activity of these enzymes during the transcription reaction. However, very little is known about the machinery that regulates the fate of RNAPs before or after transcription. In particular, the mechanisms of biogenesis of the 3 nuclear RNAPs, which comprise both common and specific subunits, remains mostly uncharacterized and the proteins involved are yet to be discovered. Using protein affinity purification coupled to mass spectrometry (AP-MS), we recently unraveled a high-density interaction network formed by nuclear RNAP subunits from the soluble fraction of human cell extracts. Validation of the dataset using a machine learning approach trained to minimize the rate of false positives and false negatives yielded a high-confidence dataset and uncovered novel interactors that regulate the RNAP II transcription machinery, including a set of proteins we named the RNAP II-associated proteins (RPAPs). One of the RPAPs, RPAP3, is part of an 11-subunit complex we termed the RPAP3/R2TP/prefoldin-like complex. Here, we review the literature on the subunits of this complex, which points to a role in nuclear RNAP biogenesis.
机译:关于核RNA聚合酶(RNAP I,II和III)的30多年研究发现了许多在转录反应过程中调节这些酶活性的因素。然而,对于转录之前或之后调节RNAP命运的机制了解甚少。特别是,包含共同亚基和特定亚基的3个核RNA RNA的生物发生机制大部分仍未鉴定,并且所涉及的蛋白质尚待发现。使用蛋白质亲和纯化与质谱分析(AP-MS)的结合,我们最近从人类细胞提取物的可溶级分中揭示了由核RNA RNA亚基形成的高密度相互作用网络。使用经过训练以使假阳性和假阴性率最小化的机器学习方法对数据集进行验证,从而获得了高可信度的数据集和未发现的新型相互作用因子,这些相互作用因子调控着RNAP II转录机制,包括我们称为RNAP II相关的一组蛋白质蛋白质(RPAP)。 RPAP3之一是RPAP3,是我们称为RPAP3 / R2TP / prefoldin样复合物的11个亚基复合物的一部分。在这里,我们回顾了有关这种复合物的亚基的文献,这些文献指出了在核RNA RNA合成中的作用。

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