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首页> 外文期刊>Molecular & cellular proteomics: MCP >The protein interaction network of the human transcription machinery reveals a role for the conserved GTPase RPAP4/GPN1 and microtubule assembly in nuclear import and biogenesis of RNA polymerase II.
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The protein interaction network of the human transcription machinery reveals a role for the conserved GTPase RPAP4/GPN1 and microtubule assembly in nuclear import and biogenesis of RNA polymerase II.

机译:人类转录机制的蛋白质相互作用网络揭示了保守的GTPase RPAP4 / GPN1和微管装配在RNA聚合酶II的核输入和生物发生中的作用。

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摘要

RNA polymerase II (RNAPII), the 12-subunit enzyme that synthesizes all mRNAs and several non-coding RNAs in eukaryotes, plays a central role in cell function. Although multiple proteins are known to regulate the activity of RNAPII during transcription, little is known about the machinery that controls the fate of the enzyme before or after transcription. We used systematic protein affinity purification coupled to mass spectrometry (AP-MS) to characterize the high resolution network of protein interactions of RNAPII in the soluble fraction of human cell extracts. Our analysis revealed that many components of this network participate in RNAPII biogenesis. We show here that RNAPII-associated protein 4 (RPAP4/GPN1) shuttles between the nucleus and the cytoplasm and regulates nuclear import of POLR2A/RPB1 and POLR2B/RPB2, the two largest subunits of RNAPII. RPAP4/GPN1 is a member of a newly discovered GTPase family that contains a unique and highly conserved GPN loop motif that we show is essential, in conjunction with its GTP-binding motifs, for nuclear localization of POLR2A/RPB1 in a process that also requires microtubule assembly. A model for RNAPII biogenesis is presented.
机译:RNA聚合酶II(RNAPII)是在真核生物中合成所有mRNA和几个非编码RNA的12个亚基酶,在细胞功能中起着核心作用。尽管已知多种蛋白质可在转录过程中调节RNAPII的活性,但对转录前或转录后控制酶命运的机制了解甚少。我们使用系统的蛋白质亲和纯化与质谱联用(AP-MS)来表征人细胞提取物可溶级分中RNAPII蛋白质相互作用的高分辨率网络。我们的分析表明,该网络的许多组件都参与RNAPII生物发生。我们在这里显示,RNAPII相关蛋白4(RPAP4 / GPN1)穿梭在细胞核与细胞质之间,并调节POLR2A / RPB1和POLR2B / RPB2的核输入,这是RNAPII的两个最大亚基。 RPAP4 / GPN1是新发现的GTPase家族的成员,该家族包含一个独特且高度保守的GPN环基序,我们证明它与GTP结合基序一起对于POLR2A / RPB1的核定位是必不可少的微管组装。提出了RNAPII生物发生的模型。

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