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Functions of the N- and C-Terminal Domains of Human RAP74 in Transcriptional Initiation, Elongation, and Recycling of RNA Polymerase II

机译:人类RAP74的N和C末端域在转录聚合,延伸和RNA聚合酶II回收中的功能。

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摘要

Transcription factor IIF (TFIIF) cooperates with RNA polymerase II (pol II) during multiple stages of the transcription cycle including preinitiation complex assembly, initiation, elongation, and possibly termination and recycling. Human TFIIF appears to be an α2β2 heterotetramer of RNA polymerase II-associating protein 74- and 30-kDa subunits (RAP74 and RAP30). From inspection of its 517-amino-acid (aa) sequence, the RAP74 subunit appears to comprise separate N- and C-terminal domains connected by a flexible loop. In this study, we present functional data that strongly support this model for RAP74 architecture and further show that the N- and C-terminal domains and the central loop of RAP74 have distinct roles during separate phases of the transcription cycle. The N-terminal domain of RAP74 (minimally aa 1 to 172) is sufficient to deliver pol II into a complex formed on the adenovirus major late promoter with the TATA-binding protein, TFIIB, and RAP30. A more complete N-terminal domain fragment (aa 1 to 217) strongly stimulates both accurate initiation and elongation by pol II. The region of RAP74 between aa 172 and 205 and a subregion between aa 170 and 178 are critical for both accurate initiation and elongation, and mutations in these regions have similar effects on initiation and elongation. Based on these observations, RAP74 appears to have similar functions in initiation and elongation. The central region and the C-terminal domain of RAP74 do not contribute strongly to single-round accurate initiation or elongation stimulation but do stimulate multiple-round transcription in an extract system.
机译:转录因子IIF(TFIIF)在转录周期的多个阶段与RNA聚合酶II(pol II)协同工作,包括预启动复合体组装,启动,延伸,以及可能的终止和再循环。人TFIIF似乎是RNA聚合酶II相关蛋白74和30 kDa亚基(RAP74和RAP30)的α2β2异四聚体。通过检查其517个氨基酸(aa)序列,RAP74亚基似乎包含通过柔性环连接的分开的N-和C-末端结构域。在这项研究中,我们介绍了功能性数据,这些数据强烈支持RAP74体系结构的此模型,并进一步表明RAP74的N和C末端结构域和中央环在转录周期的不同阶段具有不同的作用。 RAP74的N末端结构域(最小氨基酸1至172)足以将pol II传递到腺病毒主要晚期启动子上形成的复合物中,该复合物具有TATA结合蛋白,TFILB和RAP30。更完整的N末端结构域片段(aa 1至217)强烈刺激pol II的精确启动和延伸。 RAP74的氨基酸172和205之间的区域以及子区域170和178的子区域对于精确启动和延伸都至关重要,这些区域中的突变对启动和延伸具有相似的作用。基于这些观察,RAP74在起始和延伸中似乎具有相似的功能。 RAP74的中央区域和C末端结构域对单轮精确启动或延伸刺激没有强烈贡献,但确实会刺激提取系统中的多轮转录。

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