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转录因子IIF的RAP30和RAP74亚基在RNA聚合酶II转录起始和延伸中的作用。

Roles for both the RAP30 and RAP74 subunits of transcription factor IIF in transcription initiation and elongation by RNA polymerase II.

作者信息

Tan S, Aso T, Conaway R C, Conaway J W

机构信息

Program in Molecular and Cell Biology, Oklahoma Medical Research Foundation, Oklahoma City 73104.

出版信息

J Biol Chem. 1994 Oct 14;269(41):25684-91.

PMID:7929273
Abstract

Mammalian transcription factor IIF (TFIIF) is a heterodimer composed of approximately 30-kDa (RAP30) and approximately 70-kDa (RAP74) subunits. TFIIF has been shown to bind RNA polymerase II and control the activity of the enzyme in both the initiation and elongation stages of transcription. Although previous studies have established a role for RAP30 in assembly of the preinitiation complex and in transcription initiation, information on the function of RAP74 in these processes has been lacking. Using a highly purified transcription system and assays that permit sensitive measurement of the contributions of both RAP30 and RAP74 to TFIIF function, we have investigated the roles of these TFIIF subunits in transcription initiation and elongation. Results of template competition experiments indicate that both RAP30 and RAP74 contribute to the formation of stable preinitiation intermediates containing RNA polymerase II. Investigation of the role of TFIIF in transcription initiation indicates that both RAP30 and RAP74 function in synthesis of the first few phosphodiester bonds of nascent transcripts and in formation of Sarkosyl-resistant pre-initiation intermediates. Finally, kinetic experiments indicate that both RAP30 and RAP74 function in TFIIF-mediated stimulation of the rate of RNA chain elongation by RNA polymerase II.

摘要

哺乳动物转录因子IIF(TFIIF)是一种异源二聚体,由大约30 kDa(RAP30)和大约70 kDa(RAP74)的亚基组成。已证明TFIIF可结合RNA聚合酶II,并在转录的起始和延伸阶段控制该酶的活性。尽管先前的研究已确定RAP30在起始前复合物的组装和转录起始中发挥作用,但关于RAP74在这些过程中的功能信息一直缺乏。利用高度纯化的转录系统和能够灵敏测量RAP30和RAP74对TFIIF功能贡献的检测方法,我们研究了这些TFIIF亚基在转录起始和延伸中的作用。模板竞争实验结果表明,RAP30和RAP74都有助于形成含有RNA聚合酶II的稳定起始前中间体。对TFIIF在转录起始中作用的研究表明,RAP30和RAP74在新生转录本最初几个磷酸二酯键的合成以及形成耐十二烷基肌氨酸的起始前中间体过程中均发挥作用。最后,动力学实验表明,RAP30和RAP74在TFIIF介导的RNA聚合酶II对RNA链延伸速率的刺激中均发挥作用。

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