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RNA聚合酶II的Rpb9亚基与转录因子TFIIE结合,并干扰SAGA和延伸因子组蛋白乙酰转移酶。

The Rpb9 subunit of RNA polymerase II binds transcription factor TFIIE and interferes with the SAGA and elongator histone acetyltransferases.

作者信息

Van Mullem Vincent, Wery Maxime, Werner Michel, Vandenhaute Jean, Thuriaux Pierre

机构信息

Laboratoire de Génétique Moléculaire, Facultés Universitaires Notre-Dame de la Paix, 61 rue de Bruxelles, B-5000 Namur, Belgique.

出版信息

J Biol Chem. 2002 Mar 22;277(12):10220-5. doi: 10.1074/jbc.M107207200. Epub 2002 Jan 4.

Abstract

Rpb9 is a small subunit of yeast RNA polymerase II participating in elongation and formed of two conserved zinc domains. rpb9 mutants are viable, with a strong sensitivity to nucleotide-depleting drugs. Deleting the C-terminal domain down to the first 57 amino acids has no detectable growth defect. Thus, the critical part of Rpb9 is limited to a N-terminal half that contacts the lobe of the second largest subunit (Rpb2) and forms a beta-addition motif with the "jaw" of the largest subunit (Rpb1). Rpb9 has homology to the TFIIS elongation factor, but mutants inactivated for both proteins are indistinguishable from rpb9 single mutants. In contrast, rpb9 mutants are lethal in cells lacking the histone acetyltransferase activity of the RNA polymerase II Elongator and SAGA factors. In a two-hybrid test, Rpb9 physically interacts with Tfa1, the largest subunit of TFIIE. The interacting fragment, comprising amino acids 62-164 of Tfa1, belongs to a conserved zinc motif. Tfa1 is immunoprecipitated by RNA polymerase II. This co-purification is strongly reduced in rpb9-Delta, suggesting that Rpb9 contributes to the recruitment of TFIIE on RNA polymerase II.

摘要

Rpb9是酵母RNA聚合酶II的一个小亚基,参与转录延伸,由两个保守的锌结构域组成。rpb9突变体是有活力的,但对核苷酸消耗药物具有强烈的敏感性。删除C末端结构域直至前57个氨基酸没有可检测到的生长缺陷。因此,Rpb9的关键部分仅限于与第二大亚基(Rpb2)的叶接触并与最大亚基(Rpb1)的“颚”形成β-加成基序的N末端一半。Rpb9与TFIIS延伸因子具有同源性,但两种蛋白均失活的突变体与rpb9单突变体没有区别。相反,rpb9突变体在缺乏RNA聚合酶II延伸因子和SAGA因子的组蛋白乙酰转移酶活性的细胞中是致死的。在双杂交试验中,Rpb9与TFIIE的最大亚基Tfa1发生物理相互作用。相互作用片段包含Tfa1的第62 - 164位氨基酸,属于一个保守的锌基序。Tfa1被RNA聚合酶II免疫沉淀。在rpb9缺失突变体中这种共纯化作用大大降低,表明Rpb9有助于TFIIE在RNA聚合酶II上的募集。

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