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可诱导的延伸蛋白A延伸激活结构域:结构、功能及其与延伸蛋白BC复合物的相互作用。

The inducible elongin A elongation activation domain: structure, function and interaction with the elongin BC complex.

作者信息

Aso T, Haque D, Barstead R J, Conaway R C, Conaway J W

机构信息

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

出版信息

EMBO J. 1996 Oct 15;15(20):5557-66.

Abstract

The elongin (SIII) complex strongly stimulates the rate of elongation by RNA polymerase II by suppressing transient pausing by polymerase at many sites along the DNA. Elongin (SIII) is composed of a transcriptionally active A subunit and two small regulatory B and C subunits, which bind stably to each other to form a binary complex that interacts with elongin A and strongly induces its transcriptional activity. The elongin (SIII) complex is a potential target for negative regulation by the von Hippel-Lindau (VHL) tumor suppressor protein, which is capable of binding stably to the elongin BC complex and preventing it from activating elongin A. Here, we identify an elongin A domain sufficient for activation of elongation and demonstrate that it is a novel type of inducible activator that targets the RNA polymerase II elongation complex and is evolutionarily conserved in species as distantly related as Caenorhabditis elegans and man. In addition, we demonstrate that both the elongin A elongation activation domain and the VHL tumor suppressor protein interact with the elongin BC complex through a conserved elongin BC binding site motif that is essential for induction of elongin A activity by elongin BC and for tumor suppression by the VHL protein.

摘要

延伸素(SIII)复合物通过抑制RNA聚合酶II在DNA上多个位点的短暂停顿,强烈刺激其延伸速率。延伸素(SIII)由一个具有转录活性的A亚基以及两个小的调节性B和C亚基组成,它们彼此稳定结合形成一个二元复合物,该复合物与延伸素A相互作用并强烈诱导其转录活性。延伸素(SIII)复合物是冯·希佩尔-林道(VHL)肿瘤抑制蛋白进行负调控的潜在靶点,VHL肿瘤抑制蛋白能够与延伸素BC复合物稳定结合并阻止其激活延伸素A。在此,我们鉴定出一个足以激活延伸的延伸素A结构域,并证明它是一种新型的可诱导激活剂,靶向RNA聚合酶II延伸复合物,且在诸如秀丽隐杆线虫和人类等亲缘关系甚远的物种中具有进化保守性。此外,我们证明延伸素A延伸激活结构域和VHL肿瘤抑制蛋白都通过一个保守的延伸素BC结合位点基序与延伸素BC复合物相互作用,该基序对于延伸素BC诱导延伸素A活性以及VHL蛋白发挥肿瘤抑制作用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7339/452300/b3087c8cb17e/emboj00020-0083-a.jpg

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