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与冯·希佩尔-林道肽复合的酵母延伸蛋白C的溶液结构与动力学

Solution structure and dynamics of yeast elongin C in complex with a von Hippel-Lindau peptide.

作者信息

Botuyan M V, Mer G, Yi G S, Koth C M, Case D A, Edwards A M, Chazin W J, Arrowsmith C H

机构信息

Division of Molecular and Structural Biology, Ontario Cancer Institute and Department of Medical Biophysics, University of Toronto, Toronto, ON M5G 2M9, Canada.

出版信息

J Mol Biol. 2001 Sep 7;312(1):177-86. doi: 10.1006/jmbi.2001.4938.

Abstract

Elongin is a transcription elongation factor that stimulates the rate of elongation by suppressing transient pausing by RNA polymerase II at many sites along the DNA. It is heterotrimeric in mammals, consisting of elongins A, B and C subunits, and bears overall similarity to a class of E3 ubiquitin ligases known as SCF (Skp1-Cdc53 (cullin)-F-box) complexes. A subcomplex of elongins B and C is a target for negative regulation by the von Hippel-Lindau (VHL) tumor-suppressor protein. Elongin C from Saccharomyces cerevisiae, Elc1, exhibits high sequence similarity to mammalian elongin C. Using NMR spectroscopy we have determined the three-dimensional structure of Elc1 in complex with a human VHL peptide, VHL(157-171), representing the major Elc1 binding site. The bound VHL peptide is entirely helical. Elc1 utilizes two C-terminal helices and an intervening loop to form a binding groove that fits VHL(157-171). Chemical shift perturbation and dynamics analyses reveal that a global conformational change accompanies Elc1/VHL(157-171) complex formation. Moreover, the disappearance of conformational exchange phenomena on the microsecond to millisecond time scale within Elc1 upon VHL peptide binding suggests a role for slow internal motions in ligand recognition.

摘要

延伸蛋白是一种转录延伸因子,它通过抑制RNA聚合酶II在DNA上多个位点的短暂停顿来刺激延伸速率。在哺乳动物中它是异源三聚体,由延伸蛋白A、B和C亚基组成,总体上与一类称为SCF(Skp1-Cdc53(cullin)-F-box)复合物的E3泛素连接酶相似。延伸蛋白B和C的一个亚复合物是von Hippel-Lindau(VHL)肿瘤抑制蛋白负调控的靶点。来自酿酒酵母的延伸蛋白C,即Elc1,与哺乳动物延伸蛋白C具有高度的序列相似性。我们利用核磁共振光谱法确定了Elc1与一段人VHL肽VHL(157 - 171)形成复合物的三维结构,该肽段代表主要的Elc1结合位点。结合的VHL肽完全呈螺旋状。Elc1利用两个C端螺旋和一个中间环形成一个适合VHL(157 - 171)的结合凹槽。化学位移扰动和动力学分析表明,Elc1/VHL(157 - 171)复合物形成伴随着整体构象变化。此外,VHL肽结合后Elc1内微秒到毫秒时间尺度上构象交换现象的消失表明缓慢的内部运动在配体识别中起作用。

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