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结核分枝杆菌响应调节蛋白PrrA信号转导的结构基础。

The structural basis of signal transduction for the response regulator PrrA from Mycobacterium tuberculosis.

作者信息

Nowak Elzbieta, Panjikar Santosh, Konarev Peter, Svergun Dmitri I, Tucker Paul A

机构信息

European Molecular Biology Laboratory (EMBL), Hamburg Outstation, Notkestrasse 85, D-22603 Hamburg, Germany.

出版信息

J Biol Chem. 2006 Apr 7;281(14):9659-66. doi: 10.1074/jbc.M512004200. Epub 2006 Jan 23.

Abstract

The structure of the two-domain response regulator PrrA from Mycobacterium tuberculosis shows a compact structure in the crystal with a well defined interdomain interface. The interface, which does not include the interdomain linker, makes the recognition helix and the trans-activation loop of the effector domain inaccessible for interaction with DNA. Part of the interface involves hydrogen-bonding interactions of a tyrosine residue in the receiver domain that is believed to be involved in signal transduction, which, if disrupted, would destabilize the interdomain interface, allowing a more extended conformation of the molecule, which would in turn allow access to the recognition helix. In solution, there is evidence for an equilibrium between compact and extended forms of the protein that is far toward the compact form when the protein is inactivated but moves toward a more extended form when activated by the cognate sensor kinase PrrB.

摘要

结核分枝杆菌双结构域应答调节因子PrrA的结构在晶体中呈现出紧密结构,具有明确的结构域间界面。该界面不包括结构域间连接区,使得效应结构域的识别螺旋和反式激活环无法与DNA相互作用。界面的一部分涉及接收结构域中一个酪氨酸残基的氢键相互作用,该酪氨酸残基被认为参与信号转导,如果该相互作用被破坏,将使结构域间界面不稳定,使分子呈现更伸展的构象,进而使识别螺旋能够与之结合。在溶液中,有证据表明该蛋白在紧密形式和伸展形式之间存在平衡,当蛋白失活时,平衡强烈倾向于紧密形式,但当被同源传感激酶PrrB激活时,则向更伸展的形式转变。

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