参与枯草芽孢杆菌一般应激反应的RsbX磷酸酶的结构。

Aik Hong Teh, Masatomo Makino, Takeshi Hoshino, Seiki Baba, Nobutaka Shimizu, Masaki Yamamoto, Takashi Kumasaka
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引用次数: 7

摘要

枯草芽孢杆菌的一般应激反应是由σ(B)因子控制的,应激信号是由一系列调节σ(B)活性的Rsb蛋白传递的。RsbX是一种PPM II磷酸酶,它通过使由RsbR和RsbS组成的应激体去磷酸化来阻止应激反应。RsbX的晶体结构揭示了催化中心的重组,第二个Mn(2+)离子由β4-α1环的Gly47 O唯一地配位,而不是像PPM I磷酸酶那样由水分子配位。α1的额外螺旋旋转使环向金属结合位点倾斜,而β2-β3环向外摆动以适应这种倾斜。对于PPM II磷酸酶的这一定义特征至关重要的残基是高度保守的。催化中心的形成是金属特异性的,因为与Mg(2+)离子的结晶导致β4-α1环的移位,导致第二离子的损失。RsbX也缺乏PPM I磷酸酶的flap亚结构域特征。基于应激体模型,RsbX对RsbR-P和RsbS-P的活性可能受到其磷酸化位点的不同可及性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure of the RsbX phosphatase involved in the general stress response of Bacillus subtilis.

In the general stress response of Bacillus subtilis, which is governed by the sigma factor σ(B), stress signalling is relayed by a cascade of Rsb proteins that regulate σ(B) activity. RsbX, a PPM II phosphatase, halts the response by dephosphorylating the stressosome composed of RsbR and RsbS. The crystal structure of RsbX reveals a reorganization of the catalytic centre, with the second Mn(2+) ion uniquely coordinated by Gly47 O from the β4-α1 loop instead of a water molecule as in PPM I phosphatases. An extra helical turn of α1 tilts the loop towards the metal-binding site, and the β2-β3 loop swings outwards to accommodate this tilting. The residues critical for this defining feature of the PPM II phosphatases are highly conserved. Formation of the catalytic centre is metal-specific, as crystallization with Mg(2+) ions resulted in a shift of the β4-α1 loop that led to loss of the second ion. RsbX also lacks the flap subdomain characteristic of PPM I phosphatases. On the basis of a stressosome model, the activity of RsbX towards RsbR-P and RsbS-P may be influenced by the different accessibilities of their phosphorylation sites.

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