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新型血红素降解蛋白HbpS的寡聚组装对于其与同源双组分传感激酶的相互作用至关重要。

The oligomeric assembly of the novel haem-degrading protein HbpS is essential for interaction with its cognate two-component sensor kinase.

作者信息

Ortiz de Orué Lucana Darío, Bogel Gabriele, Zou Peijian, Groves Matthew R

机构信息

Universität Osnabrück, FB Biologie/Chemie, Angewandte Genetik der Mikroorganismen, Barbarastrasse 13, 49069 Osnabrück, Germany.

出版信息

J Mol Biol. 2009 Mar 6;386(4):1108-22. doi: 10.1016/j.jmb.2009.01.017.

Abstract

HbpS, a novel protein of previously unknown function from Streptomyces reticuli, is up-regulated in response to haemin- and peroxide-based oxidative stress and interacts with the SenS/SenR two-component signal transduction system. In this study, we report the high-resolution crystal structures (2.2 and 1.6 A) of octomeric HbpS crystallized in the presence and in the absence of haem and demonstrate that iron binds to surface-exposed lysine residues of an octomeric assembly. Based on an analysis of the crystal structures, we propose that the iron atom originates from the haem group and report subsequent biochemical experiments that demonstrate that HbpS possesses haem-degrading activity in vitro. Further examination of the crystal structures has identified amino acids that are essential for assembly of the octomer. The role of these residues is confirmed by biophysical experiments. Additionally, we show that while the octomeric assembly state of HbpS is not essential for haem-degrading activity, the assembly of HbpS is required for its interaction with the cognate sensor kinase, SenS. Homologs of HbpS and SenS/SenR have been identified in a number of medically and ecologically relevant bacterial species (including Vibrio cholerae, Klebsiella pneumoniae, Corynebacterium diphtheriae, Arthrobacter aurescens and Pseudomonas putida), suggesting the existence of a previously undescribed bacterial oxidative stress-response pathway common to Gram-negative and Gram-positive bacteria. Thus, the data presented provide the first insight into the function of a novel protein family and an example of an iron-mediated interaction between an accessory protein and its cognate two-component sensor kinase.

摘要

HbpS是一种来自网状链霉菌的功能未知的新型蛋白质,在受到基于血红素和过氧化物的氧化应激时会上调,并与SenS/SenR双组分信号转导系统相互作用。在本研究中,我们报告了在有和没有血红素存在的情况下结晶的八聚体HbpS的高分辨率晶体结构(2.2 Å和1.6 Å),并证明铁与八聚体组装体表面暴露的赖氨酸残基结合。基于对晶体结构的分析,我们提出铁原子源自血红素基团,并报告了随后的生化实验,这些实验表明HbpS在体外具有血红素降解活性。对晶体结构的进一步研究确定了八聚体组装所必需的氨基酸。这些残基的作用通过生物物理实验得到了证实。此外,我们表明,虽然HbpS的八聚体组装状态对于血红素降解活性不是必需的,但HbpS的组装是其与同源传感器激酶SenS相互作用所必需的。已在许多医学和生态相关细菌物种(包括霍乱弧菌、肺炎克雷伯菌、白喉棒状杆菌、金色节杆菌和恶臭假单胞菌)中鉴定出HbpS和SenS/SenR的同源物,这表明存在一种以前未描述的革兰氏阴性和革兰氏阳性细菌共有的细菌氧化应激反应途径。因此,所呈现的数据首次深入了解了一个新型蛋白质家族的功能,以及辅助蛋白与其同源双组分传感器激酶之间铁介导相互作用的一个例子。

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