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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Structure and functional analysis of the siderophore periplasmic binding protein from the fuscachelin gene cluster of Thermobifida fusca
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Structure and functional analysis of the siderophore periplasmic binding protein from the fuscachelin gene cluster of Thermobifida fusca

机译:嗜热栖热菌福斯卡林基因簇中铁载体周质结合蛋白的结构和功能分析

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摘要

Iron acquisition is a complex, multicomponent process critical for most organisms' survival and virulence. Small iron chelating molecules, siderophores, mediate transport as key components of common pathways for iron assimilation in many microorganisms. The chemistry and biology of the extraordinary tight and specific metal binding siderophores is of general interest in terms of host/guest chemistry and is a potential target toward the development of therapeutic treatments for microbial virulence. The siderophore pathway of the moderate thermophile, Thermobifida fusca, is an excellent model system to study the process in Gram-positive bacteria. Here we describe the structure and characterization of the siderophore periplasmic binding protein, FscJ from the fuscachelin gene cluster of T. fusca. The structure shows a di-domain arrangement connected with a long -helix hinge. Several X-ray structures detail ligand-free conformational changes at different pH values, illustrating complex interdomain flexibility of the siderophore receptors. We demonstrated that FscJ has a unique recognition mechanism and details the binding interaction with ferric-fuscachelin A through ITC and docking analysis. The presented work provides a structural basis for the complex molecular mechanisms of siderophore recognition and transportation. Proteins 2016; 84:118-128. (c) 2015 Wiley Periodicals, Inc.
机译:铁的摄取是一个复杂的,多组分的过程,对大多数生物的生存和毒力至关重要。小的铁螯合分子铁载体介导运输,是许多微生物中铁同化的常见途径的关键组成部分。就宿主/客体化学而言,非同寻常的紧密和特异的金属结合铁载体的化学和生物学是普遍感兴趣的,并且是开发微生物毒力的治疗方法的潜在目标。中度嗜热菌Thermobifida fusca的铁载体途径是研究革兰氏阳性细菌过程的出色模型系统。在这里,我们描述了来自T. fusca的fuscachelin基因簇的铁载体周质结合蛋白FscJ的结构和特征。该结构示出了与长螺旋铰链连接的双畴布置。几种X射线结构详述了在不同pH值下无配体的构象变化,说明了铁载体受体具有复杂的域间柔性。我们证明了FscJ具有独特的识别机制,并通过ITC和对接分析详细描述了与铁融合蛋白A的结合相互作用。提出的工作为铁载体识别和运输的复杂分子机制提供了结构基础。蛋白质2016; 84:118-128。 (c)2015年威利期刊有限公司

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