Parsing the functional specificity of Siderocalin/Lipocalin 2/NGAL for siderophores and related small-molecule ligands

IF 3.5 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Structural Biology: X Pub Date : 2019-04-01 DOI:10.1016/j.yjsbx.2019.100008
Matthew C. Clifton , Peter B. Rupert , Trisha M. Hoette , Kenneth N. Raymond , Rebecca J. Abergel , Roland K. Strong
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引用次数: 17

Abstract

Siderocalin/Lipocalin 2/Neutrophil Gelatinase Associated Lipocalin/24p3 is an innate immune system protein with bacteriostatic activity, acting by tightly binding and sequestering diverse catecholate and mixed-type ferric siderophores from enteric bacteria and mycobacteria. Bacterial virulence achieved through siderophore modifications, or utilization of alternate siderophores, can be explained by evasion of Siderocalin binding. Siderocalin has also been implicated in a wide variety of disease processes, though often in seemingly contradictory ways, and has been proposed to bind to a broader array of ligands beyond siderophores. Using structural, directed mutational, and binding studies, we have sought to rigorously test, and fully elucidate, the Siderocalin recognition mechanism. Several proposed ligands fail to meet rigorous binding criteria, including the bacterial siderophore pyochelin, the iron-chelating catecholamine hormone norepinephrine, and the bacterial second messenger cyclic diguanylate monophosphate. While possessing a remarkably rigid structure, in principle simplifying analyses of ligand recognition, understanding Scn recognition is complicated by the observed conformational and stoichiometric plasticity, and instability, of its bona fide siderophore ligands. Since the role of Siderocalin at the early host/pathogen interface is to compete for bacterial ferric siderophores, we also analyzed how bacterial siderophore binding proteins and enzymes alternately recognize siderophores that efficiently bind to, or evade, Siderocalin sequestration – including determining the crystal structure of Bacillus cereus YfiY bound to schizokinen. These studies combine to refine the potential physiological functions of Siderocalin by defining its multiplexed recognition mechanism.

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解析铁载体/脂钙蛋白2/NGAL对铁载体及相关小分子配体的功能特异性
脂钙素/脂钙素2/中性粒细胞明胶酶相关脂钙素/24p3是一种具有抑菌活性的先天免疫系统蛋白,通过紧密结合和隔离肠道细菌和分枝杆菌中的多种儿茶酚酸和混合型铁铁载体起作用。通过铁载体修饰或利用替代铁载体获得的细菌毒力可以通过逃避铁载体蛋白结合来解释。铁苷酸也与多种疾病过程有关,尽管通常以看似矛盾的方式,并且已经提出与铁载体以外的更广泛的配体结合。通过结构、定向突变和结合研究,我们试图严格测试并充分阐明Siderocalin的识别机制。一些被提出的配体不能满足严格的结合标准,包括细菌的铁载体pyochelin,铁螯合儿茶酚胺激素去甲肾上腺素,以及细菌的第二信使环二胍酸单磷酸。虽然具有显著的刚性结构,原则上简化了配体识别的分析,但由于观察到其真正的铁载体配体的构象和化学计量塑性以及不稳定性,理解Scn识别变得复杂。由于铁铁蛋白在早期宿主/病原体界面的作用是竞争细菌铁铁载体,我们还分析了细菌铁铁载体结合蛋白和酶如何交替识别有效结合或逃避铁铁载体隔离的铁载体,包括确定蜡样芽孢杆菌YfiY与分裂素结合的晶体结构。这些研究通过定义Siderocalin的多重识别机制来完善其潜在的生理功能。
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来源期刊
Journal of Structural Biology: X
Journal of Structural Biology: X Biochemistry, Genetics and Molecular Biology-Structural Biology
CiteScore
6.50
自引率
0.00%
发文量
20
审稿时长
62 days
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