人钙保护蛋白对锌的隔离促进了锰与细菌溶质结合蛋白PsaA和MntC的结合。

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Metallomics Pub Date : 2022-03-10 DOI:10.1093/mtomcs/mfac001
Tomer Rosen, Rose C Hadley, Aaron T Bozzi, Daniel Ocampo, Jason Shearer, Elizabeth M Nolan
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引用次数: 1

摘要

锌是细菌生存和生长所必需的过渡金属营养物质,但锌含量过高时可能会中毒。革兰氏阳性病原菌肺炎链球菌对锌中毒敏感,导致其生长受到抑制,抗氧化应激能力下降。肺炎链球菌对锰的需求相对较高,这种病原体的锌毒性归因于锌(II)在溶质结合蛋白(SBP) PsaA的Mn(II)位点的协同作用,这阻止了PsaABC运输系统对Mn(II)的吸收。在这项工作中,我们研究了肺炎球菌PsaA和葡萄球菌MntC的Zn(II)结合特性,MntC是另一种革兰氏阳性细菌病原体金黄色葡萄球菌表达的相关SBP,它有助于Mn(II)的摄取。x射线吸收光谱研究表明,两种sbp都含有Zn(II)位点,最好描述为五坐标,溶液中的金属结合研究表明,两种sbp都以亚纳摩尔的亲和力可逆地结合Zn(II)。此外,两种sbp都表现出对Zn(II)离子的强烈热力学偏好,Zn(II)离子很容易从这些蛋白质中取代结合的Mn(II)离子。我们还评估了这些sbp与人类S100蛋白钙保护蛋白(CP, S100A8/S100A9寡聚物)之间的Zn(II)竞争,S100蛋白钙保护蛋白是一种丰富的宿主防御蛋白,参与金属保留先天免疫反应。CP可以将Zn(II)从PsaA和MntC中分离出来,促进Mn(II)与sbp的结合。这些结果表明,CP可以抑制sbp的Zn(II)中毒,并为S100蛋白如何无意中使细菌病原体而不是宿主受益提供了分子视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Zinc sequestration by human calprotectin facilitates manganese binding to the bacterial solute-binding proteins PsaA and MntC.

Zinc sequestration by human calprotectin facilitates manganese binding to the bacterial solute-binding proteins PsaA and MntC.

Zinc is an essential transition metal nutrient for bacterial survival and growth but may become toxic when present at elevated levels. The Gram-positive bacterial pathogen Streptococcus pneumoniae is sensitive to zinc poisoning, which results in growth inhibition and lower resistance to oxidative stress. Streptococcus pneumoniae has a relatively high manganese requirement, and zinc toxicity in this pathogen has been attributed to the coordination of Zn(II) at the Mn(II) site of the solute-binding protein (SBP) PsaA, which prevents Mn(II) uptake by the PsaABC transport system. In this work, we investigate the Zn(II)-binding properties of pneumococcal PsaA and staphylococcal MntC, a related SBP expressed by another Gram-positive bacterial pathogen, Staphylococcus aureus, which contributes to Mn(II) uptake. X-ray absorption spectroscopic studies demonstrate that both SBPs harbor Zn(II) sites best described as five-coordinate, and metal-binding studies in solution show that both SBPs bind Zn(II) reversibly with sub-nanomolar affinities. Moreover, both SBPs exhibit a strong thermodynamic preference for Zn(II) ions, which readily displace bound Mn(II) ions from these proteins. We also evaluate the Zn(II) competition between these SBPs and the human S100 protein calprotectin (CP, S100A8/S100A9 oligomer), an abundant host-defense protein that is involved in the metal-withholding innate immune response. CP can sequester Zn(II) from PsaA and MntC, which facilitates Mn(II) binding to the SBPs. These results demonstrate that CP can inhibit Zn(II) poisoning of the SBPs and provide molecular insight into how S100 proteins may inadvertently benefit bacterial pathogens rather than the host.

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来源期刊
Metallomics
Metallomics 生物-生化与分子生物学
CiteScore
7.00
自引率
5.90%
发文量
87
审稿时长
1 months
期刊介绍: Global approaches to metals in the biosciences
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