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定义 Sht 家族蛋白在锌获取和补体逃避中的作用。

Defining the Role of the Sht-Family Proteins in Zinc Acquisition and Complement Evasion.

机构信息

ISP, Université de Tours, INRA, UMR1282, Tours, France.

Research Centre for Infectious Diseases, School of Biological Sciences, University of Adelaide, Adelaide, South Australia, Australia.

出版信息

J Bacteriol. 2019 Mar 26;201(8). doi: 10.1128/JB.00757-18. Print 2019 Apr 15.

Abstract

is not only part of the human intestinal and urogenital microbiota but is also a leading cause of septicemia and meningitis in neonates. Its ability to cause disease depends upon the acquisition of nutrients from its environment, including the transition metal ion zinc. The primary zinc acquisition system of the pathogen is the Adc/Lmb ABC permease, which is essential for viability in zinc-restricted environments. Here, we show that in addition to the AdcCB transporter and the three zinc-binding proteins, Lmb, AdcA, and AdcAII, zinc homeostasis also involves two streptococcal histidine triad (Sht) proteins. Sht and ShtII are required for zinc uptake via the Lmb and AdcAII proteins with apparent overlapping functionality and specificity. Both Sht-family proteins possess five-histidine triad motifs with similar hierarchies of importance for Zn homeostasis. Independent of its contribution to zinc homeostasis, Sht has previously been reported to bind factor H leading to predictions of a contribution to complement evasion. Here, we investigated ShtII to ascertain whether it had similar properties. Analysis of recombinant Sht and ShtII reveals that both proteins have similar affinities for factor H binding. However, neither protein aided in resistance to complement in human blood. These findings challenge prior inferences regarding the role of the Sht proteins in resisting complement-mediated clearance. This study examined the role of the two streptococcal histidine triad (Sht) proteins of in zinc homeostasis and complement resistance. We showed that Sht and ShtII facilitate zinc homeostasis in conjunction with the metal-binding proteins Lmb and AdcAII. Here, we show that the Sht-family proteins are functionally redundant with overlapping roles in zinc uptake. Further, this work reveals that although the Sht-family proteins bind to factor H this did not influence survival in human blood.

摘要

不仅是人类肠道和泌尿生殖道微生物群的一部分,也是新生儿败血症和脑膜炎的主要原因。它致病的能力取决于从环境中获取营养,包括过渡金属离子锌。病原体的主要锌获取系统是 Adc/Lmb ABC 渗透酶,这对于在缺锌环境中的生存是必不可少的。在这里,我们表明,除了 AdcCB 转运蛋白和三个锌结合蛋白 Lmb、AdcA 和 AdcAII 之外,锌稳态还涉及两种链球菌组氨酸三肽 (Sht) 蛋白。Sht 和 ShtII 是通过 Lmb 和 AdcAII 蛋白摄取锌所必需的,具有明显的重叠功能和特异性。这两种 Sht 家族蛋白都具有五个组氨酸三肽基序,对于锌稳态具有相似的重要性层次结构。Sht 除了对锌稳态有贡献外,之前还被报道与因子 H 结合,导致对补体逃避的贡献的预测。在这里,我们研究了 ShtII 以确定它是否具有类似的特性。对重组 Sht 和 ShtII 的分析表明,这两种蛋白对因子 H 结合具有相似的亲和力。然而,这两种蛋白都不能帮助人血抵抗补体。这些发现挑战了先前关于 Sht 蛋白在抵抗补体介导的清除中的作用的推断。本研究检查了链球菌组氨酸三肽 (Sht) 蛋白在锌稳态和补体抗性中的作用。我们表明 Sht 和 ShtII 与金属结合蛋白 Lmb 和 AdcAII 一起促进锌稳态。在这里,我们表明 Sht 家族蛋白在锌摄取中具有功能冗余性,具有重叠作用。此外,这项工作表明,尽管 Sht 家族蛋白与因子 H 结合,但这并没有影响在人血中的存活。

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