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首页> 外文期刊>Journal of the American Chemical Society >The Hexahistidine Motif of Host-Defense Protein Human Calprotectin Contributes to Zinc Withholding and Its Functional Versatility
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The Hexahistidine Motif of Host-Defense Protein Human Calprotectin Contributes to Zinc Withholding and Its Functional Versatility

机译:宿主防御蛋白人钙卫蛋白的六组氨酸基序有助于锌的扣留及其功能的多样性。

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摘要

Human calprotectin (CP, S100A8/S100A9 oligomer, MRP-8/MRP-14 oligomer) is an abundant host-defense protein that is involved in the metal-withholding innate immune response. CP coordinates a variety of divalent first-row transition metal ions, which is implicated in its antimicrobial function, and its ability to sequester nutrient Zn(Ⅱ) ions from microbial pathogens has been recognized for over two decades. CP has two distinct transition-metal-binding sites formed at the S100A8/S100A9 dimer interface, including a histidine-rich site composed of S100A8 residues His17 and His27 and S100A9 residues His91 and His95. In this study, we report that CP binds Zn(Ⅱ) at this site using a hexahistidine motif, completed by His103 and His105 of the S100A9 C-terminal tail and previously identified as the high-affinity Mn(Ⅱ) and Fe(Ⅱ) coordination site. Zn(Ⅱ) binding at this unique site shields the S100A9 C-terminal tail from proteolytic degradation by proteinase K. X-ray absorption spectroscopy and Zn(Ⅱ) competition titrations support the formation of a Zn(Ⅱ)-His_6 motif. Microbial growth studies indicate that the hexahistidine motif is important for preventing microbial Zn(Ⅱ) acquisition from CP by the probiotic Lactobacillus plantarum and the opportunistic human pathogen Candida albicans. The Zn(Ⅱ)-His_6 site of CP expands the known biological coordination chemistry of Zn(Ⅱ) and provides new insight into how the human innate immune system starves microbes of essential metal nutrients.
机译:人钙卫蛋白(CP,S100A8 / S100A9寡聚体,MRP-8 / MRP-14寡聚体)是一种丰富的宿主防御蛋白,参与了保留金属的先天免疫应答。 CP能够协调多种二价的第一行过渡金属离子,这与它的抗菌功能有关,并且其从微生物病原体螯合营养性Zn(Ⅱ)离子的能力已被认识了二十多年。 CP具有在S100A8 / S100A9二聚体界面处形成的两个不同的过渡金属结合位点,包括由S100A8残基His17和His27以及S100A9残基His91和His95组成的富含组氨酸的位点。在这项研究中,我们报道CP通过六组氨酸基序在该位点结合Zn(Ⅱ),由S100A9 C末端尾巴的His103和His105完成,先前被鉴定为高亲和力Mn(Ⅱ)和Fe(Ⅱ)协调站点。 Zn(Ⅱ)在此唯一的站点绑定屏蔽S100A9 C末端尾巴的蛋白酶K蛋白水解降解。X射线吸收光谱和Zn(Ⅱ)竞争滴定支持形成Zn(Ⅱ)-His_6主题。微生物生长研究表明,六组氨酸基序对于防止益生菌植物乳杆菌和机会性人类病原体白色念珠菌从CP中获取微生物Zn(Ⅱ)具有重要意义。 CP的Zn(Ⅱ)-His_6位点扩展了已知的Zn(Ⅱ)的生物配位化学,并为人类先天免疫系统如何使必需金属养分的微生物缺乏提供了新的见识。

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  • 来源
    《Journal of the American Chemical Society》 |2016年第37期|12243-12251|共9页
  • 作者单位

    Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States;

    Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States;

    Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States;

    Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States;

    Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States;

    Department of Chemistry, University of Nevada, Reno, Nevada 89503, United States;

    Department of Chemistry, University of Nevada, Reno, Nevada 89503, United States;

    Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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