首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Structural characterization of zinc-bound Zmp1, a zinc-dependent metalloprotease secreted by Clostridium difficile
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Structural characterization of zinc-bound Zmp1, a zinc-dependent metalloprotease secreted by Clostridium difficile

机译:锌结合的Zmp1的结构表征,这是艰难梭菌分泌的锌依赖性金属蛋白酶

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摘要

Proteases are commonly secreted by microorganisms. In some pathogens, they can play a series of functional roles during infection, including maturation of cell surface or extracellular virulence factors, interference with host cell signaling, massive host tissue destruction, and dissolution of infection-limiting clots through degradation of the host proteins devoted to the coagulation cascade. We previously reported the identification and characterization of Zmp1, a zinc-dependent metalloprotease secreted by Clostridium difficile, demonstrated that Zmp1 is able to degrade fibrinogen in vitro, and identified two residues necessary to the catalytic activity. In the present work, we solved the solution structure of Zmp1 by Nuclear Magnetic Resonance (NMR) and compared it with the recently solved X-ray structures of substrate-bound and substrate-free Zmp1, highlighting similarities and differences. We also combined the structural characterization to biochemical assays and site-directed mutagenesis, to provide new insights into the catalytic site and on the residues responsible for substrate specificity. The Zmp1 structure showed similarity to the catalytic domain of Anthrax Lethal Factor of Bacillus anthracis. Analogies and differences in the catalytic and in the substrate-binding sites of the two proteins are discussed.
机译:蛋白酶通常由微生物分泌。在某些病原体中,它们可以在感染过程中发挥一系列功能性作用,包括细胞表面或细胞外毒力因子的成熟,干扰宿主细胞信号传导,大量宿主组织破坏以及通过降解专用宿主蛋白而溶解的感染限制血凝块。到凝血级联。我们之前报道了艰难梭菌分泌的锌依赖性金属蛋白酶Zmp1的鉴定和表征,证明Zmp1能够在体外降解纤维蛋白原,并鉴定了催化活性所必需的两个残基。在当前的工作中,我们通过核磁共振(NMR)解决了Zmp1的溶液结构,并将其与最近解决的与基质结合和不含基质的Zmp1的X射线结构进行了比较,突出了相似之处和不同之处。我们还将结构表征与生化分析和定点诱变相结合,以提供对催化位点和负责底物特异性的残基的新见解。 Zmp1结构显示类似于炭疽杆菌炭疽致死因子的催化域。讨论了两种蛋白质的催化位点和底物结合位点的类比和差异。

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