首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Miropin a Novel Bacterial Serpin from the Periodontopathogen Tannerella forsythia Inhibits a Broad Range of Proteases by Using Different Peptide Bonds within the Reactive Center Loop
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Miropin a Novel Bacterial Serpin from the Periodontopathogen Tannerella forsythia Inhibits a Broad Range of Proteases by Using Different Peptide Bonds within the Reactive Center Loop

机译:Miropin一种来自牙周病原单胞菌连翘的新型细菌丝氨酸蛋白酶抑制剂通过在反应中心环内使用不同的肽键抑制多种蛋白酶

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摘要

All prokaryotic genes encoding putative serpins identified to date are found in environmental and commensal microorganisms, and only very few prokaryotic serpins have been investigated from a mechanistic standpoint. Herein, we characterized a novel serpin (miropin) from the human pathogen Tannerella forsythia, a bacterium implicated in initiation and progression of human periodontitis. In contrast to other serpins, miropin efficiently inhibited a broad range of proteases (neutrophil and pancreatic elastases, cathepsin G, subtilisin, and trypsin) with a stoichiometry of inhibition of around 3 and second-order association rate constants that ranged from 2.7 × 104 (cathepsin G) to 7.1 × 105 m−1s−1 (subtilisin). Inhibition was associated with the formation of complexes that were stable during SDS-PAGE. The unusually broad specificity of miropin for target proteases is achieved through different active sites within the reactive center loop upstream of the P1-P1′ site, which was predicted from an alignment of the primary structure of miropin with those of well studied human and prokaryotic serpins. Thus, miropin is unique among inhibitory serpins, and it has apparently evolved the ability to inhibit a multitude of proteases at the expense of a high stoichiometry of inhibition and a low association rate constant. These characteristics suggest that miropin arose as an adaptation to the highly proteolytic environment of subgingival plaque, which is exposed continually to an array of host proteases in the inflammatory exudate. In such an environment, miropin may function as an important virulence factor by protecting bacterium from the destructive activity of neutrophil serine proteases. Alternatively, it may act as a housekeeping protein that regulates the activity of endogenous T. forsythia serine proteases.
机译:迄今为止,在环境和共生微生物中都发现了所有编码假定的丝氨酸蛋白酶抑制剂的原核基因,从机理的角度来看,只有极少数的原核丝氨酸蛋白酶抑制剂被研究过。本文中,我们从人类病原体连翘(Tannerella forsythia)中发现了一种新型丝氨酸蛋白酶抑制剂(米洛平),该细菌与人类牙周炎的发生和发展有关。与其他丝氨酸蛋白酶抑制剂相反,米洛平可有效抑制多种蛋白酶(中性粒细胞和胰腺弹性蛋白酶,组织蛋白酶G,枯草杆菌蛋白酶和胰蛋白酶),化学计量比约为3,且二级缔合速率常数范围为2.7×10 < sup> 4 (组织蛋白酶G)到7.1×10 5 m -1 s -1 (枯草杆菌蛋白酶)。抑制作用与在SDS-PAGE过程中稳定形成的复合物有关。米洛平对靶标蛋白酶的异常广泛的特异性是通过P1-P1'位点上游的反应中心环内的不同活性位点实现的,这是通过米洛平一级结构与经过充分研究的人和原核丝氨酸蛋白酶抑制剂的结构比对预测的。因此,米洛平在抑制性丝氨酸蛋白酶抑制剂中是独特的,并且显然已经发展出以抑制的高化学计量和低缔合速率常数为代价来抑制多种蛋白酶的能力。这些特征表明,米洛平起因于对龈下菌斑的高度蛋白水解环境的适应,该环境持续暴露于炎性渗出物中的一系列宿主蛋白酶。在这样的环境中,米洛平可以通过保护细菌免受嗜中性粒细胞丝氨酸蛋白酶的破坏作用而起重要毒力因子的作用。或者,它可以作为管家蛋白来调节内源性连翘丝氨酸蛋白酶的活性。

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