Identification of an exosite at the neutrophil elastase/alpha-1-antitrypsin interface.

Roberto Gangemi, Mattia Bignotti, Andrea Denardo, Claudia N Pearce, Riccardo Ronzoni, David A Lomas, James A Irving, Annamaria Fra, Fabrizio Gangemi
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Abstract

Neutrophil elastase (NE) is released by activated neutrophils during an inflammatory response and exerts proteolytic activity on elastin and other extracellular matrix components. This protease is rapidly inhibited by the plasma serine protease inhibitor alpha-1-antitrypsin (AAT), and the importance of this protective activity on lung tissue is highlighted by the development of early onset emphysema in individuals with AAT deficiency. As a serpin, AAT presents a surface-exposed reactive centre loop (RCL) whose sequence mirrors the target protease specificity. Following binding of NE in a 'Michaelis' encounter complex, cleavage of the RCL results in an irreversible complex between the two molecules. Here, the structure of the AAT-NE encounter complex was studied by molecular dynamics, mutagenesis and enzyme kinetics. Exploration of the geometry of interaction between the two molecules revealed the possibility that the interaction interface extends beyond the RCL; a persistent feature of the simulations was the interaction between a region located upstream of β-strand 4C of AAT, comprising three acidic residues (Asp202, Glu199 and Glu204), and Arg147 of NE. Mutation of the acidic residues to either alanine or serine, or a D202R substitution, resulted in a reduced rate of association between recombinant AAT and NE. Addition of salt to the buffer had little effect for these mutants but substantially reduced the rate of interaction of the wild-type protein. These data are consistent with a role for this acidic region on AAT as an exosite that contributes to an optimal interaction with its physiological protease target.

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中性粒细胞弹性蛋白酶/ α -1-抗胰蛋白酶界面外源物的鉴定。
中性粒细胞弹性蛋白酶(NE)在炎症反应中由活化的中性粒细胞释放,并对弹性蛋白和其他细胞外基质成分发挥蛋白水解活性。该蛋白酶可被血浆丝氨酸蛋白酶抑制剂α -1-抗胰蛋白酶(AAT)迅速抑制,AAT缺乏症患者发生早发性肺气肿凸显了这种保护活性对肺组织的重要性。作为蛇形蛋白,AAT呈现出一个表面暴露的反应性中心环(RCL),其序列反映了目标蛋白酶的特异性。NE与Michaelis相遇复合物结合后,RCL的裂解导致两个分子之间产生不可逆复合物。本文采用分子动力学、诱变和酶动力学等方法研究了AAT-NE相遇复合物的结构。对两分子之间相互作用几何的探索揭示了相互作用界面延伸到RCL之外的可能性;模拟的一个持续特征是位于AAT β-链4C上游的区域(包含三个酸性残基(Asp202, Glu199和Glu204))与NE的Arg147之间的相互作用。酸性残基突变为丙氨酸或丝氨酸,或D202R取代,导致重组AAT和NE之间的关联率降低。在缓冲液中加入盐对这些突变体影响不大,但却大大降低了野生型蛋白的相互作用速率。这些数据与AAT上的酸性区域作为外源的作用是一致的,它有助于与其生理蛋白酶靶点的最佳相互作用。
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