Doucet Alain, Bouchard Dominique, Janelle Marie France, Bellemare Audrey, Gagné Stéphane, Tremblay Guy M, Bourbonnais Yves
Département de biochimie et de microbiologie, Université Laval, Québec, Qc, Canada.
Biochem J. 2007 Aug 1;405(3):455-63. doi: 10.1042/BJ20070020.
Pre-elafin is a tight-binding inhibitor of neutrophil elastase and myeloblastin; two enzymes thought to contribute to tissue damage in lung emphysema. Previous studies have established that pre-elafin is also an effective anti-inflammatory molecule. However, it is not clear whether both functions are linked to the antipeptidase activity of pre-elafin. As a first step toward elucidating the structure/function relationship of this protein, we describe here the construction and characterization of pre-elafin variants with attenuated antipeptidase potential. In these mutants, the P1' methionine residue of the inhibitory loop is replaced by either a lysine (pre-elafinM25K) or a glycine (pre-elafinM25G) residue. Both mutated variants are stable and display biochemical properties undistinguishable from WT (wild-type) pre-elafin. However, compared with WT pre-elafin, their inhibitory constants are increased by one to four orders of magnitude toward neutrophil elastase, myeloblastin and pancreatic elastase, depending on the variants and enzymes tested. As suggested by molecular modelling, this attenuated inhibitory potential correlates with decreased van der Waals interactions between the variants and the enzymes S1' subsite. In elastase-induced experimental emphysema in mice, only WT pre-elafin protected against tissue destruction, as assessed by the relative airspace enlargement measured using lung histopathological sections. Pre-elafin and both mutants prevented transient neutrophil alveolitis. However, even the modestly affected pre-elafinM25K mutant, as assayed in vitro with small synthetic substrates, was a poor inhibitor of the neutrophil elastase and myeloblastin elastolytic activity measured with insoluble elastin. We therefore conclude that full antipeptidase activity of pre-elafin is essential to protect against lung tissue lesions in this experimental model.
前弹性蛋白是中性粒细胞弹性蛋白酶和成髓细胞蛋白酶的紧密结合抑制剂;这两种酶被认为与肺气肿中的组织损伤有关。先前的研究已证实前弹性蛋白也是一种有效的抗炎分子。然而,尚不清楚这两种功能是否都与前弹性蛋白的抗肽酶活性相关。作为阐明该蛋白结构/功能关系的第一步,我们在此描述了具有减弱抗肽酶潜力的前弹性蛋白变体的构建和表征。在这些突变体中,抑制环的P1'甲硫氨酸残基被赖氨酸(前弹性蛋白M25K)或甘氨酸(前弹性蛋白M25G)残基取代。两种突变变体均稳定,并且显示出与野生型(WT)前弹性蛋白无法区分的生化特性。然而,与WT前弹性蛋白相比,根据所测试的变体和酶,它们对中性粒细胞弹性蛋白酶、成髓细胞蛋白酶和胰腺弹性蛋白酶的抑制常数增加了一到四个数量级。如分子建模所示,这种减弱的抑制潜力与变体和酶S1'亚位点之间范德华相互作用的减少相关。在小鼠弹性蛋白酶诱导的实验性肺气肿中,通过使用肺组织病理切片测量的相对气腔扩大评估,只有WT前弹性蛋白能防止组织破坏。前弹性蛋白和两种突变体均能预防短暂性中性粒细胞肺泡炎。然而,即使是在体外用小的合成底物测定时受影响较小的前弹性蛋白M25K突变体,在用不溶性弹性蛋白测定时,对中性粒细胞弹性蛋白酶和成髓细胞蛋白酶的弹性溶解活性的抑制作用也很差。因此,我们得出结论,在前弹性蛋白的这个实验模型中,其完整的抗肽酶活性对于防止肺组织损伤至关重要。