Monaco Susanna, Gioia Magda, Rodriguez Janet, Fasciglione Giovanni Francesco, Di Pierro Donato, Lupidi Giulio, Krippahl Ludwig, Marini Stefano, Coletta Massimo
Department of Experimental Medicine and Biochemical Sciences, University of Roma Tor Vergata, Via Montpellier 1, I-00133 Roma, Italy.
Biochem J. 2007 Mar 15;402(3):503-13. doi: 10.1042/BJ20061064.
The proteolytic processing of bovine fibrinogen by MMP-2 (gelatinase A), which brings about the formation of a product unable to form fibrin clots, has been studied at 37 degrees C. Catalytic parameters, although showing a somewhat lower catalytic efficiency with respect to thrombin and plasmin, indeed display values indicating a pathophysiological significance of this process. A parallel molecular modelling study predicts preferential binding of MMP-2 to the beta-chain of fibrinogen through its haemopexin-like domain, which has been directly demonstrated by the inhibitory effect in the presence of the exogenous haemopexin-like domain. However, the removal of this domain does not impair the interaction between MMP-2 and fibrinogen, but it dramatically alters the proteolytic mechanism, producing different fragmentation intermediates. The investigation at various pH values between 6.0 and 9.3 indicates a proton-linked behaviour, which is relevant for interpreting the influence on the process by environmental conditions occurring at the site of an injury. Furthermore, the action of MMP-2 on peroxynitrite-treated fibrinogen has been investigated, a situation possibly occurring under oxidative stress. The chemical alteration of fibrinogen, which has been shown to abolish its clotting activity, brings about only limited modifications of the catalytic parameters without altering the main enzymatic mechanism.
在37℃下研究了基质金属蛋白酶-2(明胶酶A)对牛纤维蛋白原的蛋白水解过程,该过程会产生一种无法形成纤维蛋白凝块的产物。催化参数虽然相对于凝血酶和纤溶酶显示出较低的催化效率,但确实显示出表明该过程具有病理生理学意义的值。一项平行的分子建模研究预测,基质金属蛋白酶-2通过其血红素结合蛋白样结构域优先与纤维蛋白原的β链结合,这已通过外源血红素结合蛋白样结构域存在时的抑制作用直接得到证明。然而,去除该结构域不会损害基质金属蛋白酶-2与纤维蛋白原之间的相互作用,但会显著改变蛋白水解机制,产生不同的片段化中间体。在6.0至9.3的不同pH值下进行的研究表明存在质子关联行为,这对于解释损伤部位环境条件对该过程的影响具有重要意义。此外,还研究了基质金属蛋白酶-2对过氧亚硝酸盐处理的纤维蛋白原的作用,这种情况可能在氧化应激下发生。已证明纤维蛋白原的化学改变会消除其凝血活性,这只会对催化参数产生有限的改变,而不会改变主要的酶促机制。