Ogata Y, Enghild J J, Nagase H
Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City 66103.
J Biol Chem. 1992 Feb 25;267(6):3581-4.
Matrix metalloproteinase 9 (MMP-9), also known as 92-kDa gelatinase/type IV collagenase, is secreted from neutrophils, macrophages, and a number of transformed cells in zymogen form. Here we report that matrix metalloproteinase 3 (MMP-3/stromelysin) is an activator of the precursor of matrix metalloproteinase 9 (proMMP-9). MMP-3 initially cleaves proMMP-9 at the Glu40-Met41 bond located in the middle of the propeptide to generate an 86-kDa intermediate. Cleavage of this bond triggers a change in proMMP-9 that renders the Arg87-Phe88 bond susceptible to the second cleavage by MMP-3, resulting in conversion to an 82-kDa form. alpha 2-Macroglobulin binding studies of partially activated MMP-9 demonstrate that the 82-kDa species is proteolytically active, but not the initial intermediate of 86 kDa. This stepwise activation mechanism of proMMP-9 is analogous to those of other members of the MMP family, but the action of MMP-3 on proMMP-9 is the first example of zymogen activation that can be triggered by another member of the MMP family. The results imply that MMP-3 may be an effective activator of proMMP-9 in vivo.
基质金属蛋白酶9(MMP - 9),也被称为92 kDa明胶酶/IV型胶原酶,以酶原形式从中性粒细胞、巨噬细胞及多种转化细胞中分泌出来。在此我们报告,基质金属蛋白酶3(MMP - 3/基质溶解素)是基质金属蛋白酶9(proMMP - 9)前体的激活剂。MMP - 3最初在位于前肽中部的Glu40 - Met41键处切割proMMP - 9,产生一个86 kDa的中间体。该键的切割引发proMMP - 9的变化,使Arg87 - Phe88键易于被MMP - 3进行第二次切割,从而转化为82 kDa的形式。对部分激活的MMP - 9进行的α2 - 巨球蛋白结合研究表明,82 kDa的形式具有蛋白水解活性,而最初的86 kDa中间体则没有。proMMP - 9的这种逐步激活机制与MMP家族的其他成员类似,但MMP - 3对proMMP - 9的作用是由MMP家族的另一个成员触发的酶原激活的首个例子。这些结果表明,MMP - 3在体内可能是proMMP - 9的有效激活剂。