Knäuper V, Patterson M L, Gomis-Rüth F X, Smith B, Lyons A, Docherty A J, Murphy G
University of East Anglia, School of Biological Sciences, Norwich, UK.
Eur J Biochem. 2001 Mar;268(6):1888-96.
Interstitial collagen is degraded by members of the matrix metalloproteinase (MMP) family, including MMP-1. Previous work has shown that the region of MMP-1 coded for by exon 5 is implicated both in substrate specificity and inhibitor selectivity. We have constructed a chimeric enzyme, the exon 5 chimera, consisting primarily of MMP-1, with the region coded for by exon 5 replaced with the equivalent region of MMP-3, a noncollagenolytic MMP. Unlike MMP-3, the exon 5 chimera is capable of cleaving type I collagen, but the activity is only 2.2% of trypsin-activated MMP-1. 'Superactivation' of the chimera has no discernible effect, suggesting that the salt bridge formed in 'superactive' MMP-1 is not present. The kinetics for exon 5 chimera cleavage of two synthetic substrates display an MMP-3 phenotype, however, cleavage of gelatin is slightly impaired as compared to the parent enzymes. The K(iapp) values for the exon 5 chimera complexed with synthetic inhibitors and N-terminal TIMP-2 also show a more MMP-3-like behaviour. However, the k(on) values for N-terminal TIMP-1 and N-terminal TIMP-2 are more comparable to those for MMP-1. These data show that the region of MMP-1 coded for by exon 5 is involved in both substrate specificity and inhibitor selectivity and the structural basis for our findings is discussed.
间质胶原可被基质金属蛋白酶(MMP)家族的成员降解,其中包括MMP-1。先前的研究表明,MMP-1第5外显子编码的区域与底物特异性和抑制剂选择性均有关联。我们构建了一种嵌合酶,即第5外显子嵌合体,它主要由MMP-1组成,其中第5外显子编码的区域被非胶原降解性MMP-3的等效区域所取代。与MMP-3不同,第5外显子嵌合体能够切割I型胶原,但其活性仅为胰蛋白酶激活的MMP-1的2.2%。该嵌合体的“超激活”没有明显效果,这表明在“超活性”MMP-1中形成的盐桥不存在。然而,第5外显子嵌合体切割两种合成底物的动力学表现出MMP-3的表型,与亲本酶相比,其对明胶的切割略有受损。与合成抑制剂和N端TIMP-2复合的第5外显子嵌合体的K(iapp)值也显示出更类似MMP-3的行为。然而,N端TIMP-1和N端TIMP-2的k(on)值与MMP-1的更具可比性。这些数据表明,MMP-1第5外显子编码的区域参与了底物特异性和抑制剂选择性,并对我们研究结果的结构基础进行了讨论。