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MMP-1 的胶原酶活性受催化结构域和铰链区之间相互作用的调节。

The collagenolytic action of MMP-1 is regulated by the interaction between the catalytic domain and the hinge region.

机构信息

Department of Clinical Sciences and Translational Medicine, University of Roma Tor Vergata, Via Montpellier 1, 00133 Rome, Italy.

出版信息

J Biol Inorg Chem. 2012 Apr;17(4):663-72. doi: 10.1007/s00775-012-0886-z. Epub 2012 Mar 10.

Abstract

The role of the hinge region in the unwinding and cleavage of type I collagen by interstitial collagenase (MMP-1) has been studied at 37 °C and pH 7.3. The collagenolytic processing by MMP-1 displays a very similar overall rate for both chains of collagen I, even though the affinity is higher for the α-1 chain and the cleavage rate is faster for the α-2 chain. MMP-1 binding to collagen I brings about a significant unwinding of the triple-helical arrangement only after the first cleavage step of the α-1 and α-2 chains. The proteolytic processing by wild-type MMP-1 on a synthetic substrate and collagen I has been compared with that observed for site-directed mutants obtained either by truncating the hinge region (∆255-272) or by individually replacing the conserved amino acids Val268, Gly272, and Lys277 of the hinge region with residues observed for the corresponding position in stromelysin-1 (MMP-3), a noncollagenolytic metalloproteinase. The ∆256-272 mutant has no collagenolytic activity, clearly demonstrating the crucial role of this region for the enzymatic processing of collagen I. However, among various mutants investigated, only Gly272Asp shows a dramatically reduced enzymatic activity both on the synthetic substrate and on collagen I. This effect, however, is clearly related to the substituting residue, since substitution of Ala or Asn for Gly272 does not have any effect on the kinetic properties of MMP-1. These data suggest that the substrate specificity of MMP-1 is dictated by the reciprocal structural relationships between the catalytic domain and the carboxy-terminal domain through the conformational arrangement of the hinge region.

摘要

在 37°C 和 pH7.3 的条件下,研究了铰链区在间质胶原酶(MMP-1)对 I 型胶原的解旋和裂解中的作用。尽管 MMP-1 对 α-1 链的亲和力更高,对 α-2 链的裂解速度更快,但 MMP-1 对 I 型胶原的胶原酶解显示出非常相似的两条链的总体速率。MMP-1 与 I 型胶原结合后,仅在 α-1 和 α-2 链的第一个裂解步骤之后,才会导致三螺旋结构发生明显的解旋。野生型 MMP-1 在合成底物和 I 型胶原上的蛋白水解作用已与通过截断铰链区(∆255-272)或单独替换铰链区中保守的氨基酸 Val268、Gly272 和 Lys277 而获得的定点突变体观察到的情况进行了比较,这些突变体分别来自基质金属蛋白酶-1(MMP-3),一种非胶原酶金属蛋白酶,其对应位置的残基。∆256-272 突变体没有胶原酶活性,这清楚地表明该区域对于 I 型胶原的酶解加工至关重要。然而,在所研究的各种突变体中,只有 Gly272Asp 显示出在合成底物和 I 型胶原上的酶活性显著降低。然而,这种效应显然与取代残基有关,因为 Gly272 被 Ala 或 Asn 取代不会对 MMP-1 的动力学特性产生任何影响。这些数据表明,MMP-1 的底物特异性由催化结构域和羧基末端结构域之间的相互结构关系通过铰链区的构象排列决定。

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