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A rationalization of the acidic pH dependence for stromelysin-1 (Matrix metalloproteinase-3) catalysis and inhibition.
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Structure of human pro-matrix metalloproteinase-2: activation mechanism revealed.人源前基质金属蛋白酶-2的结构:揭示激活机制
Science. 1999 Jun 4;284(5420):1667-70. doi: 10.1126/science.284.5420.1667.
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Role of His-224 in the anomalous pH dependence of human stromelysin-1.
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Matrix metalloproteinases: structures, evolution, and diversification.基质金属蛋白酶:结构、进化与多样化
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MMP-9/gelatinase B is a key regulator of growth plate angiogenesis and apoptosis of hypertrophic chondrocytes.基质金属蛋白酶-9/明胶酶B是生长板血管生成和肥大软骨细胞凋亡的关键调节因子。
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Acta Neuropathol. 1997 Dec;94(6):590-8. doi: 10.1007/s004010050754.
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Site-directed mutagenesis of the active site glutamate in human matrilysin: investigation of its role in catalysis.人基质溶素活性位点谷氨酸的定点诱变:对其催化作用的研究
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Matrix metalloproteinases in the normal human central nervous system, microglial nodules, and multiple sclerosis lesions.正常人类中枢神经系统、小胶质结节及多发性硬化病变中的基质金属蛋白酶
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Human matrix metalloproteinase specificity studies using collagen sequence-based synthetic peptides.
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金属蛋白酶功能调节的pH值和温度依赖性。中性粒细胞胶原酶与明胶酶A和B的比较。

pH- and temperature-dependence of functional modulation in metalloproteinases. A comparison between neutrophil collagenase and gelatinases A and B.

作者信息

Fasciglione G F, Marini S, D'Alessio S, Politi V, Coletta M

机构信息

Department of Experimental Medicine and Biochemical Sciences, University of Roma Tor Vergata, I-00133 Roma, Italy.

出版信息

Biophys J. 2000 Oct;79(4):2138-49. doi: 10.1016/S0006-3495(00)76461-7.

DOI:10.1016/S0006-3495(00)76461-7
PMID:11023917
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1301103/
Abstract

Metalloproteases are metalloenzymes secreted in the extracellular fluid and involved in inflammatory pathologies or events, such as extracellular degradation. A Zn(2+) metal, present in the active site, is involved in the catalytic mechanism, and it is generally coordinated with histidyl and/or cysteinyl residues of the protein moiety. In this study we have investigated the effect of both pH (between pH 4.8 and 9.0) and temperature (between 15 degrees C and 37 degrees C) on the enzymatic functional properties of the neutrophil interstitial collagenase (MMP-8), gelatinases A (MMP-2) and B (MMP-9), using the same synthetic substrate, namely MCA-Pro-Leu-Gly approximately Leu-DPA-Ala-Arg-NH(2). A global analysis of the observed proton-linked behavior for k(cat)/K(m), k(cat), and K(m) indicates that in order to have a fully consistent description of the enzymatic action of these metalloproteases we have to imply at least three protonating groups, with differing features for the three enzymes investigated, which are involved in the modulation of substrate interaction and catalysis by the enzyme. This is the first investigation of this type on recombinant collagenases and gelatinases of human origin. The functional behavior, although qualitatively similar, displays significant differences with respect to what was previously observed for stromelysin and porcine collagenase and gelatinase (Stack, M. S., and R. D. Gray. 1990. Arch. Biochem. Biophys. 281:257-263; Harrison, R. K., B. Chang, L. Niedzwiecki, and R. L. Stein. 1992. Biochemistry. 31:10757-10762). The functional characterization of these enzymes can have some relevant physiological significance, since it may be related to the marked changes in the environmental pH that collagenase and gelatinases may experience in vivo, moving from the intracellular environment to the extracellular matrix.

摘要

金属蛋白酶是分泌到细胞外液中的金属酶,参与炎症病理或过程,如细胞外降解。存在于活性位点的锌离子(Zn(2+))参与催化机制,它通常与蛋白质部分的组氨酰和/或半胱氨酰残基配位。在本研究中,我们使用相同的合成底物,即MCA-Pro-Leu-Gly≈Leu-DPA-Ala-Arg-NH(2),研究了pH值(在4.8至9.0之间)和温度(在15℃至37℃之间)对中性粒细胞间质胶原酶(MMP-8)、明胶酶A(MMP-2)和B(MMP-9)酶功能特性的影响。对观察到的k(cat)/K(m)、k(cat)和K(m)的质子关联行为的全面分析表明,为了对这些金属蛋白酶的酶促作用有一个完全一致的描述,我们必须至少涉及三个质子化基团,对于所研究的三种酶具有不同的特征,它们参与酶对底物相互作用和催化的调节。这是对人源重组胶原酶和明胶酶进行的首次此类研究。其功能行为虽然在定性上相似,但与先前观察到的基质溶解素以及猪胶原酶和明胶酶的行为有显著差异(Stack, M. S., and R. D. Gray. 1990. Arch. Biochem. Biophys. 281:257 - 263; Harrison, R. K., B. Chang, L. Niedzwiecki, and R. L. Stein. 1992. Biochemistry. 31:10757 - 10762)。这些酶的功能特性可能具有一些相关的生理意义,因为这可能与胶原酶和明胶酶在体内从细胞内环境转移到细胞外基质时可能经历的环境pH值的显著变化有关。