Elastin degradation by matrix metalloproteinases - Cleavage site specificity and mechanisms of elastolysis

被引:182
作者
Mecham, RP
Broekelmann, TJ
Fliszar, CJ
Shapiro, SD
Welgus, HG
Senior, RM
机构
[1] WASHINGTON UNIV,SCH MED,DEPT MED,DIV PULM & CRIT CARE MED,ST LOUIS,MO 63110
[2] WASHINGTON UNIV,SCH MED,DEPT MED,DIV DERMATOL,ST LOUIS,MO 63110
关键词
D O I
10.1074/jbc.272.29.18071
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Insoluble elastin was used as a substrate to characterize the peptide bond specificities of human (HME) and mouse macrophage elastase (MME) and to compare these enzymes with other mammalian metalloproteinases and serine elastases, New amino termini detected by protein sequence analysis in insoluble elastin following proteolytic digestion reveal the P'(1) residues in the carboxyl-terminal direction from the scissile bond, The relative proportion of each amino acid in this position reflects the proteolytic preference of the elastolytic enzyme, The predominant amino acids detected by protein sequence analysis following cleavage of insoluble elastin with HME, MME, and 92-kDa gelatinase were Leu, Ile, Ala, Gly, and Val, HME and RIME were similar ill their substrate specificity and showed a stronger preference for Leu/Ile than did the 92-kDa enzyme, Fibroblast collagenase showed no activity toward elastin, The amino acid residues detected in insoluble elastin following hydrolysis with porcine pancreatic elastase and human neutrophil elastase were predominantly Gly and Ala, with lesser amounts of Val, Phe, Ile, and Leu, There were interesting specificity differences between the two enzymes, however, For both the serine and matrix metalloproteinases, catalysis of peptide bond cleavage in insoluble elastin was characterized by temperature effects and water requirements typical of common enzyme catalysed reactions, even those involving soluble substrates. In contrast to what has been observed for collagen, the energy requirements for elastolysis were not extraordinary, consistent with cleavage sites in elastin being readily accessible to enzymatic attack.
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页码:18071 / 18076
页数:6
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