Matrix metalloproteinase 1 (MMP-1) cleaves types I, II, and III collagen triple helices into 3/4 and 1/4 fragments. To understand the structural elements responsible for this activity, various lengths of MMP-1 segments have been introduced into MMP-3 (stromelysin 1) starting from the C-terminal end. MMP-3/MMP-1 chimeras and variants were overexpressed in Escherichia coli, folded from inclusion bodies, and isolated as zymogens. After activation, recombinant chimeras were tested for their ability to digest triple helical type I collagen at 25 °C. The results indicate that the nine residues 183RWTNNFREY191 located between the fifth β-strand and the second α-helix in the catalytic domain of MMP-1 are critical for the expression of collagenolytic activity. Mutation of Tyr191 of MMP-1 to Thr, the corresponding residue in MMP-3, reduced collagenolytic activity about 5-fold. Replacement of the nine residues with those of the MMP-3 sequence further decreased the activity 2-fold. Those variants exhibited significant changes in substrate specificity and activity against gelatin and synthetic substrates, further supporting the notion that this region plays a critical role in the expression of collagenolytic activity. However, introduction of this sequence into MMP-3 or a chimera consisting of the catalytic domain of MMP-3 with the hinge region and the C-terminal hemopexin domain of MMP-1 did not express any collagenolytic activity. It is therefore concluded that RWTNNFREY, together with the C-terminal hemopexin domain, is essential for collagenolytic activity but that additional structural elements in the catalytic domain are also required. These elements probably act in a concerted manner to cleave the collagen triple helix.
CITATION STYLE
Chung, L., Shimokawa, K. I., Dinakarpandian, D., Grams, F., Fields, G. B., & Nagase, H. (2000). Identification of the 183RWTNNFREY191 region as a critical segment of matrix metalloproteinase 1 for the expression of collagenolytic activity. Journal of Biological Chemistry, 275(38), 29610–29617. https://doi.org/10.1074/jbc.M004039200
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