MT1-MMP (membrane type 1 matrix metalloproteinase, or MMP-14) is a key enzyme in molecular carcinogenesis, tumour-cell growth, invasion and angiogenesis. Novel and potent MMP inhibitors with a mercaptosulphide zinc-binding functionality have been designed and synthesized, and tested against human MT1-MMP and other MMPs. Binding to the MT1-MMP active site was verified by the competitive-inhibition mechanism and stereochemical requirements. MT1-MMP preferred deep P1′ substituents, such as homophenylalanine instead of phenylalanine. Novel inhibitors with a non-prime phthalimido substituent had Ki values in the low-nanomolar range; the most potent of these inhibitors was tested and found to be stable against air-oxidation in calf serum for at least 2 days. To illustrate the molecular interactions of the inhibitor–enzyme complex, theoretical docking of the inhibitors into the active site of MT1-MMP and molecular minimization of the complex were performed. In addition to maintaining the substrate-specificity pocket (S1′ site) van der Waals interactions, the P1′ position side chain may be critical for the peptide-backbone hydrogen-bonding network. To test the inhibition of cell-mediated substrate cleavage, two human cancer-cell culture models were used. Two of the most potent inhibitors tested reached the target enzyme and effectively inhibited activation of proMMP-2 by endogenous MT1-MMP produced by HT1080 human fibrosarcoma cells, and blocked fibronectin degradation by prostate cancer LNCaP cells stably transfected with MT1-MMP. These results provide a model for mercaptosulphide inhibitor binding to MT1-MMP that may aid in the design of more potent and selective inhibitors for MT1-MMP.
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December 2005
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Research Article|
December 06 2005
Inhibition of enzyme activity of and cell-mediated substrate cleavage by membrane type 1 matrix metalloproteinase by newly developed mercaptosulphide inhibitors
Douglas R. Hurst;
Douglas R. Hurst
*Department of Chemistry and Biochemistry and Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306-4390, U.S.A.
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Martin A. Schwartz;
Martin A. Schwartz
*Department of Chemistry and Biochemistry and Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306-4390, U.S.A.
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Yonghao Jin;
Yonghao Jin
*Department of Chemistry and Biochemistry and Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306-4390, U.S.A.
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Mohammad A. Ghaffari;
Mohammad A. Ghaffari
*Department of Chemistry and Biochemistry and Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306-4390, U.S.A.
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Pallavi Kozarekar;
Pallavi Kozarekar
†Department of Medicine, School of Medicine, State University of New York at Stony Brook, Stony Brook, NY 11794, U.S.A.
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Jian Cao;
Jian Cao
†Department of Medicine, School of Medicine, State University of New York at Stony Brook, Stony Brook, NY 11794, U.S.A.
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Qing-Xiang Amy Sang
Qing-Xiang Amy Sang
1
*Department of Chemistry and Biochemistry and Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306-4390, U.S.A.
1To whom correspondence should be addressed (email [email protected]).
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Publisher: Portland Press Ltd
Received:
April 04 2005
Revision Received:
July 15 2005
Accepted:
July 19 2005
Accepted Manuscript online:
July 19 2005
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London
2005
Biochem J (2005) 392 (3): 527–536.
Article history
Received:
April 04 2005
Revision Received:
July 15 2005
Accepted:
July 19 2005
Accepted Manuscript online:
July 19 2005
Citation
Douglas R. Hurst, Martin A. Schwartz, Yonghao Jin, Mohammad A. Ghaffari, Pallavi Kozarekar, Jian Cao, Qing-Xiang Amy Sang; Inhibition of enzyme activity of and cell-mediated substrate cleavage by membrane type 1 matrix metalloproteinase by newly developed mercaptosulphide inhibitors. Biochem J 15 December 2005; 392 (3): 527–536. doi: https://doi.org/10.1042/BJ20050545
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