Mohammad Ramezani 1 , Jamal Shamsara 2 . Show Affiliations »
Abstract
AIM AND OBJECTIVE: MMP-13 belongs to a large family of proteases called matrix metalloproteinases (MMPs) that degrades type II collagen, the main structural protein of articular cartilage. The main pathologic role of MMP-13 over expression is to contribute to the development of osteoarthritis. METHODS: To find new inhibitors with possible selectivity for MMP-13 a structure based virtual screening was employed. The inhibitory activities of 11 inhibitors among 19 purchased compounds were approved by enzyme inhibition assay. RESULTS: Our results demonstrated that the CADD (computer aided drug design) could be successfully applied to find new MMP-13 inhibitors using a receptor structure (PDB code: 3O2X) which had been demonstrated a good performance in a cross-docking study. CONCLUSION: We discovered inhibitors with new scaffolds for inhibition of MMP-13 and some selectivity features such as proper S1' occupancy and interactions with S1' pocket that could be subjected to a future lead optimization study. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.org.
AIM AND OBJECTIVE: MMP-13 belongs to a large family of proteases called matrix metalloproteinases (MMPs ) that degrades type II collagen, the main structural protein of articular cartilage . The main pathologic role of MMP-13 over expression is to contribute to the development of osteoarthritis . METHODS: To find new inhibitors with possible selectivity for MMP-13 a structure based virtual screening was employed. The inhibitory activities of 11 inhibitors among 19 purchased compounds were approved by enzyme inhibition assay. RESULTS: Our results demonstrated that the CADD (computer aided drug design) could be successfully applied to find new MMP-13 inhibitors using a receptor structure (PDB code: 3O2X) which had been demonstrated a good performance in a cross-docking study. CONCLUSION: We discovered inhibitors with new scaffolds for inhibition of MMP-13 and some selectivity features such as proper S1' occupancy and interactions with S1' pocket that could be subjected to a future lead optimization study. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.org.
Entities: Disease
Gene
Keywords:
Computer aided drug design; MMP-13; docking; matrix metalloproteinase; osteoarthritis; virtual screening
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Year: 2017
PMID: 28814230 DOI: 10.2174/1386207320666170816141351
Source DB: PubMed Journal: Comb Chem High Throughput Screen ISSN: 1386-2073 Impact factor: 1.339