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Structural insights into the binding of MMP9inhibitors BACK TO CONTENTS PDF NEXT
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Title

 

 

 

 

Structural insights into the binding of MMP9 inhibitors 

Authors

Arpit Tandon1*, Siddharth Sinha2

Affiliation

1Amity Institute of Biotechnology, Amity University Lucknow Campus, Gomti Nagar, Lucknow 226010, India; 2ACS BioInformatics, Biotech Park, Janki Puram, Lucknow 226021, India
 

Email

arpit.tandon@ymail.com

Article Type

Hypothesis

 

Date

Received September 14, 2010; Accepted December 02, 2010; Published January 22, 2011
 

Abstract

Matrix Metalloproteinase are family of enzymes responsible for degradation of extracellular matrix. MMP9 (gelatinase B) is one of the common matrix metalloproteinase that is associated with tissue destruction in a number of disease states such as rheumatoid arthiritis, fibrotic lung disease, dilated cardiomyopathy, as well as cancer invasion and metastasis. Recent study demonstrates that increased expression of MMP9 results in augmentation of myopathy with increased inflammation and fibernecrosis. Previous studies do not provide any conclusive information related to structural specificity of MMP9 inhibitors towards its active site, but with the availability of experimental structures it is now possible to study the structural specificity of MMP9 inhibitors. In light of availability of this information, we have applied docking and molecular dynamics approach to study the binding of inhibitors to the active site of MMP9. Three categories of inhibitor consisting of sulfonamide hydroxamate, thioester, and carboxylic moieties as zinc binding groups (ZBG) were chosen in the present study. Our docking results demonstrate that thioester based zinc binding group gives favourable docking scores as compared to other two groups. Molecular Dynamics simulations further reveal that tight binding conformation for thioester group has high specificity for MMP9 active site. Our study provides valuable insights on inhibitor specificity of MMP9 which provides valuable hints for future design of potent inhibitors and drugs.
 

Citation

Tandon & Sinha, Bioinformation 5(8): 310-314 (2010)

Edited by

Asad U KhAN

 

ISSN

0973-2063

 

Publisher

Biomedical Informatics

 

Copyright

Publisher

 

Copyright Transfer Agreement

The authors of published articles in Bioinformation automatically transfer the copyright to the publisher upon formal acceptance. However, the authors reserve right to use the information contained in the article for non commercial purposes.

 

License

This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited.