Identification of Highly Selective Inhibitors of Collagenase-1 from Combinatorial Libraries of Diketopiperazines

Anna Katrin Szardenings, Valery Antonenko, David A. Campbell, Nuria DeFrancisco, Satoru Ida, Lihong Shi, Nikolai Sharkov, David Tien, Yongwen Wang, and Marc Navre*
Affymax Research Institute, 3410 Central Expressway, Santa Clara, California 95051
J. Med. Chem., 1999, 42 (8), pp 1348–1357
DOI: 10.1021/jm980475p
Publication Date (Web): March 31, 1999
Copyright © 1999 American Chemical Society

 Current address:  Bayer Corp., Institute of Chemistry, West Haven, CT 06516.

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*

 To whom correspondence should be addressed. Phone:  (408) 522-5718. Fax:  (408) 481-0522. E-mail:  Marc_Navre@affymax.com.

Abstract

Thiol-containing diketopiperazines have been recently identified as novel heterocyclic inhibitors of matrix metalloproteinase (MMPs). The compounds described had similar activities against the MMPs collagenase-1 and gelatinase-B. An inhibitor that showed greater than 10-fold selectivity for collagenase-1 over gelatinase-B was desired. Previously published work with peptidyl hydroxamates and thiols indicated that while preparing gelatinase selective inhibitors was straightforward, there was not an obvious route to selective inhibitors of collagenase-1. Combinatorial libraries were prepared and evaluated for their ability to inhibit collagenase-1 and gelatinase-B substrate hydrolysis. A method for estimating the IC50 values of compounds generated by high-throughput parallel synthesis aided in the identification of compounds with the desired properties. We have found that thiol diketopiperazines derived from nitrophenylalanine are both potent and selective inhibitors of collagenase-1. In addition, we have demonstrated that combinatorial chemistry can be utilized to identify molecules with a desired selectivity profile without access to the traditional tools of rational drug design.

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History

  • Published In Issue April 22, 1999
  • Received August 13, 1998

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