Protease inhibitors. Part 8: synthesis of potent Clostridium histolyticum collagenase inhibitors incorporating sulfonylated L-alanine hydroxamate moieties

Bioorg Med Chem. 2000 Mar;8(3):637-45. doi: 10.1016/s0968-0896(99)00316-8.

Abstract

A series of hydroxamates was prepared by reaction of alkyl/arylsulfonyl halides with N-2-chlorobenzyl-L-alanine, followed by conversion of the COOH moiety to the CONHOH group, with hydroxylamine in the presence of carbodiimides. Other structurally related compounds were obtained by reaction of N-2-chlorobenzyl-L-alanine with aryl isocyanates, arylsulfonyl isocyanates or benzoyl isothiocyanate, followed by the similar conversion of the COOH into the CONHOH moiety. The new compounds were assayed as inhibitors of the Clostridium histolyticum collagenase, ChC (EC 3.4.24.3), a bacterial zinc metallo-peptidase which degrades triple helical collagen as well as a large number of synthetic peptides. The prepared hydroxamate derivatives proved to be 100-500 times more active collagenase inhibitors than the corresponding carboxylates. Substitution patterns leading to best ChC inhibitors (both for carboxylates as well as for the hydroxamates) were those involving perfluoroalkylsulfonyl- and substituted-arylsulfonyl moieties, such as pentafluorophenylsulfonyl; 3- and 4-protected-aminophenylsulfonyl-; 3- and 4-carboxyphenylsulfonyl-; 3-trifluoromethyl-phenylsulfonyl; as well as 1- and 2-naphthyl-, quinoline-8-yl- or substituted-arylsulfonylamidocarboxyl moieties among others. Similarly to the matrix metalloproteinase (MMP) hydroxamate inhibitors, ChC inhibitors of the type reported here must incorporate hydrophobic moieties at the P2' and P3' sites, in order to achieve tight binding to the enzyme. This study also proves that the 2-chlorobenzyl moiety, investigated here for the first time, is an efficient P2' anchoring moiety for obtaining potent ChC inhibitors.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Alanine / analogs & derivatives
  • Alanine / antagonists & inhibitors
  • Alanine / chemistry
  • Alanine / pharmacology
  • Hydroxamic Acids / chemistry
  • Hydroxamic Acids / pharmacology
  • Kinetics
  • Matrix Metalloproteinase Inhibitors
  • Matrix Metalloproteinases / metabolism
  • Microbial Collagenase / antagonists & inhibitors*
  • Microbial Collagenase / metabolism
  • Protease Inhibitors / chemical synthesis*
  • Protease Inhibitors / pharmacology*
  • Sulfones / chemistry
  • Sulfones / pharmacology
  • Zinc

Substances

  • Hydroxamic Acids
  • Matrix Metalloproteinase Inhibitors
  • Protease Inhibitors
  • Sulfones
  • Matrix Metalloproteinases
  • Microbial Collagenase
  • Zinc
  • Alanine