Inhibition of 125I-labeled ristocetin binding to Micrococcus luteus cells by the peptides related to bacterial cell wall mucopeptide precursors: quantitative structure-activity relationships

  • J Med Chem. 1989 Jan;32(1):84-93. doi: 10.1021/jm00121a018.
K H Kim  1 Y Martin E Otis J Mao
Affiliations
  • 1. Pharmaceutical Products Division, Abbott Laboratories, Abbott Park, Illinois 60064.
Abstract

Quantitative structure-activity relationships (QSAR) of N-Ac Amino acids, N-Ac dipeptides, and N-Ac tripeptides in inhibition of 125I-labeled ristocetin binding to Micrococcus luteus cell wall have been developed to probe the details of the binding between ristocetin and N-acetylated peptides. The correlation equations indicate that (1) the binding is stronger for peptides in which the side chain of the C-terminal amino acid has a large molar refractivity (MR) value, (2) the binding is weaker for peptides with polar than for those with nonpolar C-terminal side chains, (3) the N-terminal amino acid in N-Ac dipeptides contributes 12 times that of the C-terminal amino acid to binding affinity, and (4) the interactions between ristocetin and the N-terminal amino acid of N-acetyl tripeptides appear to be much weaker than those with the first two Amino acids.

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