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Combinatorial chemistry reveals a new motif that binds the platelet fibrinogen receptor, gpIIbIIIa.

BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS(1999)

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摘要
Among cell adhesion molecules, the classic Arg-Gly-Asp (RGD) motif is the best studied. We used combinatorial chemical and affinity immunochemical methods to find a novel motif of unnatural peptide ligands for the fibrinogen receptor of platelets, gpIIbIIIa (alpha(IIb)beta(3)). The new D-amino acid motif, p(f/y)l, is unique among the ligands that bind the RGD pocket: It lacks the carboxylic acid group that is believed to coordinate with calcium in the MIDAS motif of the receptor. With an IC50 of 14 mu M for the most potent compound, these linear p(f/y)l peptides had affinities similar to those of linear peptides containing RGD, and reversed sequences failed to compete with binding up to 1 mM. As the new motif was so different, molecular modeling was employed to suggest a model for molecular recognition, A reversed binding mechanism common for D amino acid mimics of natural L-amino acid peptides offers an attractive hypothesis that suggests three points of contact similar to those made by the RGD-mimicking monoclonal antibody, OPG2. Interestingly, the model proposes that pi-electrons in the new motif may substitute for the carboxylate group present in all other RGD-types of ligands. Although modeling linear peptides is subjective, the pi-bonding model provides intriguing possibilities for medicinal chemistry after appropriate confirmatory studies. (C) 1999 Academic Press.
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关键词
molecular modeling,amino acid,combinatorial chemistry,antibody,monoclonal antibody,integrin,cell adhesion,molecular recognition,domain,peptide,cell adhesion molecule,ligand,ligand binding,crystal structure,receptor
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