1979BiochemistryRequires access

Nuclear magnetic resonance studies on the structure of the tetrapeptide tuftsin L-threonyl-L-lysyl-L-prolyl-L-arginine, and its pentapeptide analog L-threonyl-L-lysyl-L-prolyl-L-prolyl-L-arginine

Michael Blumenstein, Porter Layne, Victor A. Najjar

Open publisher page 36 citations

Abstract

Nuclear magnetic resonance spectroscopy has been used to investigate the solution conformation of tuftsin, threonyllysylprolylarginine, as well as a pentapeptide inhibitor of tuftsin, threonyllysylprolylprolylarginine. Both proton and carbon-13 studies were performed. In water, neither peptide gives evidence of a preferred conformation. In dimethyl-d6 sulfoxide, tuftsin appears to prefer a particular conformation, but the inhibitor does not. The conformation of tuftsin is one in which the amide NH proton of arginine is solvent shielded. The conformation does not, however, appear to be such that a normal 4 leads to 1 beta turn exists.

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Nuclear magnetic resonance spectroscopy has been used to investigate the solution conformation of tuftsin, threonyllysylprolylarginine, as well as a pentapeptide inhibitor of tuftsin, threonyllysylprolylprolylarginine. Both proton and carbon-13 studies were performed. In water, neither peptide gives evidence of a preferred conformation. In dimethyl-d6 sulfoxide, tuftsin appears to prefer a particular conformation, but the inhibitor does not. The conformation of tuftsin is one in which the amide NH proton of arginine is solvent shielded. The conformation does not, however, appear to be such that a normal 4 leads to 1 beta turn exists.

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Available abstract

Nuclear magnetic resonance spectroscopy has been used to investigate the solution conformation of tuftsin, threonyllysylprolylarginine, as well as a pentapeptide inhibitor of tuftsin, threonyllysylprolylprolylarginine. Both proton and carbon-13 studies were performed. In water, neither peptide gives evidence of a preferred conformation. In dimethyl-d6 sulfoxide, tuftsin appears to prefer a particular conformation, but the inhibitor does not. The conformation of tuftsin is one in which the amide NH proton of arginine is solvent shielded. The conformation does not, however, appear to be such that a normal 4 leads to 1 beta turn exists.

Key concepts: Tuftsin, Tetrapeptide, Pentapeptide repeat, Chemistry, Oligopeptide, Stereochemistry, Peptide, Amide

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Nuclear magnetic resonance studies on the structure of the tetrapeptide tuftsin L-threonyl-L-lysyl-L-prolyl-L-arginine, and its pentapeptide analog L-threonyl-L-lysyl-L-prolyl-L-prolyl-L-arginine — Research Paper | ScholarLens