Secondary structure of neutrophil-activating peptide-2 determined by 1H-nuclear magnetic resonance spectroscopy

Author:

Mayo K H1,Yang Y1,Daly T J2,Barry J K2,La Rosa G J2

Affiliation:

1. Department of Biochemistry, Biomedical Engineering Center, University of Minnesota, 420 Delaware Street, S.E., Minneapolis, MN 55455, U.S.A.

2. Repligen Corporation, One Kendall Square, Building 700, Cambridge, MA 02139, U.S.A.

Abstract

Neutrophil-activating protein-2 (NAP-2) is a 72 residue protein demonstrating a range of proinflammatory activities. The solution structure of monomeric NAP-2 has been investigated by two-dimensional 1H-n.m.r. spectroscopy. Sequence-specific proton resonance assignments have been made and secondary structural elements have been identified on the basis of nuclear Overhauser data, coupling constants and amide hydrogen/deuteron exchange. The NAP-2 monomer consists of a triple-stranded anti-parallel beta-sheet arranged in a ‘Greek key’ and a C-terminal helix (residues 59-70) and is very similar to that found in the n.m.r. solution conformation of dimeric interleukin-8 and the crystal structure of tetrameric bovine platelet factor-4. Results are discussed in terms of heparin binding and neutrophil-activation properties of NAP-2.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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