Backbone dynamics of the human CC chemokine eotaxin: Fast motions, slow motions, and implications for receptor binding

Authors
Crump, MPSpyracopoulos, LLavigne, PKim, KSClark-Lewis, ISykes, BD
Issue Date
1999-10
Publisher
CAMBRIDGE UNIV PRESS
Citation
PROTEIN SCIENCE, v.8, no.10, pp.2041 - 2054
Abstract
Eotaxin is a member of the chemokine family of about 40 proteins that induce cell migration. Eotaxin binds the CC chemokine receptor CCR3 that is highly expressed by eosinophils, and it is considered important in the pathology of chronic respiratory disorders such as asthma. The high resolution structure of eotaxin is known. The 74 amino acid protein has two disulfide bridges and shows a typical chemokine fold comprised of a core of three antiparallel beta-strands and an overlying alpha-helix. In this paper, we report the backbone dynamics of eotaxin determined through N-15-T-1, T-2, and {H-1}-N-15 nuclear Overhauser effect heteronuclear multidimensional NMR experiments. This is the first extensive study of the dynamics of a chemokine derived from 600, 500, and 300 MHz NMR field strengths. From the T-1, T-2, and NOE relaxation data, parameters that describe the internal motions of eotaxin were derived using the Lipari-Szabo model free analysis. The most ordered regions of the protein correspond to the known secondary structure elements. However, surrounding the core, the regions known to be functionally important in chemokines show a range of motions on varying timescales. These include extensive subnanosecond to picosecond motions in the N-terminus, C-terminus, and the N-loop succeeding the disulfides. Analysis of rotational diffusion anisotropy of eotaxin and chemical exchange terms at multiple fields also allowed the confident identification of slow conformational exchange through the "30s" loop, disulfides, and adjacent residues. In addition, we show that these motions may be attenuated in the dimeric form of a synthetic eotaxin. The structure and dynamical basis for eotaxin receptor binding is discussed in light of the dynamics data.
Keywords
N-15 NMR RELAXATION; ANISOTROPIC ROTATIONAL DIFFUSION; EOSINOPHIL CHEMOATTRACTANT; CONFORMATIONAL ENTROPY; INTERLEUKIN-8; SPECTROSCOPY; PROTEINS; DOMAIN; INFLAMMATION; ACTIVATION; backbone N-15 dynamics; CC chemokine; conformational exchange; eotaxin; monomer-dimer equilibrium
ISSN
0961-8368
URI
https://pubs.kist.re.kr/handle/201004/141887
DOI
10.1110/ps.8.10.2041
Appears in Collections:
KIST Article > Others
Files in This Item:
There are no files associated with this item.
Export
RIS (EndNote)
XLS (Excel)
XML

qrcode

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE