Characterize dynamic conformational space of human CCR5 extracellular domain by molecular modeling and molecular dynamics simulation


Autoria(s): Liu, SQ; Shi, XF; Liu, CQ; Sun, ZR
Data(s)

2004

Resumo

The chemokine receptor CCR5 is the receptor for several chemokines and major coreceptor for R5 human immunodeficiency virus type-1 strains entry into cell. Three-dimensional models of CCR5 were built by using homology modeling approach and 1 ns molecular dynamics (MD) simulation, because studies of site-directed mutagenesis and chimeric receptors have indicated that the N-terminus (Nt) and extracellular loops (ECLs) of CCR5 are important for ligands binding and viral fusion and entry, special attention was focused on disulfide bond function, conformational flexibility, hydrogen bonding, electrostatic interactions, and solvent-accessible surface area of Nt and ECLs of this protein part. We found that the extracellular segments of CCR5 formed a well-packet globular domain with complex interactions occurred between them in a majority of time of MID simulation, but Nt region could protrude from this domain sometimes. The disulfide bond Cys20-Cys269 is essential in controlling specific orientation of Nt region and maintaining conformational integrity of extracellular domain. RMS comparison analysis between conformers revealed the ECL1 of CCR5 stays relative rigid, whereas the ECL2 and Nt are rather flexible. Solvent-accessible surface area calculations indicated that the charged residues within Nt and ECL2 are often exposed to solvent. Integrating these results with available experimental data, a two-step gp120-CCR5 binding mechanism was proposed. The dynamic interaction of CCR5 extracellular domain with gp120 was emphasized. (C) 2004 Elsevier B.V. All rights reserved.

Identificador

http://159.226.149.42/handle/152453/5321

http://www.irgrid.ac.cn/handle/1471x/50998

Direitos

Characterize dynamic conformational space of human CCR5 extracellular domain by molecular modeling and molecular dynamics simulation

Fonte

Liu, SQ; Shi, XF; Liu, CQ; Sun, ZR.Characterize dynamic conformational space of human CCR5 extracellular domain by molecular modeling and molecular dynamics simulation,673,133-143,(SCI-E ):

Palavras-Chave #Chemistry, Physical
Tipo

期刊论文