Backbone motions of free and pheromone-bound major urinary protein I studied by molecular dynamics simulation
Jazyk angličtina Země Spojené státy americké Médium print-electronic
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
17465536
DOI
10.1021/jp0700940
Knihovny.cz E-zdroje
- MeSH
- feromony chemie MeSH
- konformace proteinů MeSH
- molekulární modely MeSH
- počítačová simulace MeSH
- pohyb těles MeSH
- proteiny chemie MeSH
- thiazoly chemie MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- 2-(sec-butyl)-4,5-dihydrothiazole MeSH Prohlížeč
- feromony MeSH
- major urinary proteins MeSH Prohlížeč
- proteiny MeSH
- thiazoly MeSH
Molecular motions of free and pheromone-bound mouse major urinary protein I, previously investigated by NMR relaxation, were simulated in 30 ns molecular dynamics (MD) runs. The backbone flexibility was described in terms of order parameters and correlation times, commonly used in the NMR relaxation analysis. Special attention was paid to the effect of conformational changes on the nanosecond time scale. Time-dependent order parameters were determined in order to separate motions occurring on different time scales. As an alternative approach, slow conformational changes were identified from the backbone torsion angle variances, and "conformationally filtered" order parameters were calculated for well-defined conformation states. A comparison of the data obtained for the free and pheromone-bound protein showed that some residues are more rigid in the bound form, but a larger portion of the protein becomes more flexible upon the pheromone binding. This finding is in general agreement with the NMR results. The higher flexibility observed on the fast (fs-ps) time scale was typically observed for the residues exhibiting higher conformational freedom on the ns time scale. An inspection of the hydrogen bond network provided a structural explanation for the flexibility differences between the free and pheromone-bound proteins in the simulations.
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