Title
Normal-Mode Analysis of the Glycine Alpha1 Receptor by Three Separate Methods.
Abstract
Predicting collective dynamics and structural changes in biological macromolecules is pivotal toward a better understanding of many biological processes. Limitations due to large system sizes and inaccessible time scales have prompted the development of alternative techniques for the calculation of such motions. In this work, we present the results of a normal-mode analysis technique based on molecular mechanics that enables the calculation of accurate force-field based vibrations of extremely large molecules and compare it with two elastic network approximate models. When applied to the glycine alpha1 receptor, all three normal-mode analysis algorithms demonstrate an "iris-like" gating motion. Such gating motions have implications for understanding the effects of anesthetic and other ligand binding sites and for the means of transducing agonist binding into ion channel opening. Unlike the more approximate methods, molecular mechanics based analyses can also reveal approximate vibrational frequencies. Such analyses may someday allow the use of protein dynamics elucidated via normal-mode calculations as additional endpoints for future drug design.
Year
DOI
Venue
2007
10.1021/ci600566j
JOURNAL OF CHEMICAL INFORMATION AND MODELING
Keywords
Field
DocType
normal mode analysis,biophysics
Molecular mechanics,Gating,Ligand (biochemistry),Molecule,Protein dynamics,Chemistry,Bioinformatics,Normal mode,Ion channel,Vibration
Journal
Volume
Issue
ISSN
47
4
1549-9596
Citations 
PageRank 
References 
2
0.46
3
Authors
3
Name
Order
Citations
PageRank
Edward J Bertaccini142.29
James R Trudell242.29
Erik Lindahl341.62