REACH Coarse-Grained Normal Mode Analysis of Protein Dimer Interaction Dynamics

被引:13
作者
Moritsugu, Kei [1 ,2 ]
Kurkal-Siebert, Vandana [3 ]
Smith, Jeremy C. [1 ]
机构
[1] Univ Tennessee, Ctr Biophys Mol, Oak Ridge Natl Lab, Oak Ridge, TN USA
[2] RIKEN, Res Program Computat Sci, Wako, Saitama, Japan
[3] BASF SE, Mol Modeling GKP M, Ludwigshafen, Germany
关键词
BIOMOLECULAR SIMULATION; VIBRATIONAL ENTROPY; SINGLE-PARAMETER; MOTIONS; RECOGNITION; ASSOCIATION; BINDING; FLUCTUATIONS; FLEXIBILITY; PREDICTION;
D O I
10.1016/j.bpj.2009.05.015
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The REACH (realistic extension algorithm via covariance Hessian) coarse-grained biomolecular simulation method is a self-consistent multiscale approach directly mapping atomistic molecular dynamics simulation results onto a residue-scale model. Here, REACH is applied to calculate the dynamics of protein-protein interactions. The intra- and intermolecular fluctuations and the intermolecular vibrational densities of states derived from atomistic molecular dynamics are well reproduced by the REACH normal modes. The phonon dispersion relations derived from the REACH lattice dynamics model of crystalline ribonuclease A are also in satisfactory agreement with the corresponding all-atom results. The REACH model demonstrates that increasing dimer interaction strength decreases the translational and rotational intermolecular vibrational amplitudes, while their vibrational frequencies are relatively unaffected. A comparative study of functionally interacting biological dimers with crystal dimers, which are formed artificially via crystallization, reveals a relation between their static structures and the interprotein dynamics: i.e., the consequence of the extensive interfaces of biological dinners is reduction of the intermonomer translational and rotational amplitudes, but not the frequencies.
引用
收藏
页码:1158 / 1167
页数:10
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