Global Dynamics of Proteins: Bridging Between Structure and Function

被引:483
作者
Bahar, Ivet [1 ]
Lezon, Timothy R. [1 ]
Yang, Lee-Wei [1 ]
Eyal, Eran [1 ]
机构
[1] Univ Pittsburgh, Sch Med, Dept Computat Biol, Pittsburgh, PA 15213 USA
来源
ANNUAL REVIEW OF BIOPHYSICS, VOL 39 | 2010年 / 39卷
关键词
elastic network models; normal modes; principal component analysis; collective motions; allosteric changes in conformation; closed/open conformations; NORMAL-MODE ANALYSIS; ELASTIC NETWORK MODELS; PRINCIPAL COMPONENT ANALYSIS; FREQUENCY NORMAL-MODES; ALLOSTERIC TRANSITIONS; CONFORMATIONAL-CHANGE; EQUILIBRIUM DYNAMICS; INTRINSIC DYNAMICS; SINGLE-PARAMETER; MOTIONS;
D O I
10.1146/annurev.biophys.093008.131258
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Biomolecular systems possess unique, structure-encoded dynamic properties that underlie their biological functions. Recent studies indicate that these dynamic properties are determined to a large extent by the topology of native contacts. In recent years, elastic network models used in conjunction with normal mode analyses have proven to be useful for elucidating the collective dynamics intrinsically accessible under native state conditions, including in particular the global modes of motions that are robustly defined by the overall architecture. With increasing availability of structural data for well-studied proteins in different forms (liganded, complexed, or free), there is increasing evidence in support of the correspondence between functional changes in structures observed in experiments and the global motions predicted by these coarse-grained analyses. These observed correlations suggest that computational methods may be advantageously employed for assessing functional changes in structure and allosteric mechanisms intrinsically favored by the native fold.
引用
收藏
页码:23 / 42
页数:20
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