Goodman J L, Pagel M D, Stone M J
Department of Chemistry, Indiana University, Bloomington, IN 47405-0001, USA.
J Mol Biol. 2000 Jan 28;295(4):963-78. doi: 10.1006/jmbi.1999.3419.
The amplitude of protein backbone NH group motions on a time-scale faster than molecular tumbling may be determined by analysis of (15)N NMR relaxation data according to the Lipari-Szabo model free formalism. An internet-accessible database has been compiled containing 1855 order parameters from 20 independent NMR relaxation studies on proteins whose three-dimensional structures are known. A series of statistical analyses has been performed to identify relationships between the structural features and backbone dynamics of these proteins. Comparison of average order parameters for different amino acid types indicates that amino acids with small side-chains tend to have greater backbone flexibility than those with large side-chains. In addition, the motions of a given NH group are also related to the sizes of the neighboring amino acids in the primary sequence. The secondary structural environment appears to influence backbone dynamics relatively weakly, with only subtle differences between the order parameter distributions of loop structures and regular hydrogen bonded secondary structure elements. However, NH groups near helix termini are more mobile on average than those in the central regions of helices. Tertiary structure influences are also relatively weak but in the expected direction, with more exposed residues being more flexible on average than residues that are relatively inaccessible to solvent.
根据Lipari-Szabo模型自由形式主义,通过对(15)N NMR弛豫数据的分析,可以确定蛋白质主链NH基团在比分子翻滚更快的时间尺度上的运动幅度。现已编制了一个可通过互联网访问的数据库,其中包含来自对已知三维结构的蛋白质进行的20项独立NMR弛豫研究的1855个序参数。已经进行了一系列统计分析,以确定这些蛋白质的结构特征与主链动力学之间的关系。对不同氨基酸类型的平均序参数进行比较表明,侧链较小的氨基酸往往比侧链较大的氨基酸具有更大的主链灵活性。此外,给定NH基团的运动也与一级序列中相邻氨基酸的大小有关。二级结构环境对主链动力学的影响相对较弱,环结构和规则氢键二级结构元件的序参数分布之间只有细微差异。然而,螺旋末端附近的NH基团平均比螺旋中心区域的NH基团更具流动性。三级结构的影响也相对较弱,但符合预期方向,平均而言,暴露程度较高的残基比相对难以接触到溶剂的残基更具灵活性。