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Boltzmann-type distribution of side-chain conformation in proteins

机译:蛋白质侧链构象的玻耳兹曼型分布

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摘要

We analyze packing imperfections in globular proteins as reflected in deviations of torsion angles from the equilibrium values for the isolated side chains. The distribution of conformations of methionine and lysine residues in a database of high-resolution structures is compared with energies of model compounds calculated with high-level quantum-mechanics. The distribution of the C–C and C–S torsion angles (χ3) correlates well with the Boltzmann factor of the torsion energy, exp(−βE) of the model compounds C2H5—C2H5 and C2H5—S—CH3. An exponential relation was again found between the relative occurrence of g+, g− and t conformations for Cα—Cβ bonds in long side chains and the energy differences of rotamers of α-amino n-butyric acid, when dependence on backbone conformation was taken into account. The distribution of all 27 rotamers of methionine was correlated with the energy differences between the model’s rotamers, corrected for clashes with nearby residues, the correlation being good for a set with backbone in the β-conformation, but less clear for backbone α-conformation. In all correlations, the value of the coefficient β corresponds to a temperature of circa 300 K. These results can be interpreted with a model that considers the structure of a folded protein as resulting from packing imperfectly complementary parts, with a requirement of an overall low energy. Compromises are required to optimize the fit of nonbonded contacts with surrounding groups, and side chains assume conformations away from the energy minimum. An exponential distribution is a most probable distribution, and this can be established easily under conditions other than thermal equilibrium.
机译:我们分析了球形蛋白质中的堆积缺陷,反映为扭转角与孤立侧链平衡值的偏差。将高分辨率结构数据库中甲硫氨酸和赖氨酸残基的构象分布与通过高级量子力学计算的模型化合物的能量进行比较。 C–C和C–S扭转角的分布(χ3)与模型化合物C2H5–C2H5和C2H5–S–CH3的扭转能量的玻尔兹曼因子exp(-βE)很好相关。再次发现长侧链中C α -C β键的g +,g-和t构象的相对出现与C的旋转异构体的能量差之间存在指数关系当考虑到对骨架构象的依赖性时,考虑了α-氨基正丁酸。蛋氨酸的所有27个旋转异构体的分布与模型旋转异构体之间的能量差异相关联,已针对与附近残基的冲突进行了校正,该相关性对于一组具有β构象的骨架的相关性较好,但对于α构象的骨架则不太清楚。在所有相关中,系数β的值对应于大约300 K的温度。这些结果可以用一个模型来解释,该模型考虑了由于包装不完全互补的部分而产生的折叠蛋白的结构,总体上要求较低能源。需要进行折衷以优化非粘结触点与周围基团的配合,并且侧链假定构型远离最小能量。指数分布是最可能的分布,可以在除热平衡以外的条件下轻松建立。

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