Benedetti E, Morelli G, Némethy G, Scheraga H A
Int J Pept Protein Res. 1983 Jul;22(1):1-15. doi: 10.1111/j.1399-3011.1983.tb02062.x.
The distributions of side-chain conformations in 258 crystal structures of oligopeptides have been analyzed. The sample contains 321 residues having side chains that extend beyond the C beta atom. Statistically observed preferences of side-chain dihedral angles are summarized and correlated with stereochemical and energetic constraints. The distributions are compared with observed distributions in proteins of known X-ray structures and with computed minimum-energy conformations of amino acid derivatives. The distributions are similar in all three sets of data, and they appear to be governed primarily by intraresidue interactions. In side chains with no beta-branching, the most important interactions that determine chi 1 are those between the C gamma H2 group and atoms of the neighboring peptide groups. As a result, the g- conformation (chi 1 congruent to -60 degrees) occurs most frequently for rotation around the C alpha-C beta bond in oligopeptides, followed by the t conformation (chi 1 congruent to 180 degrees), while the g+ conformation (chi 1 congruent to 60 degrees) is least favored. In residues with beta-branching, steric repulsions between the C gamma H2 or C gamma H3 groups and backbone atoms govern the distribution of chi 1. The extended (t) conformation is highly favored for rotation around the C beta-C gamma and C gamma-C delta bonds in unbranched side chains, because the t conformer has a lower energy than the g+ and g- conformers in hydrocarbon chains. This study of the observed side-chain conformations has led to a refinement of one of the energy parameters used in empirical conformational energy computations.
对258个寡肽晶体结构中的侧链构象分布进行了分析。该样本包含321个侧链延伸至Cβ原子之外的残基。总结了统计观察到的侧链二面角偏好,并将其与立体化学和能量限制相关联。将这些分布与已知X射线结构的蛋白质中的观察分布以及氨基酸衍生物的计算最低能量构象进行了比较。这三组数据中的分布相似,并且它们似乎主要受残基内相互作用的支配。在没有β分支的侧链中,决定χ1的最重要相互作用是CγH2基团与相邻肽基团的原子之间的相互作用。因此,在寡肽中围绕Cα-Cβ键旋转时,g-构象(χ1约为-60°)出现得最为频繁,其次是t构象(χ1约为180°),而g+构象(χ1约为60°)最不受青睐。在具有β分支的残基中,CγH2或CγH3基团与主链原子之间的空间排斥作用决定了χ1的分布。在无分支侧链中,围绕Cβ-Cγ和Cγ-Cδ键旋转时,伸展(t)构象非常有利,因为在烃链中t构象异构体的能量低于g+和g-构象异构体。对观察到的侧链构象的这项研究导致了对经验构象能量计算中使用的一个能量参数的改进。