Chou K C, Némethy G, Scheraga H A
J Mol Biol. 1983 Aug 5;168(2):389-407. doi: 10.1016/s0022-2836(83)80025-4.
Conformational energy computations have been carried out for parallel and antiparallel beta-sheets composed of poly-L-Val and poly-L-Ile peptide chains, each consisting of four and of six residues, respectively, with CH3CO- and-NHCH3 end groups. The beta-sheets considered contained three and five equivalent chains, respectively. All computed minimum-energy beta-sheets were found to have a large right-handed twist of a magnitude that corresponds to the mean twist of beta-sheets observed in globular proteins. The twist has the same sign but is much larger than in beta-sheets of poly-L-Ala, because of intra- and interchain interactions between the bulky beta-branched side-chains. While the right-handed twist is a result of intrachain interactions between side-chains in the case of poly-L-Val, these interactions would favor a left-handed twist in poly-L-Ile, and the right-handed twist in the latter is a result of interchain interactions. Parallel beta-sheets are more stable than antiparallel sheets for both poly-L-Val and poly-L-Ile, in contrast to poly-L-Ala. This result agrees with observations on the preferred orientation of the chains in oligopeptides that form beta-structures. It also explains the observed high relative frequencies of occurrence of Val and Ile residues in parallel beta-sheets, as compared with antiparallel sheets, in globular proteins.
已对由聚-L-缬氨酸和聚-L-异亮氨酸肽链组成的平行和反平行β-折叠进行了构象能量计算,每条肽链分别由四个和六个残基组成,并带有CH3CO-和-NHCH3端基。所考虑的β-折叠分别包含三条和五条等效链。所有计算得到的最低能量β-折叠都具有较大的右手扭转,其大小与在球状蛋白质中观察到的β-折叠的平均扭转相对应。由于庞大的β-分支侧链之间的链内和链间相互作用,这种扭转具有相同的符号,但比聚-L-丙氨酸的β-折叠中的扭转要大得多。虽然在聚-L-缬氨酸的情况下,右手扭转是侧链之间链内相互作用的结果,但这些相互作用在聚-L-异亮氨酸中会有利于左手扭转,而后者中的右手扭转是链间相互作用的结果。与聚-L-丙氨酸相反,对于聚-L-缬氨酸和聚-L-异亮氨酸,平行β-折叠比反平行β-折叠更稳定。这一结果与对形成β-结构的寡肽中链的优选取向的观察结果一致。它还解释了在球状蛋白质中,与反平行β-折叠相比,平行β-折叠中缬氨酸和异亮氨酸残基出现的相对频率较高的现象。