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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Ramachandran Revisited. DFT Energy Surfaces of Diastereomeric Trialanine Peptides in the Gas Phase and Aqueous Solution
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Ramachandran Revisited. DFT Energy Surfaces of Diastereomeric Trialanine Peptides in the Gas Phase and Aqueous Solution

机译:再访拉马尚德。非对映体三丙氨酸肽在气相和水溶液中的DFT能量表面

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We report DFT calculations at the B3LYP/D95(d,p) level on the gas phase, aqueous solvation and solvated energies as functions of the central psi and phi dihedral angles (in steps of 5 degrees each) of acetyl-(L)Ala-(L)Ala-(L)Ala-NH2 (3AL) and its diastereomer, acetyl-(L)Ala-(D)Ala-(L)Ala-NH2 (3AD). In addition to structures without internal H-bonds (C-5 interactions are neglected), many (95) structures containing internal H-bonds were completely optimized. The only minima for non-H-bonding structures in the gas phase correspond to extended beta-strands for both diastereomers. Some (but not all) structures with internal H-bonds are more stable than those without them. The energy landscapes for the solvated species show multiple minima for the non-H-bonding species and a single minimum for the H-bonding species (3(10)-helix), suggesting that the equilibrium conformational mixture in water be composed of the extended P-strand, polyproline II, 310-helix, and alpha-helix-like (with no H-bonds) conformations which are all within about 1 kca/mol of each other. Most H-bonding structures are destabilized relative to the non-H-bonding structures in aqueous solution, but some with large dipole moments are not. The large dipole moment of the alpha-helix-like conformation leads to its increased stability in water (vs the gas phase). Significant qualitative and quantitative differences are reported for the energy landscapes of the two diastereomers when one is compared with the mirror image of the other landscape (particularly in the beta-turn region), suggesting that the differences in the energies of the unfolded peptides need to be considered when considering the stabilities of folded peptides and proteins with single amino acid mutations.
机译:我们报告了气相,水溶剂化和溶剂化能量在B3LYP / D95(d,p)水平上的DFT计算值,它是乙酰基-(L)Ala的中心psi和phi二面角(每个5度的步长)的函数-(L)Ala-(L)Ala-NH2(3AL)及其非对映异构体,乙酰基-(L)Ala-(D)Ala-(L)Ala-NH2(3AD)。除了没有内部H键的结构(忽略C-5相互作用)以外,还完全优化了许多包含内部H键的(95)结构。气相中非H键结构的唯一最小值对应于两种非对映异构体的延伸β链。具有内部氢键的某些(但不是全部)结构比没有内部H键的结构更稳定。溶剂化物质的能级图显示非H键合物种的多个最小值,而H键合物种的单个最小值(3(10)-螺旋),表明水中的平衡构象混合物由扩展的组成。 P-链,聚脯氨酸II,310-螺旋和类似α-螺旋的构型(无H键),它们彼此之间的距离都在1 kca / mol之内。相对于水溶液中的非H键结构,大多数H键结构不稳定,但某些偶极矩较大的结构则不稳定。 α-螺旋状构象的大偶极矩导致其在水中的稳定性增加(相对于气相)。当将一个非对映异构体的能量分布图与另一个景观的镜像(特别是在β-转角区域)进行比较时,报告了两种非对映异构体的能量分布图存在明显的定性和定量差异,这表明未折叠肽的能量差异需要在考虑具有单个氨基酸突变的折叠肽和蛋白质的稳定性时应考虑到这一点。

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