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首页> 外文期刊>Monatshefte fur Chemie >Influence of C-terminal residues on the structural and molecular properties of dipeptides: a theoretical study in a vacuum and implicit and explicit aqueous environments
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Influence of C-terminal residues on the structural and molecular properties of dipeptides: a theoretical study in a vacuum and implicit and explicit aqueous environments

机译:C末端残基对二肽的结构和分子性质的影响:在真空以及隐性和显性水性环境中的理论研究

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摘要

The role of C-terminal residues in influencing the structural and molecular properties of a set of six dipeptides was studied using the B3LYP/6-31++G(d,p) level of theory in a vacuum and implicit and explicit aqueous environment. The dipeptides were constructed by keeping pyrrolysine as a fixed component in the N-termi-nus whereas the component in the C-terminus was varied with six different combinations, viz. Val, Ile, Glu, Thr, Gln, and Lys. The C-terminal residues were chosen on the basis of the propensity of their side chain moieties to be in contact with a polar solvent like water. Frequency calculations on the fully optimized molecular geometries of the dipeptides confirmed them to be true minima. The HOMO/ LUMO energies as well as their energy gaps, rotational constants, dipole moments, and theoretically predicted vibrational spectra of all the dipeptides were thoroughly analyzed. The identity of the varying C-terminal residue affects the value of the φ dihedral, planarity of the peptide plane, and geometry around the α-carbon atoms of a given dipeptide. Solvation effects of the implicit aqueous environment are found to modify the gas-phase conformation of a dipeptide around the angle ψ and influence the number and types of intramolecular H-bonds occurring in a dipeptide structure. The influence of the explicit aqueous environment is evident on the geometrical parameters associated with the geometries of amide planes and vibrational spectra of the dipeptides.
机译:使用B3LYP / 6-31 ++ G(d,p)水平的理论在真空以及隐性和显性水性环境中研究了C末端残基在影响一组六个二肽的结构和分子性质中的作用。通过将吡咯赖氨酸作为固定成分保留在N末端中来构建二肽,而C末端的成分则通过六种不同的组合变化。 Val,Ile,Glu,Thr,Gln和Lys。基于C-末端残基的侧链部分与水等极性溶剂接触的倾向来选择。对二肽完全优化的分子几何结构进行的频率计算证实它们是最小的。彻底分析了所有二肽的HOMO / LUMO能量及其能隙,旋转常数,偶极矩和理论预测的振动光谱。可变的C末端残基的身份会影响φ二面体的值,肽平面的平面度以及给定二肽的α-碳原子周围的几何形状。发现隐性水环境的溶剂化作用改变了围绕角ψ的二肽的气相构象,并影响了在二肽结构中发生的分子内氢键的数量和类型。明显的水环境对与酰胺平面的几何形状和二肽振动光谱有关的几何参数有明显的影响。

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