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Density Functional Studies on Secondary Amides: Role of Steric Factors in Cis/Trans Isomerization

机译:仲酰胺的密度泛函研究:立体因素在顺式/反式异构化中的作用

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摘要

Cis/trans isomerization of amide bonds is a key step in a wide range of biological and synthetic processes. Occurring through C-N amide bond rotation, it also coincides with the activation of amides in enzymatic hydrolysis. In recently described QM studies of cis/trans isomerization in secondary amides using density functional methods, we highlighted that a peptidic prototype, such as glycylglycine methyl ester, can suitably represent the isomerization and complexities arising out of a larger molecular backbone, and can serve as the primary scaffold for model structures with different substitution patterns in order to assess and compare the steric effect of the substitution patterns. Here, we describe our theoretical assessment of such steric effects using tert-butyl as a representative bulky substitution. We analyze the geometries and relative stabilities of both trans and cis isomers, and effects on the cis/trans isomerization barrier. We also use the additivity principle to calculate absolute steric effects with a gradual increase in bulk. The study establishes that bulky substitutions significantly destabilize cis isomers and also increases the isomerization barrier, thereby synergistically hindering the cis/trans isomerization of secondary amides. These results provide a basis for the rationalization of kinetic and thermodynamic properties of peptides with potential applications in synthetic and medicinal chemistry.
机译:酰胺键的顺/反异构是许多生物学和合成过程中的关键步骤。通过C-N酰胺键的旋转发生,它也与酶水解中酰胺的活化相吻合。在最近使用密度泛函方法对仲酰胺中的顺式/反式异构化进行的QM研究中,我们强调指出,肽原型(例如甘氨酰甘氨酸甲酯)可以适当地代表较大分子骨架产生的异构化和复杂性,并且可以用作用于评估具有不同替代模式的模型结构的主要支架,以评估和比较替代模式的空间效应。在这里,我们描述使用叔丁基作为代表性的大体积取代基对这种空间效应的理论评估。我们分析了反式和顺式异构体的几何形状和相对稳定性,以及对顺式/反式异构化屏障的影响。我们还使用加性原理来计算体积逐渐增加的绝对空间效应。该研究表明,大量取代会极大地破坏顺式异构体的稳定性,并且还会增加异构化障碍,从而协同阻碍仲酰胺的顺式/反式异构化。这些结果为合理化肽的动力学和热力学性质提供了基础,并有望在合成和药物化学中得到应用。

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