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首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Ramachandran backbone potential energy surfaces of aspartic acid and aspartate residues: implications on allosteric sites in receptor–ligand complexations
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Ramachandran backbone potential energy surfaces of aspartic acid and aspartate residues: implications on allosteric sites in receptor–ligand complexations

机译:天门冬氨酸和天门冬氨酸残基的Ramachandran骨干势能面:对受体-配体复合物中变构位点的影响

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摘要

Ramachandran backbone potential energy surfaces (PES) were generated for N-acetyl-L-aspartic acid-N'-methylamide and N-acetyl-L-aspartate-N'-methylamide. Relatively few minima were observed from the Ramachandran PES of the aspartate ion while many existed for both endo and exo forms of the aspartic acid residue. By comparing the relative stabilization energies as well as the vertical and adiabetic proton affinities of the two forms the aspartic acid residue, it was previously determined that aspartic acid may rather change its backbone conformation before deprotonation into the aspartate ion. Taken together, many stable conformers may exist for both endo and exo forms of aspartic acid but when deprotonated they lead to the same aspartate ion which has remarkably few conformations. This feature may have significant biological implications, and a receptor–ligand complexation model is proposed where aspartate and aspartic acid could represent, respectively, resting and active states of a putative binding site in a hypothetical protein. More importantly, however, the aspartyl residues may represent important allosteric sites for regulatory ions, directly modulating the specificity of ligand docking in a receptor protein and affecting downstream biological mechanisms.
机译:产生了N-乙酰基-L-天冬氨酸-N'-甲基酰胺和N-乙酰基-L-天冬氨酸-N'-甲基酰胺的Ramachandran主链势能面(PES)。从天冬氨酸离子的Ramachandran PES中观察到的极小值相对,而对于天冬氨酸残基的内切形式和外切形式都存在许多极小值。通过比较相对稳定能以及两种形式的天冬氨酸残基的垂直和糖尿病质子亲和力,先前确定天冬氨酸宁可在去质子化为天冬氨酸离子之前改变其骨架构象。综上所述,天冬氨酸的内切形式和外切形式都可能存在许多稳定的构象异构体,但是当去质子化时,它们会产生相同的天冬氨酸离子,其构象极少。该特征可能具有重要的生物学意义,并提出了一种受体-配体络合模型,其中天冬氨酸和天冬氨酸可以分别代表假想蛋白质中假定的结合位点的静止状态和活性状态。然而,更重要的是,天冬氨酰残基可能代表重要的变构位点,用于调节离子,直接调节受体蛋白中配体对接的特异性并影响下游生物学机制。

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