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Differentiation of α-COOH from γ-COOH in glutamic acid by N-phosphorylation

机译:谷氨酸中α-COOH与γ-COOH的N-磷酸化反应

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摘要

The biomimic reactions of N-phosphoryl amino acids are very important in the study of many biochemical processes. It was fond that the α-COOH group, and not the γ-COOH, was involved in the ester exchange on phosphorus experimentally. The reactions, had been proposed to be related to intramolecular penta-coordinate phosphoric-carboxylic mixed anhydrides. N-Dimethylphosphoryl glutamic acid (DMP-Glu) was selected as model compound to study the reactivity difference between the α-COOH and γ-COOH group. From MDO calculations, the energy of the penta-coordinate phosphoric intermediates containing five-membered ring from α-COOH was 40.8 kJ/mol lower than that of the seven-membered one from γ-COOH. This result was in agreement with those from HF/6-31G~(**) and B3LYP/6-31G~(**) calculations. Theoretical three-dimensional potential energy surface of forming the intermediates predicted that the transition states 4 and 5 involving α-COOH or γ-COOH group had energy barriers of △E = 196.1 and 216.9 kJ/mol, respectively. So the α-COOH could be differentiated from γ-COOH intramolecularly in glutamic acid by N-phosphorylation.
机译:在许多生化过程的研究中,N-磷酰基氨基酸的仿生反应非常重要。实验发现,α-COOH基团而不是γ-COOH参与了磷的酯交换。已经提出该反应与分子内五配位的磷酸-羧酸混合酸酐有关。选择N-二甲基磷酰基谷氨酸(DMP-Glu)作为模型化合物,以研究α-COOH和γ-COOH基团之间的反应性差异。通过MDO计算,包含来自α-COOH的五元环的五配位磷酸中间体的能量比来自γ-COOH的七元环的磷酸中间物的能量低40.8 kJ / mol。该结果与HF / 6-31G〜(**)和B3LYP / 6-31G〜(**)的计算结果一致。形成中间体的理论三维势能面预测,涉及α-COOH或γ-COOH基团的过渡态4和5的能垒分别为△E = 196.1和216.9 kJ / mol。因此,通过N-磷酸化可以将谷氨酸中的α-COOH与γ-COOH分子内区分开。

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