DFT-SCRF Calculations of Nitrogen Isotopic Reduced Partition Function Ratios for Amino Acids in Aqueous Solution at pH 7.4.

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL
The Journal of Physical Chemistry A Pub Date : 2024-12-05 Epub Date: 2024-11-20 DOI:10.1021/acs.jpca.4c04487
Satoshi Yanase, Takao Oi, Yoshikazu Kikawada
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Abstract

Using the self-consistent reaction field (SCRF) method, the nitrogen isotopic reduction partition function ratio (RPFR), a fundamental physical quantity for theoretical consideration of equilibrium isotope effects, was evaluated by density functional theory (DFT) for 20 proteinogenic and two related amino acids under physiological conditions at pH 7.4. At this pH value, all amino acids were of the zwitterion-type form with α-NH3+ and α-COO- groups, regardless of the net charge of -1 (monoanion), 0 (zwitterion), or +1 (monocation). The largest RPFR value by far was for proline (Pro). This is due to the fact that the nitrogen atom of Pro has two C-N bonds and two N-H bonds, whereas the α-nitrogen atoms of other amino acids form one C-N bond and three N-H bonds. There was a clear correlation between the RPFR value of α-nitrogen and the distance of the N-H covalent bond of the hydrogen atom involved in the formation of the intramolecular hydrogen bond (HB); the stronger the intramolecular HB, the lower the RPFR value of α-nitrogen. It was suggested that equilibrium isotope effects were partially responsible for the nitrogen isotope fractionation in the enzymatic glutamic acid/aspartic acid transamination and in ammonia assimilation during the formation of glutamine from glutamic acid.

pH 值为 7.4 的水溶液中氨基酸的氮同位素还原分区函数比的 DFT-SCRF 计算。
利用自洽反应场(SCRF)方法,通过密度泛函理论(DFT)评估了 20 种蛋白源氨基酸和两种相关氨基酸在 pH 值为 7.4 的生理条件下的氮同位素还原分配函数比(RPFR),这是理论上考虑平衡同位素效应的基本物理量。在这一 pH 值下,所有氨基酸都是带有 α-NH3+ 和 α-COO- 基团的齐聚物形式,无论其净电荷是 -1 (单阴离子)、0 (齐聚物)还是 +1 (单配位)。到目前为止,脯氨酸(Pro)的 RPFR 值最大。这是由于脯氨酸的氮原子上有两个 C-N 键和两个 N-H 键,而其他氨基酸的 α-氮原子上只有一个 C-N 键和三个 N-H 键。α-氮的 RPFR 值与参与形成分子内氢键(HB)的氢原子的 N-H 共价键的距离有明显的相关性;分子内氢键越强,α-氮的 RPFR 值越低。有研究认为,平衡同位素效应是谷氨酸/天冬氨酸酶促转氨作用以及谷氨酸形成谷氨酰胺过程中氨同化过程中氮同位素分馏的部分原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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