Quantum chemical study of molecular properties of small branched-chain amino acids in water

IF 3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Amino Acids Pub Date : 2025-01-19 DOI:10.1007/s00726-024-03437-y
Roman Boča, Žofia Rádiková, Juraj Štofko, Beata Vranovičová, Cyril Rajnák
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Abstract

Four aliphatic amino acids—α-aminobutyric acid (AABA), β-aminobutyric acid (BABA), α-aminoisobutyric acid (AAIBA) and β-aminoisobutyric acid (BAIBA) were investigated in water as a solvent by two quantum chemical methods. B3LYP hybrid version of DFT was used for geometry optimization and a full vibrational analysis of neutral molecules, their cations and anions in the canonical and zwitterionic forms (6 forms for each species). Ab initio DLPNO-CCSD(T) method was applied in the geometry pre-optimized by B3LYP. Calculated molecular descriptors involve dipole moment, quadrupole moment, dipole polarizability, energy of zero-point vibration and total entropic term which enter the standard Gibbs energy. In addition, a set of collective electronic and thermodynamic properties associated with redox process were evaluated: ionization energy, electron affinity, chemical hardness, molecular electronegativity, electrophilicity index, absolute oxidation and reduction potentials. A mutual comparison of these structural isomers including γ-aminobutyric acid (GABA) shows high degree of similarity in molecular descriptors. However, cluster analysis of 12 electro neutral, linear and branched amino acids with 2 – 6 carbon atoms discriminates them into five clusters. It is found that the electrophilicity index correlates with the absolute reduction potential along a straight line (24 items). The reduction potential for canonical structure varies between 1.21 V (glycine) and 1.45 V (AABA) whereas for the zwitterionic form it is visibly lower 0.52–1.11 V. The highest absolute reduction potential > 1.43 V is shown by α-amino acids: α-alanine, AABA (homoalanine) and AAIBA having 2-methyl or 2-ethyl functional group. The calculated absolute oxidation potential correlates with the adiabatic ionization energy and can be used as a criterion of the antioxidant capacity. According to thermodynamic data, the SPLET mechanism of the electron-proton coupled transfer is favored over the alternative SET-PT mechanism. This work contributes to the creation of a database of molecular properties of amino acids based on the same method and basis set.

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水中小支链氨基酸分子性质的量子化学研究
采用两种量子化学方法研究了4种脂肪族氨基酸- α-氨基丁酸(AABA)、β-氨基丁酸(BABA)、α-氨基异丁酸(AAIBA)和β-氨基异丁酸(BAIBA)在水中作为溶剂的性质。使用B3LYP杂化DFT进行几何优化,并对中性分子及其正阴离子和两性离子形式(每种6种形式)进行了完整的振动分析。采用从头算DLPNO-CCSD(T)方法对B3LYP预优化的几何图形进行求解。计算得到的分子描述符包括偶极矩、四极矩、偶极极化率、零点振动能和进入标准吉布斯能的总熵项。此外,还评估了一系列与氧化还原过程相关的电子和热力学性质:电离能、电子亲和性、化学硬度、分子电负性、亲电性指数、绝对氧化和还原电位。包括γ-氨基丁酸(GABA)在内的这些结构异构体的相互比较显示出分子描述符的高度相似性。然而,对12个2 - 6碳原子的电中性、线性和支链氨基酸进行聚类分析,将它们分为5个簇。发现亲电性指数与绝对还原电位呈直线关系(24项)。典型结构的还原电位在1.21 V(甘氨酸)和1.45 V (AABA)之间变化,而两性离子形式的还原电位明显低于0.52-1.11 V。具有2-甲基或2-乙基官能团的α-氨基酸α-丙氨酸、AABA(同丙氨酸)和AAIBA的绝对还原电位最高,为1.43 V。计算得到的绝对氧化电位与绝热电离能相关,可以作为抗氧化能力的判据。根据热力学数据,电子-质子耦合转移的SPLET机制优于其他的SET-PT机制。这项工作有助于建立基于相同方法和基集的氨基酸分子特性数据库。
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来源期刊
Amino Acids
Amino Acids 生物-生化与分子生物学
CiteScore
6.40
自引率
5.70%
发文量
99
审稿时长
2.2 months
期刊介绍: Amino Acids publishes contributions from all fields of amino acid and protein research: analysis, separation, synthesis, biosynthesis, cross linking amino acids, racemization/enantiomers, modification of amino acids as phosphorylation, methylation, acetylation, glycosylation and nonenzymatic glycosylation, new roles for amino acids in physiology and pathophysiology, biology, amino acid analogues and derivatives, polyamines, radiated amino acids, peptides, stable isotopes and isotopes of amino acids. Applications in medicine, food chemistry, nutrition, gastroenterology, nephrology, neurochemistry, pharmacology, excitatory amino acids are just some of the topics covered. Fields of interest include: Biochemistry, food chemistry, nutrition, neurology, psychiatry, pharmacology, nephrology, gastroenterology, microbiology
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