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Experimental and Semi-empirical computations of the vibrational spectra of Methionine, Homocysteine and Cysteine

机译:蛋氨酸,同型半胱氨酸和半胱氨酸振动光谱的实验和半经验计算

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Homocysteine is an intermediate non-essential amino acid produced during the metabolism of methionine to cysteine. At elevated levels in plasma, homocysteine is a risk factor for Alzheimer’s and cardiovascular diseases. The FTIR and FT Raman spectra of Methionine, Homocysteine and Cysteine molecules were recorded in the regions 4000-450 and 4000-100cm- 1 respectively. The optimized geometry, wave number and other properties were studied using MNDO, AM1 and PM3 semi-empirical methods. A complete vibrational assignment aided by the theoretical harmonic wave number analysis was proposed. The calculated harmonic vibrational frequencies were compared with experimental FTIR and FT Raman spectra. Based on the comparison between calculated and experimental results and the comparison with related molecules, assignments of fundamental vibrational modes were made. The X-ray geometry and experimental frequencies were compared with the results of theoretical calculations.
机译:同型半胱氨酸是蛋氨酸向半胱氨酸代谢过程中产生的中间非必需氨基酸。血浆中高半胱氨酸水平是阿尔茨海默氏症和心血管疾病的危险因素。分别在4000-450和4000-100cm-1区域记录了蛋氨酸,同型半胱氨酸和半胱氨酸分子的FTIR和FT拉曼光谱。使用MNDO,AM1和PM3半经验方法研究了优化的几何形状,波数和其他特性。提出了基于理论谐波数分析的完整振动分配。将计算出的谐波振动频率与实验FTIR和FT拉曼光谱进行比较。根据计算结果与实验结果的比较以及与相关分子的比较,确定了基本振动模态。将X射线的几何形状和实验频率与理论计算结果进行了比较。

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