Padmaja L, Ravikumar C, James C, Jayakumar V S, Hubert Joe I
Centre for Molecular and Biophysics Research, Department of Physics, Mar Ivanios College, Thiruvananthapuram 695 015, Kerala, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2008 Nov 1;71(1):252-62. doi: 10.1016/j.saa.2007.12.019. Epub 2007 Dec 28.
FT Raman and IR spectra of the crystallized biologically active molecule, L-alanylglycine (L-Ala-Gly) have been recorded and analyzed. The equilibrium geometry, bonding features and harmonic vibrational frequencies of L-Ala-Gly have been investigated with the help of B3LYP density functional theory (DFT) method. The calculated molecular geometry has been compared with the experimental data. The assignments of the vibrational spectra have been carried out with the help of normal coordinate analysis (NCA) following the scaled quantum mechanical force field methodology (SQMFF). The optimized geometry shows the non-planarity of the peptide group of the molecule. Potential energy surface (PES) scan studies has also been carried out by ab initio calculations with B3LYP/6-311+G** basis set. The red shifting of NH3+ stretching wavenumber indicates the formation of N-H...O hydrogen bonding. The change in electron density (ED) in the sigma* antibonding orbitals and E2 energies have been calculated by natural bond orbital analysis (NBO) using DFT method. The NBO analysis confirms the occurrence of strong intermolecular hydrogen bonding in the molecule.
已记录并分析了结晶态生物活性分子L-丙氨酰甘氨酸(L-Ala-Gly)的傅里叶变换拉曼光谱和红外光谱。借助B3LYP密度泛函理论(DFT)方法研究了L-Ala-Gly的平衡几何结构、键合特征和谐波振动频率。已将计算得到的分子几何结构与实验数据进行了比较。振动光谱的归属是在遵循标度量子力学力场方法(SQMFF)的简正坐标分析(NCA)的帮助下进行的。优化后的几何结构显示出该分子肽基团的非平面性。还使用B3LYP/6-311+G*基组通过从头计算进行了势能面(PES)扫描研究。NH3+伸缩波数的红移表明形成了N-H...O氢键。使用DFT方法通过自然键轨道分析(NBO)计算了σ反键轨道中的电子密度(ED)变化和E2能量。NBO分析证实了该分子中存在强分子间氢键。