首页> 外文期刊>Chemistry: A European journal >Structure and IR Spectrum of Phenylalanyl-Glycyl-Glycine Tripetide in the Gas-Phase:IR/UV Experiments,Ab Initio Quantum Chemical Calculations,and Molecular Dynamic Simulations
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Structure and IR Spectrum of Phenylalanyl-Glycyl-Glycine Tripetide in the Gas-Phase:IR/UV Experiments,Ab Initio Quantum Chemical Calculations,and Molecular Dynamic Simulations

机译:气相中苯丙氨酰基-甘氨酰-甘氨酸三肽的结构和红外光谱:IR / UV实验,从头算量子化学计算和分子动力学模拟

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We investigated the potential-energy surface (PES) of the phe-nylalanyl-glycyl-glycine tripeptide in the gas phase by means of IR/UV double-resonance spectroscopy,and quantum chemical and statistical ther-modynamic calculations.Experimentally,we observed four conformational structures and we recorded their IR spectra in the spectral region of 3000-4000 cm~(-1).Computationally,we investigated the PES by a combination of molecular dynamics/quenching procedures with high-level correlated ab initio calculations.We found that neither empirical potentials nor various DFT func-tionals provide satisfactory results.On the other hand,the approximative DFT method covering the dispersion energy yields a reliable set of the most stable structures,which we subsequently investigated with an accurate,correlated ab initio treatment.The global minimum contains three moderately strong intramolecular hydrogen bonds and is mainly stabilized by London dispersion forces between the phenyl ring,the carboxylic acid group,and various peptide bonds.A proper description of the last type of interaction requires accurate correlated ab initio calculations,including the complete basis set limit of the MP2 method and CCSD(T) correction terms.Since in our beam experiments the conformations are frozen by cooling from a higher temperature,it is necessary to localize the most stable structures on the free-energy surface rather than on the PES.We used two different procedures (rigid rotor/harmonic oscillator/ideal gas approximation based on ab initio characteristics and evaluation of relative populations from the molecular dynamic simulations using the AMBER potential) and both yield four structures,the global minimum and three local minima.These four structures were among the 15 most energetically stable structures obtained from accurate ab initio optimization.The calculated IR spectra for these four structures agree well with the experimental frequencies,which validates the localization procedure.
机译:我们通过红外/紫外双共振光谱,量子化学和统计热力学计算研究了气相中苯丙氨酰-甘氨酰-甘氨酸三肽的势能表面(PES)。通过实验,我们观察到了四个构象结构,并在3000-4000 cm〜(-1)的光谱范围内记录了它们的红外光谱。计算中,我们通过分子动力学/猝灭过程与高级从头算相结合的方法研究了PES。经验势和各种DFT函数都不能提供令人满意的结果。另一方面,涵盖色散能量的近似DFT方法产生了一组可靠的最稳定的结构,随后我们对其进行了精确的,相关的从头算起的研究。全局最小值包含三个中等强度的分子内氢键,并且主要通过苯环与羧基之间的伦敦分散力来稳定酸基团和各种肽键。对最后一种相互作用的正确描述需要准确的从头算起的相关计算,包括MP2方法的完整基集限制和CCSD(T)校正术语。通过高温冷却而冻结,有必要将最稳定的结构定位在自由能表面上,而不是在PES上。我们使用了两种不同的过程(基于从头算的特性的刚性转子/谐波振荡器/理想气体近似)和通过使用AMBER势进行分子动力学模拟对相对种群进行评估)都产生了四种结构,全局最小值和三个局部最小值。这四种结构是通过精确的从头算优化获得的15个能量上最稳定的结构之一。这四个结构与实验频率吻合良好,验证了定位过程。

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