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Gas phase ultraviolet and infrared spectroscopy on a partial peptide of beta(2)-adrenoceptor SIVSF-NH2 by a laser desorption supersonic jet technique

机译:激光解吸超声喷射技术对β(2)-肾上腺素受体SIVSF-NH2的部分肽进行气相紫外和红外光谱分析

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摘要

Laser desorption supersonic jet laser spectroscopy has been applied to a penta-peptide, Ser-Ile-Val-Ser-Phe-NH2 (SIVSF-NH2), which is a partial sequence of a binding site in a beta(2)-adrenaline receptor protein. By comparing the resonance enhanced multiphoton ionization spectrum with the ultraviolet-ultraviolet hole burning (HB) spectrum, it is concluded that only a single conformer exists. The infrared (IR) spectrum of the X-H stretching region, measured by IR dip spectroscopy, shows that all of the OH and NH groups form hydrogen bonds. The structure of SIVSF-NH2 is assigned by the combination of a force field calculation (CONFLEX) and quantum chemical calculations both in S-0 and S-1. Over 20 000 stable conformations, given by CONFLEX, are classified into 6987 groups and 1068 groups in which all of the NH and OH bonds are hydrogen-bonded are selected. The most stable structure in each group was geometrically optimized by density functional theory (DFT) calculations, and theoretical IR spectra were calculated for the conformers for which the energies are within 10 kJ mol(-1) of the most stable one. It has been found that the most stable and the secondmost stable conformers well-reproduce the observed IR spectrum. The vibrational frequencies in S-1 were also calculated for these two conformers. According to the reproduction of the vibrational frequencies in the HB spectrum, the structure of SIVSF-NH2 is assigned to the most stable conformer, which forms a hydrogen-bonded structure corresponding to a compact, distorted version of the beta hairpin of peptides and proteins.
机译:激光解吸超声喷射激光光谱已应用于五肽Ser-Ile-Val-Ser-Phe-NH2(SIVSF-NH2),它是β(2)-肾上腺素受体结合位点的部分序列蛋白。通过将共振增强的多光子电离光谱与紫外-紫外线空穴燃烧(HB)光谱进行比较,得出的结论是仅存在一个构象异构体。 X-H拉伸区域的红外(IR)光谱通过IR浸没光谱法测量,表明所有的OH和NH基团均形成氢键。 SIVSF-NH2的结构是通过力场计算(CONFLEX)和S-0和S-1中的量子化学计算的组合分配的。 CONFLEX给出的20000多种稳定构象分为6987个组和1068个组,其中所有NH和OH键均通过氢键键合。通过密度泛函理论(DFT)计算对每组中最稳定的结构进行几何优化,并计算能量在最稳定的10 kJ mol(-1)以内的构象异构体的理论IR光谱。已经发现最稳定和第二稳定的构象异构体很好地再现了观察到的IR光谱。还针对这两个构象异构体计算了S-1中的振动频率。根据HB频谱中振动频率的再现,SIVSF-NH2的结构被分配给最稳定的构象异构体,该构象异构体形成氢键结构,对应于肽和蛋白质的β发夹的紧凑,扭曲的形式。

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