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A B3LYP Investigation of the conformational and environmental sensitivity of carbon-deuterium frequencies of aryl-perdeuterated phenylalanine and tryptophan

机译:B3LYP研究芳基-氘代苯丙氨酸和色氨酸的碳-氘频率的构象和环境敏感性

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摘要

Carbon-deuterium labeled amino acids can serve as sensitive probes for biophysical characterization. Although multiple research groups have used infrared spectroscopy in conjunction with alkyl backbone or side-chain deuterated amino acids for the biophysical characterization of conformational and/or environmental changes, it was not entirely clear to the authors that perdeuterated aryl rings would demonstrate a similar sensitivity toward conformational or environmental changes. In an effort to evaluate the sensitivity of aryl carbon-deuterium (C-D) IR frequencies, a B3LYP investigation of the sensitivity of aryl C-D frequencies toward conformational and environmental changes was conducted for phenylalanine (Phe) and tryptophan (Trp). To compensate for the low molar absorptivity of C-D frequencies, perdeuterated aryl rings were investigated, which are commercially available and can be readily compared to experimental data. B3LYP results suggest that aryl-deuter-ated Phe and Trp will exhibit moderate sensitivities toward conformational and environmental changes with frequency shifts upward of 13 and 26 cm~(-1) for Phe and Trp, respectively. B3LYP predicts that conformational sensitivity arises from dipole changes and not orbital alignment changes. In an effort to mimic what might be observed experimentally,simulated IR spectra were created and show absorption band changes with conformational and environmental changes, which indicate that IR characterization of perdeuterated aryl rings in amino acids could serve as a biophysical tool.
机译:碳氘标记的氨基酸可以用作生物物理表征的敏感探针。尽管多个研究小组已将红外光谱技术与烷基骨架或侧链氘代氨基酸结合使用,以对构象和/或环境变化进行生物物理表征,但作者尚不完全清楚,氘代芳基环将显示出对类似构象的敏感性构象或环境变化。为了评估芳基碳氘(C-D)红外频率的敏感性,对苯丙氨酸(Phe)和色氨酸(Trp)进行了芳基C-D频率对构象和环境变化敏感性的B3LYP研究。为了补偿C-D频率的低摩尔吸光度,研究了全氘代芳基环,该环可商购获得,可以很容易地与实验数据进行比较。 B3LYP结果表明,芳基氘代的Phe和Trp对构象和环境变化表现出适度的敏感性,Phe和Trp的频率分别向上移动13和26 cm〜(-1)。 B3LYP预测构象敏感性是由偶极子的变化而不是轨道排列的变化引起的。为了模拟实验观察到的结果,创建了模拟IR光谱,并显示了吸收带随构象和环境变化而变化,这表明氨基酸中氘化芳基环的IR表征可作为生物物理工具。

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