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首页> 外文期刊>Biochemistry >Vibrational stark effects calibrate the sensitivity of vibrational probes for electric fields in proteins.
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Vibrational stark effects calibrate the sensitivity of vibrational probes for electric fields in proteins.

机译:振动鲜明效应可校准振动探针对蛋白质电场的敏感性。

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摘要

Infrared spectroscopy is widely used to probe local environments and dynamics in proteins. The introduction of a unique vibration at a specific site of a protein or more complex assembly offers many advantages over observing the spectra of an unmodified protein. We have previously shown that infrared frequency shifts in proteins can arise from differences in the local electric field at the probe vibration. Thus, vibrational frequencies can be used to map electric fields in proteins at many sites or to measure the change in electric field due to a perturbation. The Stark tuning rate gives the sensitivity of a vibrational frequency to an electric field, and for it to be useful, the Stark tuning rate should be as large as possible. Vibrational Stark effect spectroscopy provides a direct measurement of the Stark tuning rate and allows a quantitative interpretation of frequency shifts. We present vibrational Stark spectra of several bond types, extending our work on nitriles and carbonyls and characterizingfour additional bond types (carbon-fluorine, carbon-deuterium, azide, and nitro bonds) that are potential probes for electric fields in proteins. The measured Stark tuning rates, peak positions, and extinction coefficients provide the primary information needed to design amino acid analogues or labels to act as probes of local environments in proteins.
机译:红外光谱法广泛用于探测蛋白质的局部环境和动力学。与观察未修饰蛋白质的光谱相比,在蛋白质的特定部位或更复杂的装配体处引入独特的振动具有许多优势。先前我们已经表明,蛋白质中的红外频率变化可能是由探针振动时局部电场的差异引起的。因此,振动频率可用于在许多位置绘制蛋白质中的电场图或测量由于扰动引起的电场变化。斯塔克调谐率使振动频率对电场敏感,并且对于其有用,斯塔克调谐率应尽可能大。振动斯塔克效应光谱法可直接测量斯塔克调谐速率,并可以定量解释频移。我们展示了几种键类型的振动Stark光谱,扩展了我们对腈和羰基的研究,并表征了四种其他键类型(碳-氟,碳-氘,叠氮化物和硝基键),它们是蛋白质电场的潜在探针。测得的Stark调谐速率,峰位置和消光系数提供了设计氨基酸类似物或标记物以充当蛋白质局部环境探针所需的主要信息。

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