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Development of a rapid Buffer-exchange system for time-resolved ATR-FTIR spectroscopy with the step-scan mode

机译:开发具有阶跃扫描模式的时间分辨ATR-FTIR光谱的快速缓冲液交换系统

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摘要

Attenuated total reflectance (ATR)-FTIR spectroscopy has been widely used to probe protein structural changes under various stimuli, such as light absorption, voltage change, and ligand binding, in aqueous conditions. Time-resolved measurements require a trigger, which can be controlled electronically; therefore, light and voltage changes are suitable. Here we developed a novel, rapid buffer-exchange system for time-resolved ATR-FTIR spectroscopy to monitor the ligand- or ion-binding re-action of a protein. By using the step-scan mode (time resolution; 2.5 ms), we confirmed the completion of the buffer-exchange reaction within ∼25 ms; the process was monitored by the infrared absorption change of a nitrate band at 1,350 cm−1. We also demonstrated the anion-binding reaction of a membrane protein, Natronomonas pharaonis halorhodopsin (pHR), which binds a chloride ion in the initial anion-binding site near the retinal chromophore. The formation of chloride- or nitrate-bound pHR was confirmed by an increase of the retinal absorption band at 1,528 cm−1. It also should be noted that low sample consumption (∼1 µg of protein) makes this new method a powerful technique to understand ligand–protein and ion–protein interactions, particularly for membrane proteins.
机译:衰减全反射(FTR-FTIR)光谱已广泛用于探测在水性条件下各种刺激(例如光吸收,电压变化和配体结合)下蛋白质的结构变化。时间分辨的测量需要一个触发器,该触发器可以电子控制;因此,光和电压的变化是合适的。在这里,我们为时间分辨的ATR-FTIR光谱学开发了一种新颖的快速缓冲液交换系统,以监测蛋白质的配体或离子结合反应。通过使用步进扫描模式(时间分辨率; 2.5 ms),我们确认了大约25 ms内缓冲液交换反应的完成。通过硝酸盐带在1,350 cm -1 的红外吸收变化来监测该过程。我们还证明了膜蛋白Natronomonas pharaonis halhohodopsin(pHR)的阴离子结合反应,该蛋白在视网膜发色团附近的初始阴离子结合位点结合氯离子。视网膜吸收带在1,528 cm -1 的增加证实了氯化物或硝酸盐结合的pHR的形成。还应注意的是,低样品消耗量(约1 µg蛋白质)使这种新方法成为了解配体-蛋白质和离子-蛋白质相互作用(尤其是膜蛋白)的强大技术。

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