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肽单层膜在空气/水界面原位的外反射傅里叶变换红外光谱:实验设计、光谱-结构相关性以及氢-氘交换的影响

External reflection FTIR of peptide monolayer films in situ at the air/water interface: experimental design, spectra-structure correlations, and effects of hydrogen-deuterium exchange.

作者信息

Flach C R, Brauner J W, Taylor J W, Baldwin R C, Mendelsohn R

机构信息

Department of Chemistry, Newark College of Arts and Science, Rutgers University, New Jersey 07102.

出版信息

Biophys J. 1994 Jul;67(1):402-10. doi: 10.1016/S0006-3495(94)80495-3.

Abstract

A Fourier transform infrared spectrometer has been interfaced with a surface balance and a new external reflection infrared sampling accessory, which permits the acquisition of spectra from protein monolayers in situ at the air/water interface. The accessory, a sample shuttle that permits the collection of spectra in alternating fashion from sample and background troughs, reduces interference from water vapor rotation-vibration bands in the amide I and amide II regions of protein spectra (1520-1690 cm-1) by nearly an order of magnitude. Residual interference from water vapor absorbance ranges from 50 to 200 microabsorbance units. The performance of the device is demonstrated through spectra of synthetic peptides designed to adopt alpha-helical, antiparallel beta-sheet, mixed beta-sheet/beta-turn, and unordered conformations at the air/water interface. The extent of exchange on the surface can be monitored from the relative intensities of the amide II and amide I modes. Hydrogen-deuterium exchange may lower the amide I frequency by as much as 11-12 cm-1 for helical secondary structures. This shifts the vibrational mode into a region normally associated with unordered structures and leads to uncertainties in the application of algorithms commonly used for determination of secondary structure from amide I contours of proteins in D2O solution.

摘要

一台傅里叶变换红外光谱仪已与一台表面天平及一种新型外反射红外采样附件连接,该附件可在空气/水界面原位采集蛋白质单层的光谱。该附件是一个样品穿梭装置,能够以交替方式从样品槽和背景槽收集光谱,可将蛋白质光谱酰胺I和酰胺II区域(1520 - 1690厘米-1)中来自水蒸气旋转 - 振动带的干扰降低近一个数量级。水蒸气吸收产生的残余干扰范围为50至200微吸光度单位。通过设计用于在空气/水界面采用α螺旋、反平行β折叠、混合β折叠/β转角和无规构象的合成肽的光谱,展示了该装置的性能。表面上的交换程度可通过酰胺II和酰胺I模式的相对强度来监测。对于螺旋二级结构,氢 - 氘交换可能会使酰胺I频率降低多达11 - 12厘米-1。这种振动模式的移动会使其进入通常与无规结构相关的区域,并导致在从D2O溶液中蛋白质的酰胺I轮廓确定二级结构时常用算法的应用存在不确定性。

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