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通过酰胺I带的时间分辨红外光谱探测一氧化碳肌红蛋白中CO光解离后的蛋白质反应。

Protein response to photodissociation of CO from carbonmonoxymyoglobin probed by time-resolved infrared spectroscopy of the amide I band.

作者信息

Causgrove T P, Dyer R B

机构信息

Division of Chemical and Laser Sciences, Los Alamos National Laboratory, New Mexico 87545.

出版信息

Biochemistry. 1993 Nov 16;32(45):11985-91. doi: 10.1021/bi00096a007.

Abstract

Protein conformational changes coupled to the ligation reactions of carbon monoxide in myoglobin (Mb) are detected by time-resolved infrared spectroscopy. An apparatus based on a tunable diode laser operating in the region of 1650 cm-1 is used to probe changes in the amide I absorption band of the protein in response to photodissociation and subsequent rebinding of CO. The time course of changes in the amide I band is shown to follow the recombination of photolyzed CO with Mb. A time-resolved difference spectrum in the amide I region is generated by tuning the diode laser probe source. The features in the IR difference spectrum are assigned to the motions of the polypeptide backbone associated with the global relaxation of the protein from the ligated to the deoxy conformation. A static difference spectrum generated by subtracting FTIR spectra of carbonmonoxy-Mb and deoxy-Mb is essentially identical to the transient spectrum, indicating that the protein relaxation is complete with the 100-ns time resolution of the experiment.

摘要

通过时间分辨红外光谱法检测与肌红蛋白(Mb)中一氧化碳连接反应相关的蛋白质构象变化。使用基于在1650 cm-1区域工作的可调谐二极管激光器的装置来探测蛋白质酰胺I吸收带响应于CO的光解离和随后的重新结合的变化。酰胺I带变化的时间进程显示出与光解的CO与Mb的重组过程一致。通过调谐二极管激光探测源产生酰胺I区域的时间分辨差谱。红外差谱中的特征归因于与蛋白质从连接构象到脱氧构象的整体弛豫相关的多肽主链运动。通过减去碳氧肌红蛋白(carbonmonoxy-Mb)和脱氧肌红蛋白(deoxy-Mb)的傅里叶变换红外光谱(FTIR)生成的静态差谱与瞬态谱基本相同,表明在实验的100 ns时间分辨率下蛋白质弛豫已完成。

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