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通过15N旋转框架核磁共振弛豫测量法鉴定嗜盐外硫红螺菌中还原型重组高电位铁硫蛋白I(HiPIP I)的慢运动

Identification of slow motions in the reduced recombinant high-potential iron sulfur protein I (HiPIP I) from Ectothiorhodospira halophila via 15N rotating-frame NMR relaxation measurements.

作者信息

Banci L, Felli I C, Koulougliotis D

机构信息

Department of Chemistry, University of Florence, Italy.

出版信息

J Biomol NMR. 1998 Aug;12(2):307-18. doi: 10.1023/a:1008232919515.

Abstract

Rotating-frame 15N relaxation rate (R1 rho) NMR experiments have been performed in order to study the dynamic behavior of the reduced recombinant high-potential iron-sulfur protein iso I (HiPIP I) from Ectothiorhodospira halophila, in the microsecond to ms time range. Measurements of R1 rho were performed as a function of the effective spinlock magnetic field amplitude by using both on and off-resonance radio frequency irradiation. The two data sets provided consistent results and were fit globally in order to identify possible exchange processes in an external loop of the reduced HiPIP I. The loop consists of residues 43-45 and the correlation time of the exchange process was determined to be 50 +/- 8 microseconds for the backbone nitrogen of Gln 44.

摘要

为了研究嗜盐外硫红螺菌中还原型重组高电位铁硫蛋白同工型I(HiPIP I)在微秒至毫秒时间范围内的动力学行为,进行了旋转坐标系15N弛豫率(R1 rho)核磁共振实验。通过使用共振和非共振射频辐射,测量了R1 rho作为有效自旋锁定磁场幅度的函数。这两组数据集提供了一致的结果,并进行了全局拟合,以确定还原型HiPIP I外部环中可能的交换过程。该环由43 - 45位残基组成,对于Gln 44的主链氮,交换过程的相关时间确定为50±8微秒。

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