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通过剩余偶极耦合进行同源结构优化得到的恶臭假单胞菌铁氧化还原蛋白中氧化还原依赖的结构差异。

Redox-dependent structural differences in putidaredoxin derived from homologous structure refinement via residual dipolar couplings.

作者信息

Jain Nitin U, Tjioe Elina, Savidor Alon, Boulie James

机构信息

Biochemistry, Cellular and Molecular Biology Department, University of Tennessee, Knoxville, Tennessee 37996-0840, USA.

出版信息

Biochemistry. 2005 Jun 28;44(25):9067-78. doi: 10.1021/bi050152c.

DOI:10.1021/bi050152c
PMID:15966730
Abstract

Structural differences in the [2Fe-2S] ferredoxin, putidaredoxin (Pdx), from the camphor hydroxylation pathway of Pseudomonas putida have been investigated as a function of oxidation state of the iron cluster. Pdx is involved in biological electron transfer to cytochrome P450(cam) (CYP101). Redox-dependent differences have been observed previously for Pdx in terms of binding affinities to CYP101, NMR spectral differences, and dynamic properties. To further characterize these differences, structure refinement of both oxidized and reduced Pdx has been carried out using a hybrid approach utilizing paramagnetic distance restraints and NMR orientational restraints in the form of backbone (15)N residual dipolar couplings. Use of these new restraints has improved the structure of oxidized Pdx considerably over the earlier solution NMR structure without RDC restraints, with the new structure now much closer in overall fold to the recently published X-ray crystal structures. We now observe better defined relative orientations of the major secondary structure elements as also of the conformation of the metal binding loop region. Extension of this approach to structure calculation of reduced Pdx has identified structural differences that are primarily localized for residues in the C-terminal interaction domain consisting of the functionally important residue Trp 106 and regions near the metal binding loop in Pdx. These redox-dependent structural differences in Pdx correlate to dynamic changes observed before and may be linked to differences in binding and electron transfer properties between oxidized and reduced Pdx.

摘要

对来自恶臭假单胞菌樟脑羟基化途径的[2Fe-2S]铁氧化还原蛋白——恶臭假单胞菌铁氧化还原蛋白(Pdx)的结构差异,作为铁簇氧化态的函数进行了研究。Pdx参与生物电子向细胞色素P450(cam)(CYP101)的传递。先前已观察到Pdx在与CYP101的结合亲和力、核磁共振光谱差异和动力学性质方面存在氧化还原依赖性差异。为了进一步表征这些差异,采用了一种混合方法对氧化态和还原态的Pdx进行结构优化,该方法利用了顺磁距离限制和以主链(15)N剩余偶极耦合形式的核磁共振取向限制。与没有RDC限制的早期溶液核磁共振结构相比,使用这些新的限制条件极大地改善了氧化态Pdx的结构,新结构的整体折叠现在与最近发表的X射线晶体结构更加接近。我们现在观察到主要二级结构元件的相对取向以及金属结合环区域的构象更加明确。将该方法扩展到还原态Pdx的结构计算,确定了结构差异,这些差异主要局限于C端相互作用结构域中的残基,该结构域由功能重要的残基色氨酸106和Pdx中金属结合环附近的区域组成。Pdx中这些氧化还原依赖性结构差异与之前观察到的动态变化相关,并且可能与氧化态和还原态Pdx之间的结合和电子转移性质差异有关。

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