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大肠杆菌烷磺酸盐单加氧酶系统中蛋白质-蛋白质相互作用的检测

Detection of protein-protein interactions in the alkanesulfonate monooxygenase system from Escherichia coli.

作者信息

Abdurachim Kholis, Ellis Holly R

机构信息

Department of Chemistry and Biochemistry, Auburn University, 179 Chemistry Building, Auburn, AL 36849.

出版信息

J Bacteriol. 2006 Dec;188(23):8153-9. doi: 10.1128/JB.00966-06. Epub 2006 Sep 22.

Abstract

The two-component alkanesulfonate monooxygenase system utilizes reduced flavin as a substrate to catalyze a unique desulfonation reaction during times of sulfur starvation. The importance of protein-protein interactions in the mechanism of flavin transfer was analyzed in these studies. The results from affinity chromatography and cross-linking experiments support the formation of a stable complex between the flavin mononucleotide (FMN) reductase (SsuE) and monooxygenase (SsuD). Interactions between the two proteins do not lead to overall conformational changes in protein structure, as indicated by the results from circular dichroism spectroscopy in the far-UV region. However, subtle changes in the flavin environment of FMN-bound SsuE that occur in the presence of SsuD were identified by circular dichroism spectroscopy in the visible region. These data are supported by the results from fluorescent spectroscopy experiments, where a dissociation constant of 0.0022 +/- 0.0010 muM was obtained for the binding of SsuE to SsuD. Based on these studies, the stoichiometry for protein-protein interactions is proposed to involve a 1:1 monomeric association of SsuE with SsuD.

摘要

双组分链烷磺酸盐单加氧酶系统利用还原型黄素作为底物,在硫饥饿期间催化独特的脱硫反应。在这些研究中分析了蛋白质-蛋白质相互作用在黄素转移机制中的重要性。亲和色谱和交联实验结果支持黄素单核苷酸(FMN)还原酶(SsuE)和单加氧酶(SsuD)之间形成稳定复合物。远紫外区域的圆二色光谱结果表明,两种蛋白质之间的相互作用不会导致蛋白质结构的整体构象变化。然而,在可见光区域的圆二色光谱鉴定出,在SsuD存在的情况下,与FMN结合的SsuE的黄素环境发生了细微变化。荧光光谱实验结果支持了这些数据,其中SsuE与SsuD结合的解离常数为0.0022±0.0010μM。基于这些研究,提出蛋白质-蛋白质相互作用的化学计量涉及SsuE与SsuD的1:1单体缔合。

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