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首页> 外文期刊>Biochemical and Biophysical Research Communications >PH-dependent structural change of the extracellular sensor domain of the DraK histidine kinase from Streptomyces coelicolor
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PH-dependent structural change of the extracellular sensor domain of the DraK histidine kinase from Streptomyces coelicolor

机译:嗜酸链霉菌DraK组氨酸激酶胞外传感器结构域的PH依赖结构变化

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摘要

Recently, the DraR/DraK (Sco3063/Sco3062) two-component system (TCS) of Streptomyces coelicolor has been reported to be involved in the differential regulation of antibiotic biosynthesis. However, it has not been shown that under which conditions and how the DraR/DraK TCS is activated to initiate the signal transduction process. Therefore, to understand the sensing mechanism, structural study of the sensory domain of DraK is highly required. Here, we report the biochemical and biophysical properties of the extracellular sensory domain (ESD) of DraK. We observed a reversible pH-dependent conformational change of the ESD in a pH range of 2.5-10. Size-exclusion chromatography and AUC (analytical ultracentrifugation) data indicated that the ESD is predominantly monomeric in solution and exists in equilibrium between monomer and dimer states in acidic condition. Using NMR (nuclear magnetic resonance) and CD (circular dichroism) spectroscopy, our findings suggest that the structure of the ESD at low pH is more structured than that at high pH. In particular, the glutamate at position 83 is an important residue for the pH-dependent conformational change. These results suggest that this pH-dependent conformational change of ESD may be involved in signal transduction process of DraR/DraK TCS. ? 2013 Elsevier Inc..
机译:最近,据报道天蓝色链霉菌的DraR / DraK(Sco3063 / Sco3062)两组分系统(TCS)参与了抗生素生物合成的差异调节。但是,尚未显示在什么条件下以及如何激活DraR / DraK TCS来启动信号转导过程。因此,为了理解感官机制,对DraK感官区域的结构研究非常必要。在这里,我们报告DraK的细胞外感觉域(ESD)的生化和生物物理特性。我们观察到在2.5-10的pH范围内ESD的可逆pH依赖性构象变化。尺寸排阻色谱和AUC(分析超速离心)数据表明ESD在溶液中主要为单体,在酸性条件下处于单体和二聚体状态之间的平衡状态。使用NMR(核磁共振)和CD(圆二色性)光谱,我们的发现表明,低pH值下ESD的结构要比高pH值下的结构更好。特别地,在83位的谷氨酸是pH依赖性构象变化的重要残基。这些结果表明,这种pH依赖性的ESD构象变化可能与DraR / DraK TCS的信号转导过程有关。 ? 2013爱思唯尔公司

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