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控制荚膜红细菌中光捕获和反应中心基因表达厌氧诱导的感觉转导成分的分离及体外磷酸化

Isolation and in vitro phosphorylation of sensory transduction components controlling anaerobic induction of light harvesting and reaction center gene expression in Rhodobacter capsulatus.

作者信息

Inoue K, Kouadio J L, Mosley C S, Bauer C E

机构信息

Department of Biology, Indiana University, Bloomington 47405.

出版信息

Biochemistry. 1995 Jan 17;34(2):391-6. doi: 10.1021/bi00002a002.

Abstract

Anaerobic induction of light harvesting and reaction center gene expression involves two transacting factors termed RegA and RegB. Sequence and mutational analysis has indicated that RegA and RegB constitute cognate components of a prokaryotic sensory transduction cascade with RegB comprising a membrane-spanning sensor kinase and RegA a cytosolic response regulator. In this study we have purified RegA, as well as a truncated portion of RegB (RegB') and undertaken an in vitro analysis of autophosphorylation and phosphotransfer activities. Incubation of RegB' with [gamma-32P]ATP and MgCl2 resulted in phosphorylation of RegB' (RegB' approximately P) over a 20-min incubation period. Incubation of RegB' approximately P with RegA resulted in rapid transfer of the phosphate from RegB' to RegA. In analogy to other characterized prokaryotic sensory transduction components, mutational and chemical stability studies also indicate that RegB' is autophosphorylated at a conserved histidine and that RegA accepts the phosphate from RegB at a conserved aspartate.

摘要

光捕获和反应中心基因表达的厌氧诱导涉及两个反式作用因子,称为RegA和RegB。序列和突变分析表明,RegA和RegB构成原核生物感觉转导级联的同源组分,其中RegB包含跨膜传感激酶,而RegA为胞质应答调节因子。在本研究中,我们纯化了RegA以及RegB的截短部分(RegB'),并对自磷酸化和磷酸转移活性进行了体外分析。将RegB'与[γ-32P]ATP和MgCl2一起孵育20分钟,导致RegB'(RegB'P)发生磷酸化。将RegB'P与RegA一起孵育导致磷酸从RegB'快速转移至RegA。与其他已表征的原核生物感觉转导组分类似, 突变和化学稳定性研究还表明,RegB'在保守的组氨酸处发生自磷酸化,并且RegA在保守的天冬氨酸处接受来自RegB的磷酸。

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