Wiethaus Jessica, Müller Alexandra, Neumann Meina, Neumann Sandra, Leimkühler Silke, Narberhaus Franz, Masepohl Bernd
Lehrstuhl für Biologie der Mikroorganismen, Fakultät für Biologie und Biotechnologie, Ruhr-Universität Bochum, 44780 Bochum, Germany.
J Bacteriol. 2009 Aug;191(16):5205-15. doi: 10.1128/JB.00526-09. Epub 2009 Jun 5.
The phototrophic purple bacterium Rhodobacter capsulatus encodes two transcriptional regulators, MopA and MopB, with partially overlapping and specific functions in molybdate-dependent gene regulation. Both MopA and MopB consist of an N-terminal DNA-binding helix-turn-helix domain and a C-terminal molybdate-binding di-MOP domain. They formed homodimers as apo-proteins and in the molybdate-bound state as shown by yeast two-hybrid (Y2H) studies, glutaraldehyde cross-linking, gel filtration chromatography, and copurification experiments. Y2H studies suggested that both the DNA-binding and the molybdate-binding domains contribute to dimer formation. Analysis of molybdate binding to MopA and MopB revealed a binding stoichiometry of four molybdate oxyanions per homodimer. Specific interaction partners of MopA and MopB were the molybdate transporter ATPase ModC and the molbindin-like Mop protein, respectively. Like other molbindins, the R. capsulatus Mop protein formed hexamers, which were stabilized by binding of six molybdate oxyanions per hexamer. Heteromer formation of MopA and MopB was shown by Y2H studies and copurification experiments. Reporter gene activity of a strictly MopA-dependent mop-lacZ fusion in mutant strains defective for either mopA, mopB, or both suggested that MopB negatively modulates expression of the mop promoter. We propose that depletion of the active MopA homodimer pool by formation of MopA-MopB heteromers might represent a fine-tuning mechanism controlling mop gene expression.
光合紫色细菌荚膜红细菌编码两种转录调节因子MopA和MopB,它们在钼酸盐依赖性基因调控中具有部分重叠和特定的功能。MopA和MopB均由一个N端DNA结合螺旋-转角-螺旋结构域和一个C端钼酸盐结合双MOP结构域组成。酵母双杂交(Y2H)研究、戊二醛交联、凝胶过滤色谱和共纯化实验表明,它们以脱辅基蛋白形式形成同二聚体,并在结合钼酸盐的状态下形成同二聚体。Y2H研究表明,DNA结合结构域和钼酸盐结合结构域都有助于二聚体的形成。对钼酸盐与MopA和MopB结合的分析表明,每个同二聚体的结合化学计量为四个钼酸根阴离子。MopA和MopB的特异性相互作用伙伴分别是钼酸盐转运ATP酶ModC和类钼结合蛋白Mop蛋白。与其他钼结合蛋白一样,荚膜红细菌Mop蛋白形成六聚体,每个六聚体通过结合六个钼酸根阴离子而稳定。Y2H研究和共纯化实验表明MopA和MopB形成异二聚体。在mopA、mopB或两者缺陷的突变菌株中,严格依赖MopA的mop-lacZ融合蛋白的报告基因活性表明,MopB负向调节mop启动子的表达。我们提出,通过形成MopA-MopB异二聚体来消耗活性MopA同二聚体库可能代表一种控制mop基因表达的微调机制。