Molecular Biophysics Group, Institute of Integrative Biology, Faculty of Health and Life Sciences, University of Liverpool, Liverpool L69 7ZB, UK.
Graduate School of Life Science, University of Hyogo, 3-2-1 Kouto, Kamigori, Ako, Hyogo 678-1297, Japan.
Sci Signal. 2018 Apr 10;11(525):eaaq0825. doi: 10.1126/scisignal.aaq0825.
The symbiotic nitrogen-fixing bacterium is critical to the agro-industrial production of soybean because it enables the production of high yields of soybeans with little use of nitrogenous fertilizers. The FixL and FixJ two-component system (TCS) of this bacterium ensures that nitrogen fixation is only stimulated under conditions of low oxygen. When it is not bound to oxygen, the histidine kinase FixL undergoes autophosphorylation and transfers phosphate from adenosine triphosphate (ATP) to the response regulator FixJ, which, in turn, stimulates the expression of genes required for nitrogen fixation. We purified full-length FixL and FixJ proteins and defined their structures individually and in complex using small-angle x-ray scattering, crystallographic, and in silico modeling techniques. Comparison of active and inactive forms of FixL suggests that intramolecular signal transduction is driven by local changes in the sensor domain and in the coiled-coil region connecting the sensor and histidine kinase domains. We also found that FixJ exhibits conformational plasticity not only in the monomeric state but also in tetrameric complexes with FixL during phosphotransfer. This structural characterization of a complete TCS contributes both a mechanistic and evolutionary understanding to TCS signal relay, specifically in the context of the control of nitrogen fixation in root nodules.
共生固氮菌对于大豆的农业生产至关重要,因为它可以在很少使用氮肥的情况下实现大豆的高产。这种细菌的 FixL 和 FixJ 双组分系统(TCS)确保只有在低氧条件下才会刺激固氮作用。当它不与氧气结合时,组氨酸激酶 FixL 会经历自动磷酸化,并将磷酸从三磷酸腺苷(ATP)转移到响应调节剂 FixJ,FixJ 反过来又会刺激固氮所需基因的表达。我们纯化了全长 FixL 和 FixJ 蛋白,并分别使用小角度 X 射线散射、晶体学和计算机建模技术在复合物中定义了它们的结构。对活性和非活性形式的 FixL 的比较表明,分子内信号转导是由传感器结构域和连接传感器和组氨酸激酶结构域的螺旋卷曲区域中的局部变化驱动的。我们还发现,FixJ 在单体状态以及在与 FixL 形成的四聚体复合物中都表现出构象灵活性,在磷酸转移过程中也是如此。这种完整 TCS 的结构特征不仅为 TCS 信号传递提供了机制和进化方面的理解,特别是在根瘤中控制固氮的背景下。