Institute for Biochemistry, Department Molecular Structural Biology, University of Greifswald, Germany.
Institute of Biological Chemistry, Biocenter, Medical University of Innsbruck, Austria.
FEBS J. 2022 Jan;289(2):507-518. doi: 10.1111/febs.16141. Epub 2021 Aug 2.
Bradyrhizobium diazoefficiens, a bacterial symbiont of soybean and other leguminous plants, enters a nodulation-promoting genetic programme in the presence of host-produced flavonoids and related signalling compounds. Here, we describe the crystal structure of an isoflavonoid-responsive regulator (FrrA) from Bradyrhizobium, as well as cocrystal structures with inducing and noninducing ligands (genistein and naringenin, respectively). The structures reveal a TetR-like fold whose DNA-binding domain is capable of adopting a range of orientations. A single molecule of either genistein or naringenin is asymmetrically bound in a central cavity of the FrrA homodimer, mainly via C-H contacts to the π-system of the ligands. Strikingly, however, the interaction does not provoke any conformational changes in the repressor. Both the flexible positioning of the DNA-binding domain and the absence of structural change upon ligand binding are corroborated by small-angle X-ray scattering (SAXS) experiments in solution. Together with a model of the promoter-bound state of FrrA our results suggest that inducers act as a wedge, preventing the DNA-binding domains from moving close enough together to interact with successive positions of the major groove of the palindromic operator.
根瘤菌属是大豆和其他豆科植物的共生细菌,当宿主产生类黄酮和相关信号化合物时,它会进入促进结瘤的遗传程序。在这里,我们描述了一种来自根瘤菌的异黄酮应答调节因子(FrrA)的晶体结构,以及与诱导和非诱导配体(染料木黄酮和柚皮苷,分别)的共晶结构。结构揭示了一种 TetR 样折叠,其 DNA 结合域能够采用多种取向。染料木黄酮或柚皮苷的单个分子以非对称的方式结合在 FrrA 同源二聚体的中央腔中,主要通过与配体的π-系统的 C-H 接触。然而,令人惊讶的是,这种相互作用不会引起抑制剂的任何构象变化。DNA 结合域的灵活定位和配体结合时没有结构变化都得到了溶液中小角度 X 射线散射(SAXS)实验的证实。与 FrrA 结合到启动子上的模型一起,我们的结果表明,诱导物充当楔子,防止 DNA 结合域彼此靠近到足以与回文操纵子的主要凹槽的连续位置相互作用。