Institute of Integrative Biology, University of Liverpool, UK.
STFC Daresbury Laboratory, Warrington, UK.
FEBS J. 2019 Nov;286(21):4261-4277. doi: 10.1111/febs.14973. Epub 2019 Jul 12.
Bacteriophytochrome proteins (BphPs) are molecular light switches that enable organisms to adapt to changing light conditions through the control of gene expression. Canonical type 1 BphPs have histidine kinase output domains, but type 3 RpBphP1, in the bacterium Rhodopseudomonas palustris (Rps. palustris), has a C terminal PAS9 domain and a two-helix output sensor (HOS) domain. Type 1 BphPs form head-to-head parallel dimers; however, the crystal structure of RpBphP1ΔHOS, which does not contain the HOS domain, revealed pseudo anti-parallel dimers. HOS domains are homologs of Dhp dimerization domains in type 1 BphPs. We show, by applying the small angle X-ray scattering (SAXS) technique on full-length RpBphP1, that HOS domains fulfill a similar role in the formation of parallel dimers. On illumination with far-red light, RpBphP1 forms a complex with gene repressor RpPpsR2 through light-induced structural changes in its HOS domains. An RpBphP1:RpPpsR2 complex is formed in the molecular ratio of 2 : 1 such that one RpBphP1 dimer binds one RpPpsR2 monomer. Molecular dimers have been modeled with Pfr and Pr SAXS data, suggesting that, in the Pfr state, stable dimeric four α-helix bundles are formed between HOS domains, rendering RpBphP1functionally inert. On illumination with light of 760 nm wavelength, four α-helix bundles formed by HOS dimers are disrupted, rendering helices available for binding with RpPpsR2.
细菌视紫红质蛋白(BphP)是分子光开关,可通过控制基因表达使生物体适应不断变化的光照条件。典型的 I 型 BphP 具有组氨酸激酶输出结构域,但在细菌沼泽红假单胞菌(Rps. palustris)中的 3 型 RpBphP1 具有 C 端 PAS9 结构域和双螺旋输出传感器(HOS)结构域。I 型 BphP 形成头对头平行二聚体;然而,不包含 HOS 结构域的 RpBphP1ΔHOS 的晶体结构显示出假反平行二聚体。HOS 结构域是 I 型 BphP 中 Dhp 二聚化结构域的同源物。我们通过对全长 RpBphP1 应用小角 X 射线散射(SAXS)技术,表明 HOS 结构域在平行二聚体形成中发挥相似作用。在远红光照射下,RpBphP1 通过其 HOS 结构域的光诱导结构变化与基因阻遏物 RpPpsR2 形成复合物。 RpBphP1:RpPpsR2 复合物以 2:1 的分子比形成,使得一个 RpBphP1 二聚体与一个 RpPpsR2 单体结合。分子二聚体已使用 Pfr 和 Pr SAXS 数据进行建模,表明在 Pfr 状态下,HOS 结构域之间形成稳定的二聚体四 α-螺旋束,使 RpBphP1 功能失活。在波长为 760nm 的光照射下,HOS 二聚体形成的四 α-螺旋束被破坏,使螺旋能够与 RpPpsR2 结合。