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利用小角 X 射线散射技术探测光诱导的细菌视紫红质 RpBphP1 和基因阻遏物 RpPpsR2 的复合物形成。

Light-induced complex formation of bacteriophytochrome RpBphP1 and gene repressor RpPpsR2 probed by SAXS.

机构信息

Institute of Integrative Biology, University of Liverpool, UK.

STFC Daresbury Laboratory, Warrington, UK.

出版信息

FEBS J. 2019 Nov;286(21):4261-4277. doi: 10.1111/febs.14973. Epub 2019 Jul 12.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f37/6899989/68b394f4410b/FEBS-286-4261-g001.jpg

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