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来自植物病原菌野油菜黄单胞菌的全长细菌光敏色素结构为其远程信号传导机制提供了线索。

Structure of the Full-Length Bacteriophytochrome from the Plant Pathogen Xanthomonas campestris Provides Clues to its Long-Range Signaling Mechanism.

作者信息

Otero Lisandro Horacio, Klinke Sebastián, Rinaldi Jimena, Velázquez-Escobar Francisco, Mroginski María Andrea, Fernández López María, Malamud Florencia, Vojnov Adrián Alberto, Hildebrandt Peter, Goldbaum Fernando Alberto, Bonomi Hernán Ruy

机构信息

Fundación Instituto Leloir-IIBBA-CONICET, Av. Patricias Argentinas 435 (C1405BWE), Buenos Aires, Argentina; Plataforma Argentina de Biología Estructural y Metabolómica PLABEM, Av. Patricias Argentinas 435 (C1405BWE), Buenos Aires, Argentina.

Fundación Instituto Leloir-IIBBA-CONICET, Av. Patricias Argentinas 435 (C1405BWE), Buenos Aires, Argentina.

出版信息

J Mol Biol. 2016 Sep 25;428(19):3702-20. doi: 10.1016/j.jmb.2016.04.012. Epub 2016 Apr 20.

Abstract

Phytochromes constitute a major superfamily of light-sensing proteins that are reversibly photoconverted between a red-absorbing (Pr) and a far-red-absorbing (Pfr) state. Bacteriophytochromes (BphPs) are found among photosynthetic and non-photosynthetic bacteria, including pathogens. To date, several BphPs have been biophysically characterized. However, it is still not fully understood how structural changes are propagated from the photosensory module to the output module during the signal transduction event. Most phytochromes share a common architecture consisting of an N-terminal photosensor that includes the PAS2-GAF-PHY domain triad and a C-terminal variable output module. Here we present the crystal structure of the full-length BphP from the plant pathogen Xanthomonas campestris pv. campestris (XccBphP) bearing its photosensor and its complete output module, a PAS9 domain. In the crystals, the protein was found to be in the Pr state, whereas diffraction data together with resonance Raman spectroscopic and theoretical results indicate a ZZZssa and a ZZEssa chromophore configuration corresponding to a mixture of Pr and Meta-R state, the precursor of Pfr. The XccBphP quaternary assembly reveals a head-to-head dimer in which the output module contributes to the helical dimer interface. The photosensor, which is shown to be a bathy-like BphP, is influenced in its dark reactions by the output module. Our structural analyses suggest that the photoconversion between the Pr and Pfr states in the full-length XccBphP may involve changes in the relative positioning of the output module. This work contributes to understand the light-induced structural changes propagated from the photosensor to the output modules in phytochrome signaling.

摘要

光敏色素构成了一个主要的光感应蛋白超家族,它们在吸收红光的(Pr)和吸收远红光的(Pfr)状态之间可逆地进行光转换。细菌光敏色素(BphPs)存在于光合细菌和非光合细菌中,包括病原体。迄今为止,已有几种BphPs通过生物物理方法进行了表征。然而,在信号转导过程中,结构变化是如何从光感应模块传递到输出模块的,目前仍未完全了解。大多数光敏色素具有共同的结构,由一个包含PAS2-GAF-PHY结构域三联体的N端光传感器和一个C端可变输出模块组成。在这里,我们展示了来自植物病原体野油菜黄单胞菌野油菜致病变种(XccBphP)的全长BphP的晶体结构,它带有其光传感器和完整的输出模块——一个PAS9结构域。在晶体中,发现该蛋白处于Pr状态,而衍射数据以及共振拉曼光谱和理论结果表明,发色团构型为ZZZssa和ZZEssa,对应于Pr和Pfr的前体Meta-R状态的混合物。XccBphP的四级组装显示为头对头二聚体,其中输出模块有助于形成螺旋二聚体界面。被证明是类深海型BphP的光传感器,其暗反应受输出模块影响。我们的结构分析表明,全长XccBphP中Pr和Pfr状态之间的光转换可能涉及输出模块相对位置的变化。这项工作有助于理解在光敏色素信号传导中从光传感器传递到输出模块的光诱导结构变化。

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