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Cph2 光敏感受模块的红光敏感性的光谱和光化学特性。来自集胞藻 PCC 6803。

Spectroscopic and photochemical characterization of the red-light sensitive photosensory module of Cph2 from Synechocystis PCC 6803.

机构信息

Department of Chemistry, Philipps University, Marburg, Germany.

出版信息

Photochem Photobiol. 2011 Jan-Feb;87(1):160-73. doi: 10.1111/j.1751-1097.2010.00845.x. Epub 2010 Nov 23.

Abstract

Cyanobacterial phytochromes are a diverse family of light receptors controlling various biological functions including phototaxis. In addition to canonical bona fide phytochromes of the well characterized Cph1/plant-like clade, cyanobacteria also harbor phytochromes that absorb green, violet or blue light. The Synechocystis PCC 6803 Cph2 photoreceptor, a phototaxis inhibitor, is unconventional in bearing two distinct chromophore-binding GAF domains. Whereas the C-terminal GAF domain is most likely involved in blue-light perception, the first two domains correspond to a Cph1-like photosensory module lacking the PAS domain. Biochemical and spectroscopic studies show that this region switches between red (P(r) ) and far-red (P(fr) ) absorbing states. Unlike Cph1, the P(fr) state of Cph2 decays rapidly in darkness. Mutations close to the PCB chromophore further destabilize the P(fr) state without drastically affecting the spectroscopic features such as the quantum efficiency of P(r) →P(fr) conversion, fluorescence, or the Resonance-Raman signature of the chromophore. Overall, the PAS-less photosensory module of Cph2 resembles Cph1 including its mode of isomerisation, but the P(fr) state is unstable.

摘要

蓝藻的藻胆体是一个多样化的光受体家族,控制着包括趋光性在内的各种生物学功能。除了典型的、具有良好特征的 Cph1/植物样类群中的真正的藻青蛋白之外,蓝藻还拥有吸收绿光、紫光或蓝光的藻青蛋白。集胞藻 PCC 6803 的 Cph2 光受体是一种光抑制趋性受体,它具有两个独特的发色团结合 GAF 结构域,这是非传统的。虽然 C 末端 GAF 结构域很可能参与蓝光感知,但前两个结构域对应于缺乏 PAS 结构域的 Cph1 样光敏模块。生化和光谱研究表明,该区域在红光(P(r))和远红光(P(fr))吸收态之间切换。与 Cph1 不同,Cph2 的 P(fr)态在黑暗中迅速衰减。靠近 PCB 发色团的突变进一步使 P(fr)态不稳定,但不会严重影响光谱特征,如 P(r)→P(fr)转化的量子效率、荧光或发色团的共振拉曼特征。总的来说,Cph2 的无 PAS 光敏模块类似于 Cph1,包括其异构化方式,但 P(fr)态不稳定。

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