Department of Chemistry, Graduate School of Science, Kyoto University, Oiwake, Kitashirakawa, Sakyo-ku, Kyoto 606-8502, Japan.
J Am Chem Soc. 2011 Aug 31;133(34):13406-12. doi: 10.1021/ja202329u. Epub 2011 Aug 4.
Anabaena sensory rhodopsin (ASR), a microbial rhodopsin in the cyanobacterium sp. PCC7120, has been suggested to regulate cell processes in a light-quality-dependent manner (color-discrimination) through interaction with a water-soluble transducer protein (Tr). However, light-dependent ASR-Tr interaction changes have yet to be demonstrated. We applied the transient grating (TG) method to investigate protein-protein interaction between ASR with Tr. The molecular diffusion component of the TG signal upon photostimulation of ASR(AT) (ASR with an all-trans retinylidene chromophore) revealed that Tr dissociates from ASR upon formation of the M-intermediate and rebinds to ASR during the decay of M; that is, light induces transient dissociation of ASR and Tr during the photocycle. Further correlating the dissociation of the ASR-Tr pair with the M-intermediate, no transient dissociation was observed after the photoexcitation of the blue-shifted ASR(13C) (ASR with 13-cis, 15-syn chromophore), which does not produce M. This distinction between ASR(AT) and ASR(13C), the two isomeric forms in a color-sensitive equilibrium in ASR, provides a potential mechanism for color-sensitive signaling by ASR.
集胞藻 PCC7120 中的蓝藻感应视紫红质(ASR)是一种微生物视紫红质,它被认为通过与水溶性转导蛋白(Tr)相互作用以依赖光质的方式(颜色辨别)调节细胞过程。然而,光依赖性 ASR-Tr 相互作用的变化尚待证实。我们应用瞬态光栅(TG)方法研究了 ASR 与 Tr 之间的蛋白质-蛋白质相互作用。光刺激 ASR(AT)(全反式视黄醛发色团的 ASR)时 TG 信号的分子扩散分量表明,Tr 在 M 中间体形成时从 ASR 解离,并在 M 衰减过程中重新结合到 ASR 上;也就是说,光在光循环过程中诱导 ASR 和 Tr 的瞬时解离。进一步将 ASR-Tr 对的解离与 M 中间体相关联,在蓝移 ASR(13C)(具有 13-顺式,15-顺式发色团的 ASR)的光激发后没有观察到 ASR-Tr 对的瞬时解离,而该 ASR 不产生 M。ASR 中两种处于颜色敏感平衡的异构形式 ASR(AT)和 ASR(13C)之间的这种区别为 ASR 的颜色敏感信号提供了一种潜在的机制。