Department of Chemistry, Graduate School of Science, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.
Department of Life Science and Applied Chemistry, Nagoya Institute of Technology, Showa-ku, Nagoya, Aichi 466-8555, Japan.
J Phys Chem B. 2021 Jul 8;125(26):7155-7162. doi: 10.1021/acs.jpcb.1c04010. Epub 2021 Jun 24.
Light is utilized as energy or information by rhodopsins (membrane proteins that contain a retinal chromophore). Heliorhodopsins (HeRs) are a new class of rhodopsins with low sequence identity (<15%) to microbial and animal rhodopsins. Their physiological roles remain unknown, although the involvement of a long-lived intermediate in the photocycle suggests a light-sensor function. Characterization of the molecular structures of the intermediates is essential to an understanding of the roles and mechanisms of HeRs. We determined the chromophore structures of the intermediates in HeR 48C12 by time-resolved resonance Raman spectroscopy and observed that the hydrogen bond of the protonated Schiff base strengthened prior to deprotonation. The chromophore is photoisomerized from the all- to the 13- form and is reisomerized in the transition from the O intermediate to the unphotolyzed state. Our results demonstrate that the chromophore structure evolves similarly to microbial rhodopsins, despite the dissimilarity in amino acid residues surrounding the chromophore.
视紫红质(一种含有视黄醛发色团的膜蛋白)将光作为能量或信息加以利用。深海盐菌视紫红质(HeRs)是一类新的视紫红质,与微生物和动物视紫红质的序列同一性<15%。虽然光循环中存在长寿命中间产物表明其具有光感受器功能,但它们的生理作用仍然未知。中间产物的分子结构的特征对于理解 HeRs 的作用和机制至关重要。我们通过时间分辨共振拉曼光谱法确定了 HeR 48C12 中间产物的发色团结构,观察到质子化的席夫碱的氢键在去质子化之前增强。发色团从全-13-形式光异构化,并在从 O 中间产物到未光解状态的转变中重新异构化。我们的结果表明,尽管发色团周围的氨基酸残基不同,但发色团结构的演变与微生物视紫红质相似。