Sakai Yusuke, McDowell Richard J, Lucas Robert J
Division of Neuroscience and Centre for Biological Timing, School of Biological Sciences, Faculty of Biology Medicine and Health, University of Manchester, UK.
FEBS Lett. 2025 Aug 13. doi: 10.1002/1873-3468.70130.
Neuropsin (Opn5), a UV-sensitive 'non-visual' opsin, has the potential to be used as optogenetic tools applicable to tissues outside of the eye because of its broad expression. However, its sensitivity to poorly tissue-penetrating UV light poses challenges for its application. In this study, we focused on human OPN5 (hOPN5) to identify amino acid(s) responsible for the UV sensitivity. Sequence alignment across UV-sensitive Opn5s identified a conserved lysine residue (Lys91) at a position implicated in spectral tuning in invertebrate opsins. Substitution of this residue with neutral or acidic amino acids caused substantial shifts in spectral sensitivity towards visible wavelengths. Our findings identify Lys91 as a key spectral tuning site in hOPN5 and provide visible-light-sensitive versions as a candidate for optogenetic applications. Impact statement A "non-visual" opsin, Opn5, is the only UV-sensitive opsin in human. In this study, we identified, for the first time, a key tuning site responsible for the UV sensitivity of hOPN5. In addition to its impact on the opsin molecular studies, this finding could pave the way for the development of novel visual-sensitive Opn5-based optogenetic tools.
神经视蛋白(Opn5)是一种对紫外线敏感的“非视觉”视蛋白,由于其广泛表达,有潜力用作适用于眼外组织的光遗传学工具。然而,它对组织穿透性较差的紫外线的敏感性给其应用带来了挑战。在本研究中,我们聚焦于人类OPN5(hOPN5)以确定负责紫外线敏感性的氨基酸。对紫外线敏感的Opn5进行序列比对,发现在一个与无脊椎动物视蛋白光谱调谐有关的位置有一个保守的赖氨酸残基(Lys91)。用中性或酸性氨基酸取代该残基会导致光谱敏感性向可见光波长发生显著偏移。我们的研究结果确定Lys91是hOPN5中的一个关键光谱调谐位点,并提供了对可见光敏感的变体作为光遗传学应用的候选者。影响声明:“非视觉”视蛋白Opn5是人类中唯一对紫外线敏感的视蛋白。在本研究中,我们首次确定了一个负责hOPN5紫外线敏感性的关键调谐位点。除了对视蛋白分子研究的影响外,这一发现可能为新型基于视蛋白Opn5的视觉敏感光遗传学工具的开发铺平道路。