Division of Pharmaceutical Sciences, Okayama University, Okayama, 700-8530, Japan.
Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Okayama, 700-8530, Japan.
Sci Rep. 2021 Jul 20;11(1):14765. doi: 10.1038/s41598-021-94181-w.
Microbial rhodopsins are photoswitchable seven-transmembrane proteins that are widely distributed in three domains of life, archaea, bacteria and eukarya. Rhodopsins allow the transport of protons outwardly across the membrane and are indispensable for light-energy conversion in microorganisms. Archaeal and bacterial proton pump rhodopsins have been characterized using an Escherichia coli expression system because that enables the rapid production of large amounts of recombinant proteins, whereas no success has been reported for eukaryotic rhodopsins. Here, we report a phylogenetically distinct eukaryotic rhodopsin from the dinoflagellate Oxyrrhis marina (O. marina rhodopsin-2, OmR2) that can be expressed in E. coli cells. E. coli cells harboring the OmR2 gene showed an outward proton-pumping activity, indicating its functional expression. Spectroscopic characterization of the purified OmR2 protein revealed several features as follows: (1) an absorption maximum at 533 nm with all-trans retinal chromophore, (2) the possession of the deprotonated counterion (pK = 3.0) of the protonated Schiff base and (3) a rapid photocycle through several distinct photointermediates. Those features are similar to those of known eukaryotic proton pump rhodopsins. Our successful characterization of OmR2 expressed in E. coli cells could build a basis for understanding and utilizing eukaryotic rhodopsins.
微生物视紫红质是一种可光开关的七跨膜蛋白,广泛分布于生命的三个领域,古菌、细菌和真核生物。视紫红质允许质子向外跨膜运输,是微生物中光能转换所必需的。已经使用大肠杆菌表达系统对古菌和细菌质子泵视紫红质进行了表征,因为这可以快速大量生产重组蛋白,而真核视紫红质则没有成功报道。在这里,我们报告了一种来自甲藻(Oxyrrhis marina)的与进化上不同的真核视紫红质(O. marina rhodopsin-2,OmR2),它可以在大肠杆菌细胞中表达。含有 OmR2 基因的大肠杆菌细胞表现出向外的质子泵活性,表明其功能性表达。对纯化的 OmR2 蛋白的光谱特性进行了表征,发现了以下几个特征:(1)与全反式视黄醛发色团在 533nm 处的最大吸收峰,(2)质子化 Schiff 碱的去质子化抗衡离子(pK=3.0)的存在,以及(3)通过几个不同的光中间产物快速光循环。这些特征与已知的真核质子泵视紫红质相似。我们成功地在大肠杆菌细胞中表达 OmR2 并对其进行了表征,为理解和利用真核视紫红质奠定了基础。