Kojima Keiichi, Yoshizawa Susumu, Hasegawa Masumi, Nakama Masaki, Kurihara Marie, Kikukawa Takashi, Sudo Yuki
Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Okayama, 700-8530, Japan.
Atmosphere and Ocean Research Institute, The University of Tokyo, Chiba, 277-8564, Japan.
Sci Rep. 2020 Nov 30;10(1):20857. doi: 10.1038/s41598-020-77936-9.
The photoreactive protein rhodopsin is widespread in microorganisms and has a variety of photobiological functions. Recently, a novel phylogenetically distinctive group named 'schizorhodopsin (SzR)' has been identified as an inward proton pump. We performed functional and spectroscopic studies on an uncharacterised schizorhodopsin from the phylum Lokiarchaeota archaeon. The protein, LaSzR2, having an all-trans-retinal chromophore, showed inward proton pump activity with an absorption maximum at 549 nm. The pH titration experiments revealed that the protonated Schiff base of the retinal chromophore (Lys188, pK = 12.3) is stabilised by the deprotonated counterion (presumably Asp184, pK = 3.7). The flash-photolysis experiments revealed the presence of two photointermediates, K and M. A proton was released and uptaken from bulk solution upon the formation and decay of the M intermediate. During the M-decay, the Schiff base was reprotonated by the proton from a proton donating residue (presumably Asp172). These properties were compared with other inward (SzRs and xenorhodopsins, XeRs) and outward proton pumps. Notably, LaSzR2 showed acid-induced spectral 'blue-shift' due to the protonation of the counterion, whereas outward proton pumps showed opposite shifts (red-shifts). Thus, we can distinguish between inward and outward proton pumps by the direction of the acid-induced spectral shift.
光反应蛋白视紫红质广泛存在于微生物中,具有多种光生物学功能。最近,一个新的系统发育独特的类群“裂合视紫红质(SzR)”被鉴定为内向质子泵。我们对来自洛基古菌门的一种未表征的裂合视紫红质进行了功能和光谱研究。该蛋白LaSzR2具有全反式视黄醛发色团,表现出内向质子泵活性,最大吸收峰在549nm处。pH滴定实验表明,视黄醛发色团的质子化席夫碱(Lys188,pK = 12.3)通过去质子化的抗衡离子(可能是Asp184,pK = 3.7)得以稳定。闪光光解实验揭示了存在两种光中间体,K和M。在M中间体形成和衰减时,质子从本体溶液中释放并摄取。在M衰减过程中,席夫碱被来自质子供体残基(可能是Asp172)的质子重新质子化。将这些性质与其他内向(裂合视紫红质和异源视紫红质,XeR)和外向质子泵进行了比较。值得注意的是,由于抗衡离子的质子化,LaSzR2表现出酸诱导的光谱“蓝移”,而外向质子泵表现出相反的移动(红移)。因此,我们可以通过酸诱导光谱移动的方向来区分内向和外向质子泵。