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Drosophila melanogaster rhodopsin Rh7 is a UV-to-visible light sensor with an extraordinarily broad absorption spectrum

机译:果蝇黑色素视紫红质Rh7是具有超宽吸收光谱的紫外可见光传感器

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摘要

The genome of Drosophila melanogaster contains seven rhodopsin genes. Rh1-6 proteins are known to have respective absorption spectra and function as visual pigments in ocelli and compound eyes. In contrast, Rh7 protein was recently revealed to function as a circadian photoreceptor in the brain. However, its molecular properties have not been characterized yet. Here we successfully prepared a recombinant protein of Drosophila Rh7 in mammalian cultured cells. Drosophila Rh7 bound both 11-cis-retinal and 11-cis-3-hydroxyretinal to form photo-pigments which can absorb UV light. Irradiation with UV light caused formation of a visible-light absorbing metarhodopsin that activated Gq-type of G protein. This state could be photoconverted back to the original state and, thus Rh7 is a Gq-coupled bistable pigment. Interestingly, Rh7 (lambda max = 350 nm) exhibited an unusual broad spectrum with a longer wavelength tail reaching 500 nm, whose shape is like a composite of spectra of two pigments. In contrast, replacement of lysine at position 90 with glutamic acid caused the formation of a normal-shaped absorption spectrum with maximum at 450 nm. Therefore, Rh7 is a unique photo-sensor that can cover a wide wavelength region by a single pigment to contribute to non-visual photoreception.
机译:果蝇的基因组包含七个视紫红质基因。已知Rh1-6蛋白具有各自的吸收光谱,并在小眼和复眼中充当视觉色素。相反,最近发现Rh7蛋白在大脑中起昼夜节律性受体的作用。然而,其分子性质尚未表征。在这里,我们成功地在哺乳动物培养的细胞中制备了果蝇Rh7的重组蛋白。果蝇Rh7结合11-顺-视网膜和11-顺-3-羟基视网膜形成光色素,可以吸收紫外线。紫外线照射导致形成可见光吸收性视紫红质,从而激活Gq型G蛋白。该状态可以被光转换回原始状态,因此Rh7是Gq偶联的双稳态颜料。有趣的是,Rh7(λmax= 350 nm)表现出不寻常的宽光谱,较长的尾波达到500 nm,其形状像是两种颜料光谱的合成。相反,用谷氨酸代替90位赖氨酸会形成一个最大吸收波长为450nm的正常吸收光谱。因此,Rh7是一种独特的光电传感器,可以用一种颜料覆盖很宽的波长区域,从而有助于非可视光接收。

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