4.2 Article

The rhodopsin-retinochrome system for retinal re-isomerization predates the origin of cephalopod eyes

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BMC ECOLOGY AND EVOLUTION
卷 21, 期 1, 页码 -

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BMC
DOI: 10.1186/s12862-021-01939-x

关键词

Opsin; Retinochrome; RALBP; RLBP1; Visual cycle; Mollusk; Photoreceptor

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  1. Sars International Centre for Marine Molecular Biology, University of Bergen, Bergen Norway

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The study revealed the presence of orthologs of cephalopod retinochrome and RALBP in mollusks outside cephalopods. Additionally, orthologs of retinoid binding protein RLBP1 were found in polyplacophoran mollusks, cephalopods, and a phoronid. The expression of retinochrome, visual rhodopsin, RALBP, and RLBP1 were co-expressed in the larval chiton photoreceptor cells, along with multiple retinal dehydrogenases which may contribute to the rhodopsin-retinochrome system.
Background The process of photoreception in most animals depends on the light induced isomerization of the chromophore retinal, bound to rhodopsin. To re-use retinal, the all-trans-retinal form needs to be re-isomerized to 11-cis-retinal, which can be achieved in different ways. In vertebrates, this mostly includes a stepwise enzymatic process called the visual cycle. The best studied re-isomerization system in protostomes is the rhodopsin-retinochrome system of cephalopods, which consists of rhodopsin, the photoisomerase retinochrome and the protein RALBP functioning as shuttle for retinal. In this study we investigate the expression of the rhodopsin-retinochrome system and functional components of the vertebrate visual cycle in a polyplacophoran mollusk, Leptochiton asellus, and examine the phylogenetic distribution of the individual components in other protostome animals. Results Tree-based orthology assignments revealed that orthologs of the cephalopod retinochrome and RALBP are present in mollusks outside of cephalopods. By mining our dataset for vertebrate visual cycle components, we also found orthologs of the retinoid binding protein RLBP1, in polyplacophoran mollusks, cephalopods and a phoronid. In situ hybridization and antibody staining revealed that L. asellus retinochrome is co-expressed in the larval chiton photoreceptor cells (PRCs) with the visual rhodopsin, RALBP and RLBP1. In addition, multiple retinal dehydrogenases are expressed in the PRCs, which might also contribute to the rhodopsin-retinochrome system. Conclusions We conclude that the rhodopsin-retinochrome system is a common feature of mollusk PRCs and predates the origin of cephalopod eyes. Our results show that this system has to be extended by adding further components, which surprisingly, are shared with vertebrates.

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