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February 25, 20260 citationsOpen Access

Structural, mechanistic and phylogenetic insights into a freshwater actinorhodopsin.

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NDNadia DjabeurJJJean-Marc JeckelmannNANooraldeen Ayoub

Key Points

  • The research aims to analyze the structure and function of actinorhodopsins in freshwater Actinobacteria.
  • Determined the 3D structure of RlActR using cryo-electron microscopy.
  • Performed a comparative analysis of retinal binding regions in different microbial rhodopsins.
  • Conducted phylogenetic analysis to position RlActR among proton-pumping rhodopsins.
  • Discovered a pentameric structure with key functional amino acid residues for retinal binding.
  • Identified molecular interactions that stabilize the pentamer's assembly.
  • Positioned RlActR within a distinct group of proton-pumping rhodopsins based on phylogenetic analysis.

Abstract

Actinorhodopsins represent a unique subgroup of microbial rhodopsins, predominantly found in non-marine Actinobacteria and proposed to contribute to the global energy cycle. Despite their ecological significance, structural information on this family has remained scarce. Here, we present the high-resolution three-dimensional structure of the pentameric actinorhodopsin RlActR from the actinobacterium Rhodoluna lacicola, as determined by cryo-electron microscopy and single-particle 3D reconstruction. The structure provides molecular insights into key functional amino acid residues involved in retinal cofactor binding and the proton translocation pathway. In addition to describing the organization of the retinal Schiff base region, we present a comparative analysis of this region in RlActR and in prototypical microbial rhodopsins from two distinct phyla, namely, the green-light-absorbing proteorhodopsin from Bacteria and bacteriorhodopsin from Archaea. We also describe the amino acid interactions at the oligomerization interface that stabilize the pentamer. Furthermore, the structure reveals a pentameric architecture with a lipid-filled central cavity and a lipid-occupied, membrane-facing interprotomer crevices, further highlighting molecular interactions that stabilize the assembly. Phylogenetic analysis and structural comparisons with selected microbial rhodopsins exhibiting light-driven proton-pumping activity position RlActR within a distinct group of proton-pumping rhodopsins, underscoring its evolutionary and functional relevance.

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Cite This Study

Djabeur et al. (2026) studied this question.

synapsesocial.com/papers/699e9152f5123be5ed04eba1https://doi.org/10.48620/94847
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