AI Article Synopsis

  • Rhodobacter capsulatus is a key model organism for studying bacterial photosynthesis, notable for its unique structural components like PufX, which aids in the formation of the light-harvesting 1-reaction center (LH1-RC) complex.
  • The cryo-EM structure of its LH1-RC reveals a compact configuration with only 10 αβ-subunits, indicating some differences compared to its relative Rba. sphaeroides, which has additional subunits due to the presence of protein-U.
  • PufX in Rba. capsulatus has an unusual conformation that hinders its interaction with other proteins, essential for understanding the formation and function of the LH1-RC in the context of energy

Article Abstract

Rhodobacter (Rba.) capsulatus has been a favored model for studies of all aspects of bacterial photosynthesis. This purple phototroph contains PufX, a polypeptide crucial for dimerization of the light-harvesting 1-reaction center (LH1-RC) complex, but lacks protein-U, a U-shaped polypeptide in the LH1-RC of its close relative Rba. sphaeroides. Here we present a cryo-EM structure of the Rba. capsulatus LH1-RC purified by DEAE chromatography. The crescent-shaped LH1-RC exhibits a compact structure containing only 10 LH1 αβ-subunits. Four αβ-subunits corresponding to those adjacent to protein-U in Rba. sphaeroides were absent. PufX in Rba. capsulatus exhibits a unique conformation in its N-terminus that self-associates with amino acids in its own transmembrane domain and interacts with nearby polypeptides, preventing it from interacting with proteins in other complexes and forming dimeric structures. These features are discussed in relation to the minimal requirements for the formation of LH1-RC monomers and dimers, the spectroscopic behavior of both the LH1 and RC, and the bioenergetics of energy transfer from LH1 to the RC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9932092PMC
http://dx.doi.org/10.1038/s41467-023-36460-wDOI Listing

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