AI Article Synopsis

  • Phospholipid-protein interactions are crucial for the function and structure of photosynthetic membranes in purple bacteria, specifically in Rhodobacter sphaeroides.
  • A mutant strain lacking the LH2 complex showed altered phospholipid levels, with decreases in phosphatidylglycerol (PG) and increases in cardiolipin (CL) and phosphatidylcholine (PC), indicating specific lipid preferences for light-harvesting complexes.
  • Substituting the LH1 complex from another species also changed the phospholipid composition, highlighting how different LH complexes influence the membrane's lipid makeup and morphology.

Article Abstract

Phospholipid-protein interactions play important roles in regulating the function and morphology of photosynthetic membranes in purple phototrophic bacteria. Here, we characterize the phospholipid composition of intracytoplasmic membrane (ICM) from Rhodobacter (Rba.) sphaeroides that has been genetically altered to selectively express light-harvesting (LH) complexes. In the mutant strain (DP2) that lacks a peripheral light-harvesting (LH2) complex, the phospholipid composition was significantly different from that of the wild-type strain; strain DP2 showed a marked decrease in phosphatidylglycerol (PG) and large increases in cardiolipin (CL) and phosphatidylcholine (PC) indicating preferential interactions between the complexes and specific phospholipids. Substitution of the core light-harvesting (LH1) complex of Rba. sphaeroides strain DP2 with that from the purple sulfur bacterium Thermochromatium tepidum further altered the phospholipid composition, with substantial increases in PG and PE and decreases in CL and PC, indicating that the phospholipids incorporated into the ICM depend on the nature of the LH1 complex expressed. Purified LH1-reaction center core complexes (LH1-RC) from the selectively expressing strains also contained different phospholipid compositions than did core complexes from their corresponding wild-type strains, suggesting different patterns of phospholipid association between the selectively expressed LH1-RC complexes and those purified from native strains. Effects of carotenoids on the phospholipid composition were also investigated using carotenoid-suppressed cells and carotenoid-deficient species. The findings are discussed in relation to ICM morphology and specific LH complex-phospholipid interactions.

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http://dx.doi.org/10.1016/j.bbabio.2023.149001DOI Listing

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