Back to Search Start Over

Carotenoid-dependent singlet oxygen photogeneration in light-harvesting complex 2 of Ectothiorhodospira haloalkaliphila leads to the formation of organic hydroperoxides and damage to both pigments and protein matrix.

Authors :
Yanykin D
Paskhin M
Ashikhmin AA
Bolshakov MA
Source :
PeerJ [PeerJ] 2024 Jan 16; Vol. 12, pp. e16615. Date of Electronic Publication: 2024 Jan 16 (Print Publication: 2024).
Publication Year :
2024

Abstract

Earlier, it was suggested that carotenoids in light-harvesting complexes 2 (LH2) can generate singlet oxygen, further oxidizing bacteriochlorophyll to 3-acetyl-chlorophyll. In the present work, it was found that illumination of isolated LH2 preparations of purple sulfur bacterium Ectothiorhodospira haloalkaliphila with light in the carotenoid absorption region leads to the photoconsumption of molecular oxygen, which is accompanied by the formation of hydroperoxides of organic molecules in the complexes. Photoformation of two types of organic hydroperoxides were revealed: highly lipophilic (12 molecules per one LH2) and relatively hydrophobic (68 per one LH2). It has been shown that illumination leads to damage to light-harvesting complexes. On the one hand, photobleaching of bacteriochlorophyll and a decrease in its fluorescence intensity are observed. On the other hand, the photoinduced increase in the hydrodynamic radius of the complexes, the reduction in their thermal stability, and the change in fluorescence intensity indicate conformational changes occurring in the protein molecules of the LH2 preparations. Inhibition of the processes described above upon the addition of singlet oxygen quenchers (L-histidine, Trolox, sodium L-ascorbate) may support the hypothesis that carotenoids in LH2 preparations are capable of generating singlet oxygen, which, in turn, damage to protein molecules.<br />Competing Interests: The authors declare there are no competing interests.<br /> (©2024 Yanykin et al.)

Details

Language :
English
ISSN :
2167-8359
Volume :
12
Database :
MEDLINE
Journal :
PeerJ
Publication Type :
Academic Journal
Accession number :
38250719
Full Text :
https://doi.org/10.7717/peerj.16615