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Stereochemical conversion of C3-vinyl group to 1-hydroxyethyl group in bacteriochlorophyll c by the hydratases BchF and BchV: adaptation of green sulfur bacteria to limited-light environments.

Authors :
Harada, Jiro
Teramura, Misato
Mizoguchi, Tadashi
Tsukatani, Yusuke
Yamamoto, Ken
Tamiaki, Hitoshi
Source :
Molecular Microbiology. Dec2015, Vol. 98 Issue 6, p1184-1198. 15p.
Publication Year :
2015

Abstract

Photosynthetic green sulfur bacteria inhabit anaerobic environments with very low-light conditions. To adapt to such environments, these bacteria have evolved efficient light-harvesting antenna complexes called as chlorosomes, which comprise self-aggregated bacteriochlorophyll c in the model green sulfur, bacterium Chlorobaculum tepidum. The pigment possess a hydroxy group at the C31 position that produces a chiral center with R- or S-stereochemistry and the C31-hydroxy group serves as a connecting moiety for the self-aggregation. Chlorobaculum tepidum carries the two possible homologous genes for C3-vinyl hydratase, bchF and bchV. In the present study, we constructed deletion mutants of each of these genes. Pigment analyses of the bchFinactivated mutant, which still has BchV as a sole hydratase, showed higher ratios of S-epimeric bacteriochlorophyll c than the wild-type strain. The heightened prevalence of S-stereoisomers in the mutant was more remarkable at lower light intensities and caused a red shift of the chlorosomal Qy absorption band leading to advantages for light-energy transfer. In contrast, the bchV-mutant possessing only BchF showed a significant decrease of the S-epimers and accumulations of C3-vinyl BChl c species. As transcriptional level of bchV was upregulated at lower light intensity, the Chlorobaculum tepidum adapted to low-light environments by control of the bchV transcription. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0950382X
Volume :
98
Issue :
6
Database :
Academic Search Index
Journal :
Molecular Microbiology
Publication Type :
Academic Journal
Accession number :
111998417
Full Text :
https://doi.org/10.1111/mmi.13208