Green/red light-sensing mechanism in the chromatic acclimation photosensor.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38865454.
- Also identified by DOI 10.1126/sciadv.adn8386 and PMC identifier 11168458.
- Licence recorded as CC BY-NC.
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Abstract
Certain cyanobacteria alter their photosynthetic light absorption between green and red, a phenomenon called complementary chromatic acclimation. The acclimation is regulated by a cyanobacteriochrome-class photosensor that reversibly photoconverts between green-absorbing (Pg) and red-absorbing (Pr) states. Here, we elucidated the structural basis of the green/red photocycle. In the Pg state, the bilin chromophore adopted the extended C15-<i>Z</i>,<i>anti</i> structure within a hydrophobic pocket. Upon photoconversion to the Pr state, the bilin is isomerized to the cyclic C15-<i>E</i>,<i>syn</i> structure, forming a water channel in the pocket. The solvation/desolvation of the bilin causes changes in the protonation state and the stability of π-conjugation at the B ring, leading to a large absorption shift. These results advance our understanding of the enormous spectral diversity of the phytochrome superfamily.
Medical subject headings
- Light