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Local and global structural drivers for the photoactivation of the orange carotenoid protein.


ABSTRACT: Photoprotective mechanisms are of fundamental importance for the survival of photosynthetic organisms. In cyanobacteria, the orange carotenoid protein (OCP), when activated by intense blue light, binds to the light-harvesting antenna and triggers the dissipation of excess captured light energy. Using a combination of small angle X-ray scattering (SAXS), X-ray hydroxyl radical footprinting, circular dichroism, and H/D exchange mass spectrometry, we identified both the local and global structural changes in the OCP upon photoactivation. SAXS and H/D exchange data showed that global tertiary structural changes, including complete domain dissociation, occur upon photoactivation, but with alteration of secondary structure confined to only the N terminus of the OCP. Microsecond radiolytic labeling identified rearrangement of the H-bonding network associated with conserved residues and structural water molecules. Collectively, these data provide experimental evidence for an ensemble of local and global structural changes, upon activation of the OCP, that are essential for photoprotection.

SUBMITTER: Gupta S 

PROVIDER: S-EPMC4611662 | biostudies-literature | 2015 Oct

REPOSITORIES: biostudies-literature

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Local and global structural drivers for the photoactivation of the orange carotenoid protein.

Gupta Sayan S   Guttman Miklos M   Leverenz Ryan L RL   Zhumadilova Kulyash K   Pawlowski Emily G EG   Petzold Christopher J CJ   Lee Kelly K KK   Ralston Corie Y CY   Kerfeld Cheryl A CA  

Proceedings of the National Academy of Sciences of the United States of America 20150918 41


Photoprotective mechanisms are of fundamental importance for the survival of photosynthetic organisms. In cyanobacteria, the orange carotenoid protein (OCP), when activated by intense blue light, binds to the light-harvesting antenna and triggers the dissipation of excess captured light energy. Using a combination of small angle X-ray scattering (SAXS), X-ray hydroxyl radical footprinting, circular dichroism, and H/D exchange mass spectrometry, we identified both the local and global structural  ...[more]

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