| Literature DB >> 35752265 |
Adjélé Wilson1, Elena A Andreeva2, Stanisław Niziński3, Léa Talbot1, Elisabeth Hartmann4, Ilme Schlichting4, Gotard Burdzinski5, Michel Sliwa6, Diana Kirilovsky7, Jacques-Philippe Colletier8.
Abstract
The orange carotenoid protein (OCP) is a photoactive protein involved in cyanobacterial photoprotection. Here, we report on the functional, spectral and structural characteristics of the peculiar Planktothrix PCC7805 OCP (Plankto-OCP). We show that this OCP variant is characterized by higher photoactivation and recovery rates, and a stronger energy-quenching activity, compared to other OCP studied thus far. We characterize the effect of the functionalizing carotenoid and of his-tagging on these reactions, and identify the time scales on which these modifications affect photoactivation. The presence of a his-tag at the C-terminus has a large influence on photoactivation, thermal recovery and PBS-fluorescence quenching, and likewise for the nature of the carotenoid that additionally affects the yield and characteristics of excited states and the ns-s dynamics of photoactivated OCP. By solving the structures of Plankto-OCP in the ECN- and CAN-functionalized states, each in two closely-related crystal forms, we further unveil the molecular breathing motions that animate Plankto-OCP at the monomer and dimer levels. We finally discuss the structural changes that could explain the peculiar properties of Plankto-OCP.Entities:
Keywords: Cyanobacteria; Flash photolysis; Photosynthetic pigments; Structure function relationships; X-ray diffraction
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Year: 2022 PMID: 35752265 DOI: 10.1016/j.bbabio.2022.148584
Source DB: PubMed Journal: Biochim Biophys Acta Bioenerg ISSN: 0005-2728 Impact factor: 4.428