De novo design of proteins housing excitonically coupled chlorophyll special pairs

Resum

Natural photosystems couple light harvesting to charge separation using a ‘special pair’ of chlorophyll molecules that accepts excitation energy from the antenna and initiates an electron-transfer cascade. To investigate the photophysics of special pairs independently of the complexities of native photosynthetic proteins, and as a first step toward creating synthetic photosystems for new energy conversion technologies, we designed C2-symmetric proteins that hold two chlorophyll molecules in closely juxtaposed arrangements. X-ray crystallography confirmed that one designed protein binds two chlorophylls in the same orientation as native special pairs, whereas a second designed protein positions them in a previously unseen geometry. Spectroscopy revealed that the chlorophylls are excitonically coupled, and fluorescence lifetime imaging demonstrated energy transfer. The cryo-electron microscopy structure of a designed 24-chlorophyll octahedral nanocage with a special pair on each edge closely matched the design model. The results suggest that the de novo design of artificial photosynthetic systems is within reach of current computational methods.

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Article


Versió publicada

Llengua

Anglès

Paraules clau

Química

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19 p.

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Springer Nature

Número de l'acord de la subvenció

European Union’s Horizon 2020 program Marie Sklodowska-Curie grant agreements no. 801474 (M.C.) and no. 754510 (V.M.)

State Research Agency/Spanish Ministry of Science and Innovation (AEI/MICINN/10.13039/501100011033) through the Severo Ochoa Excellence Accreditation CEX2019-000925-S (M.C. and E.R.)

European Research Council under starting grant agreement no. 805524 (BioInspired_SolarH2, S.S., M.C. and E.R.)

Consorci de Serveis Universitaris de Catalunya and the Barcelona Supercomputing Center (RES grant QH-2021-2-0017)

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