Ultrafast Primary
Dynamics and Isomerization Mechanism
of a Far-Red Sensing Cyanobacteriochrome
Posted on 2024-05-08 - 14:37
Far-red cyanobacteriochromes (CBCRs) are bilin-based
photosensory
proteins that promise to be novel optical agents in optogenetics and
deep tissue imaging. Recent structural studies of a far-red CBCR 2551g3
have revealed a unique all-Z,syn chromophore conformation
in the far-red-absorbing Pfr state. Understanding the photoswitching
mechanism through bilin photoisomerization is important for developing
novel biomedical applications. Here, we employ femtosecond spectroscopy
and site-directed mutagenesis to systematically characterize the dynamics
of wild-type 2551g3 and four critical mutants in the 15Z Pfr state.
We captured local relaxations in several picoseconds and isomerization
dynamics in hundreds of picoseconds. Most mutants exhibited faster
local relaxation, while their twisting dynamics and photoproducts
depend on specific protein–chromophore interactions around
the D-ring and C-ring. These results collectively reveal a unique
dynamic pattern of excited-state evolution arising from a relatively
rigid protein environment, thereby elucidating the molecular mechanism
of Pfr-state photoisomerization in far-red CBCRs.
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Niu, Kangwei; Wang, Dihao; Zhang, Yifei; Biju, Linta; Liu, Na; Wang, Xi; et al. (2024). Ultrafast Primary
Dynamics and Isomerization Mechanism
of a Far-Red Sensing Cyanobacteriochrome. ACS Publications. Collection. https://doi.org/10.1021/acs.jpclett.4c00468