Deinococcus radiodurans BphP PAS-GAF H260A/Y263F mutant

Deinococcus radiodurans BphP PAS-GAF H260A/Y263F mutant

Description

Phytochromes are red light-sensing photoreceptor proteins that bind a bilin chromophore. Here, we investigate the role of a conserved histidine (H260) and tyrosine (Y263) in the chromophore-binding domain (CBD) of Deinococcus radiodurans phytochrome (DrBphP). Using crystallography, we show that in the H260A variant, the missing imidazole side chain leads to increased water content in the binding pocket. On the other hand, Y263F mutation reduces the water occupancy around the chromophore. Together, these changes in water coordination alter the protonation and spectroscopic properties of the biliverdin. These results pinpoint the importance of this conserved histidine and tyrosine, and the related water network, for the function and applications of phytochromes. Files: - Structure coordinates (PDBx/mmCIF) - Structure coordinates (PDBML) - Structure coordinates (PDB) - X-ray diffraction data (PDBx/mmCIF) - Validation report (mmCIF) - Validation report (XML) - Validation report (PDF)
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Year of publication

2022

Authors

Protein Data Bank (PDB) - Publisher

Heli Lehtivuori - Creator

Unknown organization

Heikki Takala - Contributor

Jessica Rumfeldt - Contributor

Sami Kurkinen - Contributor

Satu Mustalahti - Contributor

Other information

Fields of science

Nanotechnology

Language

English

Open access

Open

License

Other

Keywords

KINASE, PHOTOSENSOR, Phytochrome, TRANSFERASE
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