Publication: The impact of chromophore choice on the assembly kinetics and primary photochemistry of a red/green cyanobacteriochrome
The impact of chromophore choice on the assembly kinetics and primary photochemistry of a red/green cyanobacteriochrome
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Buhrke, D. (2021). The impact of chromophore choice on the assembly kinetics and primary photochemistry of a red/green cyanobacteriochrome. Physical Chemistry Chemical Physics (PCCP), 23(37), 20867–20874. https://doi.org/10.1039/d1cp02696h
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Cyanobacteriochromes (CBCRs) are bi-stable photoreceptor proteins with high potential for biotechnological applications. Most of these proteins utilize phycocyanobilin (PCB) as a light-sensing co-factor, which is unique to cyanobacteria, but some variants also incorporate biliverdin (BV). The latter are of particular interest for biotechnology due to the natural abundance and red-shifted absorption of BV. Here, AmI-g2 was investigated, a CBCR capable of binding both PCB and BV. The assembly kinetics and primary photochemistry of AmI-g
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Buhrke, D. (2021). The impact of chromophore choice on the assembly kinetics and primary photochemistry of a red/green cyanobacteriochrome. Physical Chemistry Chemical Physics (PCCP), 23(37), 20867–20874. https://doi.org/10.1039/d1cp02696h