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Three Mutations Convert the Selectivity of a Protein Sensor from Nicotinic Agonists to S-Methadone for Use in Cells, Organelles, and Biofluids

Authors :
Anand K. Muthusamy
Charlene H. Kim
Scott C. Virgil
Hailey J. Knox
Jonathan S. Marvin
Aaron L. Nichols
Bruce N. Cohen
Dennis A. Dougherty
Loren L. Looger
Henry A. Lester
Source :
Journal of the American Chemical Society, vol 144, iss 19
Publication Year :
2022
Publisher :
American Chemical Society, 2022.

Abstract

We report a reagentless, intensity-based S-methadone fluorescent sensor, iS-methadoneSnFR, consisting of a circularly permuted GFP inserted within the sequence of a mutated bacterial periplasmic binding protein (PBP). We evolved a previously reported nicotine-binding PBP to become a selective S-methadone-binding sensor, via three mutations in the PBP’s second shell and hinge regions. iS-methadoneSnFR displays the necessary sensitivity, kinetics, and selectivity – notably enantioselectivity against R-methadone – for biological applications. Robust iS-methadoneSnFR responses in human sweat and saliva and mouse serum enable diagnostic uses. Expression and imaging in mammalian cells demonstrate that S-methadone enters at least two organelles and undergoes acid trapping in the Golgi apparatus, where opioid receptors can signal. This work shows a straightforward strategy in adapting existing PBPs to serve real-time applications ranging from subcellular to personal pharmacokinetics.

Details

Language :
English
Database :
OpenAIRE
Journal :
Journal of the American Chemical Society, vol 144, iss 19
Accession number :
edsair.doi.dedup.....53972a94019485a4a65506408d036e07