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The full spectrum of OCT1 (SLC22A1) mutations illuminates the bridge between drug transporter biophysics and pharmacogenomics

Molecular Cell. 2021-09; 
Sook Wah Yee; Christian B. Macdonald; Darko Mitrovic; Xujia Zhou; Megan L. Koleske; Jia Yang; Dina Buitrago Silva; Patrick Rockefeller Grimes; Donovan D. Trinidad; Swati S. More; Linda Kachuri; John S. Witte; Lucie Delemotte; Kathleen M. Giacomini; Willow Coyote-Maestas
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Mutagenesis Services Mutagenesis Kit was used to perform mutagenesis. For the other twenty of the OCT1 variants, we used the site-directed mutagenesis service offered by GenScript (New Jersey, USA). These twenty OCT1 variants are in a pcDNA3.1(+)-GFP (C-terminal) vector. For all the constructs, Sanger sequencing was used to confirm Get A Quote

摘要

SummaryMutations in transporters can impact an individual s response to drugs and cause many diseases. Few variants in transporters have been evaluated for their functional impact. Here, we combine saturation mutagenesis and multi-phenotypic screening to dissect the impact of 11,213 missense, single amino acid deletions, and synonymous variants across the 554 residues of OCT1, a key liver xenobiotic transporter. By quantifying in parallel expression and substrate uptake, we find that most variants exert their primary effect on protein abundance, a phenotype not commonly measured alongside function. Using our mutagenesis results combined with structure prediction and molecular dynamic simulations, we develop acc... More

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