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Transmembrane segment 5 of the dipeptide transporter hPepT1 forms a part of the substrate translocation pathway
Authors:Kulkarni Ashutosh A  Haworth Ian S  Lee Vincent H L
Affiliation:Department of Pharmaceutical Sciences, University of Southern California, Los Angeles, CA 90089-9121, USA.
Abstract:This study is the first systematic attempt to investigate the role of transmembrane segment 5 of hPepT1, the most conserved segment across different species, in forming a part of the aqueous substrate translocation pathway. We used cysteine-scanning mutagenesis in conjunction with the sulfhydryl-specific reagents, MTSEA and MTSET. Neither of these reagents reduced wild-type-hPepT1 transport activity in HEK293 cells and Xenopus oocytes. Twenty-one single cysteine mutations in hPepT1 were created by replacing each residue within TMS5 with a cysteine. HEK293 cells were then transfected with each mutated protein and the steady-state protein level, [3H]Gly-Sar uptake activity, and sensitivity to the MTS reagents were measured. S164C-, L168C-, G173C-, and I179C-hPepT1 were not expressed on the plasma membrane. Y167C-, N171C-, and S174C-hPepT1 showed
Keywords:Cysteine-scanning   Dipeptide   Transporter   MTS   Transmembrane segment   PepT1   Mutagenesis
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