N-linked glycosylation and its impact on the electrophoretic mobility and function of the human proton-coupled folate transporter (HsPCFT)

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Abstract

The human proton-coupled folate transporter (HsPCFT, SLC46A1) mediates intestinal absorption of folates and transport of folates into the liver, brain and other tissues. On Western blot, HsPCFT migrates as a broad band (~ 55 kDa), higher than predicted (~ 50 kDa) in cell lines. Western blot analysis required that membrane preparations not be incubated in the loading buffer above 50 °C to avoid aggregation of the protein. Treatment of membrane fractions from HsPCFT-transfected HeLa cells with peptidyl N-glycanase F, or cells with tunicamycin, resulted in conversion to a ~ 35 kDa species. Substitution of asparagine residues of two canonical glycosylation sites to glutamine, individually, yielded a ~ 47 kDa protein; substitution of both sites gave a smaller (~ 35 kDa) protein. Single mutants retained full transport activity; the double mutant retained a majority of activity. Transport function and molecular size were unchanged when the double mutant was hemagglutinin (HA) tagged at either the NH2 or COOH terminus and probed with an anti-HA antibody excluding degradation of the deglycosylated protein. Wild-type or deglycosylated HsPCFT HA, tagged at amino or carboxyl termini, could only be visualized on the plasma membrane when HeLa cells were first permeabilized, consistent with the intracellular location of these domains.

Abbreviations

RFC
reduced folate carrier
PCFT
proton-coupled folate transporter
SLC
solute carrier family
TMDs
transmembrane domains
PNGaseF
peptide-N4-(N-acetyl-β-d-glucosaminyl)asparagine amidase F
Endo H
endo-β-N-acetylglucosaminidase H
MTX
methotrexate
DTT
dithiothreitol
SDS-PAGE
sodium dodecyl sulfate polyacrylamide gel electrophoresis
OMIM
Online Mendelian Inheritance in Man

Keywords

PCFT, proton-coupled folate transporter
HCP1
PCFT/HCP1
PCFT glycosylation
Folate transport
Intestinal folate absorption
PCFT secondary structure
Hereditary folate malabsorption (HFM)
SLC46A1

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Data in this paper are from Ersin S. Unal's thesis to be submitted in partial fulfillment of the requirements for the Degree of Doctor of Philosophy in the Graduate Division of Medical Sciences, Albert Einstein College of Medicine, Yeshiva University.This work was supported by a grant from the National Institutes of Health (CA-082621).