6533b86efe1ef96bd12cb45c

RESEARCH PRODUCT

Expression of solute carrier 7A4 (SLC7A4) in the plasma membrane is not sufficient to mediate amino acid transport activity.

Annette JanzenDennis StrandSabine WolfEllen I. ClossUrsula MartinéNicole Vékony

subject

TeratocarcinomaAmino Acid Transport System y+Recombinant Fusion ProteinsGreen Fluorescent ProteinsMolecular Sequence DataRetinoic acidBiologyArginineBiochemistryPolymerase Chain ReactionGreen fluorescent proteinchemistry.chemical_compoundXenopus laevisTumor Cells CulturedAnimalsHumansAmino acid transporterAmino Acid SequenceAmino AcidsMolecular BiologyPeptide sequenceDNA Primerschemistry.chemical_classificationMammalsSequence Homology Amino AcidCell MembraneCell BiologySubcellular localizationFusion proteinAmino acidSolute carrier familyKineticsLuminescent ProteinschemistryBiochemistryGlioblastomaSequence AlignmentResearch Article

description

Member 4 of human solute carrier family 7 (SLC7A4) exhibits significant sequence homology with the SLC7 subfamily of human cationic amino acid transporters (hCATs) [Sperandeo, Borsani, Incerti, Zollo, Rossi, Zuffardi, Castaldo, Taglialatela, Andria and Sebastio (1998) Genomics 49, 230–236]. It is therefore often referred to as hCAT-4 even though no convincing transport activity has been shown for this protein. We expressed SLC7A4 in Xenopus laevis oocytes, but could not detect any transport activity for cationic, neutral or anionic amino acids or for the polyamine putrescine. In addition, human glioblastoma cells stably overexpressing a fusion protein between SLC7A4 and the enhanced green fluorescent protein (EGFP) did not exhibit an increased transport activity for l-arginine. The lack of transport activity was not due to a lack of SLC7A4 protein expression in the plasma membrane, as in both cell types SLC7A4-EGFP exhibited a similar subcellular localization and level of protein expression as functional hCAT-EGFP proteins. The expression of SLC7A4 can be induced in NT2 teratocarcinoma cells by treatment with retinoic acid. However, also for this endogenously expressed SLC7A4, we could not detect any transport activity for l-arginine. Our data demonstrate that the expression of SLC7A4 in the plasma membrane is not sufficient to induce an amino acid transport activity in X. laevis oocytes or human cells. Therefore, SLC7A4 is either not an amino acid transporter or it needs additional (protein) factor(s) to be functional.

10.1042/bj20020084https://europepmc.org/articles/PMC1222626/