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RESEARCH PRODUCT
Activation of classical protein kinase C reduces the expression of human cationic amino acid transporter 3 (hCAT-3) in the plasma membrane
Ellen I. ClossGünter NiegischDavina GassnerNicole VékonyUrsula MartinéDennis StrandAlexander Rotmannsubject
TeratocarcinomaArginineXenopusDown-RegulationArginineBiochemistryEnzyme activatorAntibody SpecificityCell Line TumorTumor Cells CulturedAnimalsHumansMolecular BiologyProtein Kinase CProtein kinase CCationic Amino Acid Transporter 1Arginine transportbiologyActivator (genetics)Cell MembraneBiological TransportCell BiologyFusion proteinEnzyme ActivationBiochemistryTetradecanoylphorbol AcetateOocytesbiology.proteinTetradecanoylphorbol AcetateCATIONIC AMINO ACID TRANSPORTER 3GlioblastomaResearch Articledescription
We have previously shown that activation of PKC (protein kinase C) results in internalization of hCAT-1 [human CAT-1 (cationic amino acid transporter 1)] and a decrease in arginine transport [Rotmann, Strand, Martiné and Closs (2004) J. Biol. Chem. 279, 54185–54192]. However, others found increased transport rates for arginine in response to PKC activation, suggesting a differential effect of PKC on different CAT isoforms. Therefore we investigated the effect of PKC on hCAT-3, an isoform expressed in thymus, brain, ovary, uterus and mammary gland. In Xenopus laevis oocytes and human U373MG glioblastoma cells, hCAT-3-mediated L-arginine transport was significantly reduced upon treatment with compounds that activate classical PKC. In contrast, inactive phorbol esters and an activator of novel PKC isoforms had no effect. PKC inhibitors (including the PKCα-preferring Ro 31-8280) reduced the inhibitory effect of the PKC-activating compounds. Microscopic analyses revealed a PMA-induced reduction in the cell-surface expression of fusion proteins between hCAT-3 and enhanced green fluorescent protein expressed in X. laevis oocytes and glioblastoma cells. Western-blot analysis of biotinylated surface proteins demonstrated a PMA-induced decrease in hCAT-3 in the plasma membrane, but not in total protein lysates. Pretreatment with a PKC inhibitor also reduced this PMA effect. It is concluded that similar to hCAT-1, hCAT-3 activity is decreased by PKC via reduction of transporter molecules in the plasma membrane. Classical PKC isoforms seem to be responsible for this effect.
year | journal | country | edition | language |
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2005-12-08 | Biochemical Journal |