Interaction of Organic Cations with a Newly Identified Plasma Membrane Monoamine Transporter

@article{Engel2005InteractionOO,
  title={Interaction of Organic Cations with a Newly Identified Plasma Membrane Monoamine Transporter},
  author={Karen Engel and Joanne Wang},
  journal={Molecular Pharmacology},
  year={2005},
  volume={68},
  pages={1397 - 1407}
}
Many endogenous compounds and xenobiotics are organic cations that rely on polyspecific organic cation transporters (OCTs) to traverse cell membranes. We recently cloned a novel human plasma membrane monoamine transporter (PMAT) that belongs to the equilibrative nucleoside transporter (ENT) family. We have reported previously that, unlike other ENTs, PMAT (also known as ENT4) is a Na+-independent and membrane potential-sensitive transporter that transports monoamine neurotransmitters and the… 

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Substrates and Inhibitors of Organic Cation Transporters (OCTs) and Plasma Membrane Monoamine Transporter (PMAT) and Therapeutic Implications.
  • H. Bönisch
  • Biology
    Handbook of experimental pharmacology
  • 2021
TLDR
All known drugs acting as substrates or inhibitors of these four organic cation transporters, independently of whether the transporter is expressed in the central nervous system (CNS) or in peripheral tissues are discussed.
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References

SHOWING 1-10 OF 37 REFERENCES
Organic cation transporters.
TLDR
This review provides a survey of cloned organic cation transporters and tentative models that illustrate how different types of organic cations, expressed at specific subcellular sites in hepatocytes and renal proximal tubular cells, are assembled into an integrated functional framework.
Identity of the Organic Cation Transporter OCT3 as the Extraneuronal Monoamine Transporter (uptake2) and Evidence for the Expression of the Transporter in the Brain*
TLDR
The transport characteristics and steroid sensitivity provide strong evidence for the molecular identity of OCT3 as uptake2, and regional distribution studies with in situ hybridization show that OCT3 is expressed widely in different brain regions, especially in the hippocampus, cerebellum, and cerebral cortex.
Selective substrates for non-neuronal monoamine transporters.
TLDR
Selective transport substrates were identified that allow, by analogy to receptor agonists, functional discrimination of these transporters and reveal key differences in solute recognition and turnover and thus challenge the concept of "polyspecific" organic cation transporter.
The interaction of n-tetraalkylammonium compounds with a human organic cation transporter, hOCT1.
TLDR
The interaction of a series of n-tetraalkylammonium (n-TAA) compounds with hOCT1 in a transiently transfected human cell line, HeLa, suggests that a balance between hydrophobic and hydrophilic properties is necessary for binding and subsequent translocation by hO CT1.
Identification and Characterization of a Novel Monoamine Transporter in the Human Brain*
TLDR
Cl cloning and characterization of a new human plasma membrane monoamine transporter, PMAT, are reported and demonstrate that PMAT may be a novel low affinity transporter for biogenic amines, which, under certain conditions, might supplement the role of the high affinity transporters in the brain.
Pharmacological and Physiological Functions of the Polyspecific Organic Cation Transporters: OCT1, 2, and 3 (SLC22A1-3)
TLDR
The recent identification of polymorphic genetic variants of human OCT1 and OCT2 that severely affect transport activity suggests that some of the interpatient differences in response and sensitivity to cationic drugs may be caused by variable activity of these transporters.
Role of organic cation transporters in the renal secretion of nucleosides.
Cloning and functional expression of a human liver organic cation transporter.
TLDR
The functional expression of hOCT1 will provide a powerful tool for elucidation of the mechanisms of organic cation transport in the human liver and understanding of the mechanism involved in the disposition and hepatotoxicity of drugs.
Cloning and characterization of two human polyspecific organic cation transporters.
TLDR
Cl cloning and characterization of two homologous transporters from man (hOCT1 and hOCT2) displaying approximately 80% amino acid identity to rOCT 1 and rO CT2 are reported, respectively.
A Reevaluation of Substrate Specificity of the Rat Cation Transporter rOCT1*
TLDR
The voltage dependence observed for the quinine- or quinidine-induced inward currents in rOCT1-expressing oocytes, and tracer efflux measurements indicate that the inward currents by type 2 cations are generated by the inhibition of electrogenic efflux of transported type 1 cations.
...
1
2
3
4
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