Apical/Basolateral Surface Expression of Drug Transporters and its Role in Vectorial Drug Transport
- 22 September 2005
- journal article
- review article
- Published by Springer Nature in Pharmaceutical Research
- Vol. 22 (10) , 1559-1577
- https://doi.org/10.1007/s11095-005-6810-2
Abstract
It is well known that transporter proteins play a key role in governing drug absorption, distribution, and elimination in the body, and, accordingly, they are now considered as causes of drug–drug interactions and interindividual differences in pharmacokinetic profiles. Polarized tissues directly involved in drug disposition (intestine, kidney, and liver) and restricted distribution to naive sanctuaries (blood–tissue barriers) asymmetrically express a variety of drug transporters on the apical and basolateral sides, resulting in vectorial drug transport. For example, the organic anion transporting polypeptide (OATP) family on the sinusoidal (basolateral) membrane and multidrug resistance-associated protein 2 (MRP2/ABCC2) on the apical bile canalicular membrane of hepatocytes take up and excrete organic anionic compounds from blood to bile. Such vectorial transcellular transport is fundamentally attributable to the asymmetrical distribution of transporter molecules in polarized cells. Besides the apical/basolateral sorting direction, distribution of the transporter protein between the membrane surface (active site) and the intracellular fraction (inactive site) is of practical importance for the quantitative evaluation of drug transport processes. The most characterized drug transporter associated with this issue is MRP2 on the hepatocyte canalicular (apical) membrane, and it is linked to a genetic disease. Dubin–Johnson syndrome is sometimes caused by impaired canalicular surface expression of MRP2 by a single amino acid substitution. Moreover, single nucleotide polymorphisms in OATP-C/SLC21A6 (SLCO1B1) also affect membrane surface expression, and actually lead to the altered pharmacokinetic profile of pravastatin in healthy subjects. In this review article, the asymmetrical transporter distribution and altered surface expression in polarized tissues are discussed.Keywords
This publication has 200 references indexed in Scilit:
- ABCG2 – a transporter for all seasonsFEBS Letters, 2004
- Tumor Necrosis Factor α-dependent Up-regulation of Lrh-1 and Mrp3(Abcc3) Reduces Liver Injury in Obstructive CholestasisJournal of Biological Chemistry, 2003
- Identification of Domains Participating in the Substrate Specificity and Subcellular Localization of the Multidrug Resistance Proteins MRP1 and MRP2Journal of Biological Chemistry, 2003
- Role of the N-terminal Transmembrane Region of the Multidrug Resistance Protein MRP2 in Routing to the Apical Membrane in MDCKII CellsPublished by Elsevier ,2002
- Identification and Functional Analysis of Two Novel Mutations in the Multidrug Resistance Protein 2 Gene in Israeli Patients with Dubin-Johnson SyndromeJournal of Biological Chemistry, 2001
- ERM-Merlin and EBP50 Protein Families in Plasma Membrane Organization and FunctionAnnual Review of Cell and Developmental Biology, 2000
- Changes in the Localization of the Rat Canalicular Conjugate Export Pump Mrp2 in Phalloidin–Induced CholestasisHepatology, 1999
- Identification of Thyroid Hormone TransportersBiochemical and Biophysical Research Communications, 1999
- Membrane Localization of the Electrogenic Cation Transporter rOCT1 in Rat LiverBiochemical and Biophysical Research Communications, 1998
- Ontogenic expression of the Na+-independent organic anion transporting polypeptide (oatp) in rat liver and kidneyJournal of Hepatology, 1996