This proposal focuses on the function and expression of MRP2 (ABCC2), the ABC transporter that mediates the biliary excretion of glucuronide and glutathione conjugates from the hepatocyte into bile. The proposal builds on our findings that 1) MRP2 transports tauroursodeoxycholate (TUDC), a bile acid used for the treatment of cholestatic liver disease, including intrahepatic cholestasis of pregnancy (ICP), 2) estradiol-17[3- D-glucuronide (E217G) causes increased permeability of the hepatocellular tight junction that coincides with endocytic retrieval of MRP2 and the bile salt export pump (BSEP) from the canalicular membrane and decreased bile flow, and 3) identification of upstream open reading frames (uORF) in the 5'leader sequences of rat,human and mouse MRP2.
Aim 1 will characterize MRP2-mediated transport of hydrophilic bile acids, including TUDC, (3-muricholicacid and tetrahydroxy bile acids, and the importance of heterotropic and homotropic activation in their transport. We will also examine the ability of MRP2 variants to transport these bile acids. We will use an MRP2 baculovirus expression system in Sf9 cells to characterize transport.
Aim 2 will determine the role of protein kinase C (PKC) and tight junction permeability in E217G-induced cholestasis. We will test the hypothesis that E217G disrupts hepatocyte tight junctions in a PKC-dependent manner that coincides with endocytic retrieval of key transporters, MRP2 and BSEP, from the canalicular membrane, leading to cholestasis. We will use 4 model systems to test this hypothesis: in vivo studies in the rat, the isolated perfused rat liver, isolated rat hepatocyte couplets, and HepG2 cells coupled with confocal fluorescence and electron microscopy, to monitor the localization of transporters and tight junction proteins after treatment with E217G and in the presence and absence of PKC inhibitors.
Aim 3 will characterize the importance of the uORF in rat,human and mouse MRP2 mRNA on the translational regulation of MRP2 protein. We will characterize the differential tissue expression of MRP2 mRNA transcripts expressing the uORF and use site-directed mutagenesis to disrupt the uORF coupled with in vitro translation assays to investigate the importance of leaky scanning and the sequence of the peptide encoded by the uORF in regulating translation of Mrp2/MRP2. We will also determine whether the peptide encoded by the rat uORF is expressed in vivo. Significance: MRP2 is critical for elimination of polar metabolites from liver and kidney, as well decreasing the intestinal absorption of dietary carcinogensand its expression in liver is decreasedin pregnancy. Characterization of mechanisms of regulation of the activity, localization and expression of MRP2 can lead to improved drug therapy for women in pregnancy and development of therapeutic measures to increase MRP2 function in cholestatic liver disease, particularly in ICP.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Project (R01)
Project #
5R01HD058299-27
Application #
7548117
Study Section
Xenobiotic and Nutrient Disposition and Action Study Section (XNDA)
Program Officer
Zajicek, Anne
Project Start
1979-09-30
Project End
2010-11-30
Budget Start
2008-12-01
Budget End
2009-11-30
Support Year
27
Fiscal Year
2009
Total Cost
$330,211
Indirect Cost
Name
University of Kentucky
Department
Pharmacology
Type
Schools of Medicine
DUNS #
939017877
City
Lexington
State
KY
Country
United States
Zip Code
40506
Ruiz, Maria L; Mottino, Aldo D; Catania, Viviana A et al. (2013) Hormonal regulation of hepatic drug biotransformation and transport systems. Compr Physiol 3:1721-40
Villanueva, Silvina S M; Perdomo, Virginia G; Ruiz, Maria L et al. (2012) Effect of glucagon-like peptide 2 on hepatic, renal, and intestinal disposition of 1-chloro-2,4-dinitrobenzene. Drug Metab Dispos 40:1252-8
Megaraj, Vandana; Zhao, Tianyong; Paumi, Christian M et al. (2011) Functional analysis of nonsynonymous single nucleotide polymorphisms of multidrug resistance-associated protein 2 (ABCC2). Pharmacogenet Genomics 21:506-15
Megaraj, Vandana; Iida, Takashi; Jungsuwadee, Paiboon et al. (2010) Hepatobiliary disposition of 3alpha,6alpha,7alpha,12alpha-tetrahydroxy-cholanoyl taurine: a substrate for multiple canalicular transporters. Drug Metab Dispos 38:1723-30
Zhang, Yuanyuan; Zhao, Tianyong; Li, Wei et al. (2010) The 5'-untranslated region of multidrug resistance associated protein 2 (MRP2; ABCC2) regulates downstream open reading frame expression through translational regulation. Mol Pharmacol 77:237-46
Crocenzi, Fernando A; Sanchez Pozzi, Enrique J; Ruiz, Maria Laura et al. (2008) Ca(2+)-dependent protein kinase C isoforms are critical to estradiol 17beta-D-glucuronide-induced cholestasis in the rat. Hepatology 48:1885-95