Literature DB >> 2172249

ATP-dependent primary active transport of cysteinyl leukotrienes across liver canalicular membrane. Role of the ATP-dependent transport system for glutathione S-conjugates.

T Ishikawa1, M Müller, C Klünemann, T Schaub, D Keppler.   

Abstract

The liver is the major organ which eliminates leukotriene C4 (LTC4) and other cysteinyl leukotrienes from the blood circulation into bile. Transport of LTC4 was studied using inside-out vesicles enriched in canalicular and sinusoidal membranes from rat liver. The incubation of canalicular membrane vesicles with [3H]LTC4 in the presence of ATP resulted in an uptake of LTC4 into vesicles. The initial rate of ATP-stimulated LTC4 uptake was about 40-fold higher in canalicular than in sinusoidal membrane vesicles. When liver plasma membrane vesicles were incubated in the absence of ATP, an apparent transient uptake of LTC4 was observed which was temperature-dependent and not affected by the osmolarity. This indicates that LTC4 was bound to proteins on the surface of plasma membrane vesicles. Two proteins with relative molecular weights of 17,000 and 25,000 were detected by direct photoaffinity labeling as major LTC4-binding proteins. One protein (Mr 25,000) was ascribed to subunit 1 (Ya) of glutathione S-transferase which was associated with the membrane. LTD4, LTE4, N-acetyl-LTE4, and omega-carboxy-N-acetyl-LTE4 were also transported into liver plasma membrane vesicles in an ATP-dependent manner with initial rates relative to LTC4 (1.0) of 0.46, 0.11, 0.35, and 0.22, respectively. Mutual competition between the cysteinyl leukotrienes and S-(2,4-dinitrophenyl)-glutathione for uptake indicated that they are transported by a common carrier. Apparent Km values of the transport system for LTC4, LTD4, and N-acetyl-LTE4 were 0.25, 1.5, and 5.2 microM, respectively. The ATP-dependent transport of LTC4 into vesicles was not inhibited by doxorubicin, daunorubicin, or verapamil, or by the monoclonal antibody C219, suggesting that the transport system differs from P-glycoprotein. Liver plasma membrane vesicles prepared from mutant rats deficient in the hepatobiliary excretion of cysteinyl leukotrienes lacked the ATP-dependent transport of cysteinyl leukotrienes and S-(2,4-dinitrophenyl)-glutathione. These results demonstrate that the ATP-dependent carrier system is responsible for the transport of cysteinyl leukotrienes and glutathione S-conjugates from the hepatocytes into bile.

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Year:  1990        PMID: 2172249

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  43 in total

Review 1.  The measurement of leukotrienes in human fluids.

Authors:  J Y Westcott
Journal:  Clin Rev Allergy Immunol       Date:  1999 Spring-Summer       Impact factor: 8.667

2.  Quantitative evaluation of capacity-limited hepatobiliary transport based on hepatocellular diffusion model by MULTI(FEM).

Authors:  M Higashimori; K Yamaoka; S Fujitani; T Nakagawa
Journal:  J Pharmacokinet Pharmacodyn       Date:  2001-10       Impact factor: 2.745

3.  ATP-dependent uptake of natural product cytotoxic drugs by membrane vesicles establishes MRP as a broad specificity transporter.

Authors:  S Paul; L M Breuninger; K D Tew; H Shen; G D Kruh
Journal:  Proc Natl Acad Sci U S A       Date:  1996-07-09       Impact factor: 11.205

Review 4.  Pharmacogenomics of the human ABC transporter ABCG2: from functional evaluation to drug molecular design.

Authors:  Toshihisa Ishikawa; Ai Tamura; Hikaru Saito; Kanako Wakabayashi; Hiroshi Nakagawa
Journal:  Naturwissenschaften       Date:  2005-10

5.  Liver and biliary problems in cystic fibrosis.

Authors:  M S Tanner
Journal:  J R Soc Med       Date:  1992       Impact factor: 5.344

Review 6.  MRP subfamily transporters and resistance to anticancer agents.

Authors:  G D Kruh; H Zeng; P A Rea; G Liu; Z S Chen; K Lee; M G Belinsky
Journal:  J Bioenerg Biomembr       Date:  2001-12       Impact factor: 2.945

7.  Evaluation of tumour metabolism and multidrug resistance in patients with treated malignant lymphomas.

Authors:  A Dimitrakopoulou-Strauss; L G Strauss; H Goldschmidt; W J Lorenz; W Maier-Borst; G van Kaick
Journal:  Eur J Nucl Med       Date:  1995-05

8.  Mechanisms of biliary excretion of lithocholate-3-sulfate in Eisai hyperbilirubinemic rats (EHBR).

Authors:  H Takikawa; K Nishikawa; N Sano; M Yamanaka; T Horie
Journal:  Dig Dis Sci       Date:  1995-08       Impact factor: 3.199

9.  Overexpression of the gene encoding the multidrug resistance-associated protein results in increased ATP-dependent glutathione S-conjugate transport.

Authors:  M Müller; C Meijer; G J Zaman; P Borst; R J Scheper; N H Mulder; E G de Vries; P L Jansen
Journal:  Proc Natl Acad Sci U S A       Date:  1994-12-20       Impact factor: 11.205

10.  Magnesium Adenosine 5[prime]-Triphosphate-Energized Transport of Glutathione-S-Conjugates by Plant Vacuolar Membrane Vesicles.

Authors:  Z. S. Li; Y. Zhao; P. A. Rea
Journal:  Plant Physiol       Date:  1995-04       Impact factor: 8.340

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