Pelargonidin activates the AhR and induces CYP1A1 in primary human hepatocytes and human cancer cell lines HepG2 and LS174T
Language English Country Netherlands Media print-electronic
Document type Journal Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov't
Grant support
P42 ES004699
NIEHS NIH HHS - United States
ES04699
NIEHS NIH HHS - United States
PubMed
23419638
PubMed Central
PMC3644221
DOI
10.1016/j.toxlet.2013.01.020
PII: S0378-4274(13)00042-8
Knihovny.cz E-resources
- MeSH
- Transcriptional Activation drug effects MeSH
- Anthocyanins pharmacology MeSH
- Hep G2 Cells MeSH
- Cytochrome P-450 CYP1A1 biosynthesis MeSH
- Enzyme Induction MeSH
- Hepatocytes drug effects enzymology MeSH
- Microsomes, Liver enzymology MeSH
- Kinetics MeSH
- Humans MeSH
- Ligands MeSH
- RNA, Messenger biosynthesis MeSH
- Liver Neoplasms enzymology MeSH
- Polychlorinated Dibenzodioxins pharmacology MeSH
- Primary Cell Culture MeSH
- Promoter Regions, Genetic drug effects MeSH
- Receptors, Aryl Hydrocarbon drug effects metabolism MeSH
- Signal Transduction drug effects MeSH
- Intestinal Neoplasms enzymology MeSH
- Transfection MeSH
- Basic Helix-Loop-Helix Transcription Factors drug effects metabolism MeSH
- Dose-Response Relationship, Drug MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Research Support, N.I.H., Extramural MeSH
- Names of Substances
- AHR protein, human MeSH Browser
- Anthocyanins MeSH
- CYP1A1 protein, human MeSH Browser
- Cytochrome P-450 CYP1A1 MeSH
- Ligands MeSH
- RNA, Messenger MeSH
- pelargonidin MeSH Browser
- Polychlorinated Dibenzodioxins MeSH
- Receptors, Aryl Hydrocarbon MeSH
- Basic Helix-Loop-Helix Transcription Factors MeSH
We examined the effects of anthocyanidins (cyanidin, delphinidin, malvidin, peonidin, petunidin, pelargonidin) on the aryl hydrocarbon receptor (AhR)-CYP1A1 signaling pathway in human hepatocytes, hepatic HepG2 and intestinal LS174T cancer cells. AhR-dependent reporter gene expression in transfected HepG2 cells was increased by pelargonidin in a concentration-dependent manner at 24h. Similarly, pelargonidin induced the expression of CYP1A1 mRNA up to 5-fold in HepG2 and LS174T cells relative to the induction by 5 nM 2,3,7,8-tetrachlorodibenzodioxin (TCDD), the most potent activator of AhR. CYP1A1 and CYP1A2 mRNAs were also increased by pelargonidin in three primary human hepatocytes cultures (approximately 5% of TCDD potency) and the increase in CYP1A1 protein in HepG2 and LS174T cells was comparable to the increase in catalytic activity of CYP1A1 enzyme. Ligand binding analysis demonstrated that pelargonidin was a weak ligand of AhR. Enzyme kinetic analyses using human liver microsomes revealed inhibition of CYP1A1 activity by delphinidin (IC50 78 μM) and pelargonidin (IC50 33 μM). Overall, although most anthocyanidins had no effects on AhR-CYP1A1 signaling, pelargonidin can bind to and activate the AhR and AhR-dependent gene expression, and pelargonidin and delphinidin inhibit the CYP1A1 catalytic activity.
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Abel J, Haarmann-Stemmann T. An introduction to the molecular basics of aryl hydrocarbon receptor biology. Biological chemistry. 2010;391(11):1235–1248. PubMed
Amakura Y, Tsutsumi T, Sasaki K, Nakamura M, Yoshida T, Maitani T. Influence of food polyphenols on aryl hydrocarbon receptor-signaling pathway estimated by in vitro bioassay. Phytochemistry. 2008;69(18):3117–3130. PubMed
Anzenbacher P, Anzenbacherova E. Cytochromes P450 and metabolism of xenobiotics. Cellular and molecular life sciences: CMLS. 2001;58(5–6):737–747. PubMed PMC
Denison MS, Nagy SR. Activation of the aryl hydrocarbon receptor by structurally diverse exogenous and endogenous chemicals. Annual review of pharmacology and toxicology. 2003;43:309–334. PubMed
Denison MS, Rogers JM, Rushing SR, Jones CL, Tetangco SC, Health-Pagliuso S. Analysis of the AhR Receptor Signal Transduction Pathway. In: Maines M, Costa LG, Reed DJ, Sassa S, Sipes IG, editors. Current Protocols in Toxicology. New York: John Wiley and Sons; 2002. pp. 4.8.1–4.8.45. PubMed
Donato MT, Gomez-Lechon MJ, Castell JV. A microassay for measuring cytochrome P450IA1 and P450IIB1 activities in intact human and rat hepatocytes cultured on 96-well plates. Anal Biochem. 1993;213(1):29–33. PubMed
Dvorak Z, Vrzal R, Henklova P, et al. JNK inhibitor SP600125 is a partial agonist of human aryl hydrocarbon receptor and induces CYP1A1 and CYP1A2 genes in primary human hepatocytes. Biochem Pharmacol. 2008;75(2):580–588. PubMed
Frank T, Janssen M, Netzel M, et al. Pharmacokinetics of anthocyanidin-3-glycosides following consumption of Hibiscus sabdariffa L. extract. Journal of clinical pharmacology. 2005;45(2):203–210. PubMed
Hodek P, Trefil P, Stiborova M. Flavonoids-potent and versatile biologically active compounds interacting with cytochromes P450. Chemico-biological interactions. 2002;139(1):1–21. PubMed
Kamenickova A, Dvorak Z. Effects of flavored mineral waters on AhR-CYP1A1 signaling pathway in primary human hepatocytes and in human hepatic and intestinal cancer cells. Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association. 2012;50(6):1933–1939. PubMed
Kamenickova A, Vrzal R, Dvorak Z. Effects of ready to drink teas on AhR- and PXR-mediated expression of cytochromes P450 CYP1A1 and CYP3A4 in human cancer cell lines and primary human hepatocytes. Food Chem. 2012;131(4):1201–1206.
Keppler K, Humpf HU. Metabolism of anthocyanins and their phenolic degradation products by the intestinal microflora. Bioorganic & medicinal chemistry. 2005;13(17):5195–5205. PubMed
Kong JM, Chia LS, Goh NK, Chia TF, Brouillard R. Analysis and biological activities of anthocyanins. Phytochemistry. 2003;64(5):923–933. PubMed
Korashy HM, Anwar-Mohamed A, Soshilov AA, Denison MS, El-Kadi AO. The p38 MAPK inhibitor SB203580 induces cytochrome P450 1A1 gene expression in murine and human hepatoma cell lines through ligand-dependent aryl hydrocarbon receptor activation. Chemical research in toxicology. 2011;24(9):1540–1548. PubMed PMC
Leclercq I, Desager JP, Vandenplas C, Horsmans Y. Fast determination of low-level cytochrome P-450 1A1 activity by high-performance liquid chromatography with fluorescence or visible absorbance detection. Journal of chromatography B, Biomedical applications. 1996;681(2):227–232. PubMed
McGhie TK, Walton MC. The bioavailability and absorption of anthocyanins: towards a better understanding. Molecular nutrition & food research. 2007;51(6):702–713. PubMed
Monostory K, Pascussi JM, Kobori L, Dvorak Z. Hormonal regulation of CYP1A expression. Drug metabolism reviews. 2009;41(4):547–572. PubMed
Mullen W, Edwards CA, Serafini M, Crozier A. Bioavailability of pelargonidin-3-O-glucoside and its metabolites in humans following the ingestion of strawberries with and without cream. Journal of agricultural and food chemistry. 2008;56(3):713–719. PubMed
Novotna A, Pavek P, Dvorak Z. Novel stably transfected gene reporter human hepatoma cell line for assessment of aryl hydrocarbon receptor transcriptional activity: construction and characterization. Environmental science & technology. 2011;45(23):10133–10139. PubMed
Pavek P, Cerveny L, Svecova L, et al. Examination of Glucocorticoid receptor alpha-mediated transcriptional regulation of P-glycoprotein, CYP3A4, and CYP2C9 genes in placental trophoblast cell lines. Placenta. 2007;28(10):1004–1011. PubMed
Pavek P, Dvorak Z. Xenobiotic-induced transcriptional regulation of xenobiotic metabolizing enzymes of the cytochrome P450 superfamily in human extrahepatic tissues. Current drug metabolism. 2008;9(2):129–143. PubMed
Stejskalova L, Dvorak Z, Pavek P. Endogenous and exogenous ligands of aryl hydrocarbon receptor: current state of art. Current drug metabolism. 2011;12(2):198–212. PubMed
Welch CR, Wu Q, Simon JE. Recent Advances in Anthocyanin Analysis and Characterization. Current analytical chemistry. 2008;4(2):75–101. PubMed PMC
Zhang Y, Vareed SK, Nair MG. Human tumor cell growth inhibition by nontoxic anthocyanidins, the pigments in fruits and vegetables. Life sciences. 2005;76(13):1465–1472. PubMed