Literature DB >> 23797899

Divergence between human and murine peroxisome proliferator-activated receptor alpha ligand specificities.

Dhawal P Oswal1, Madhumitha Balanarasimha, Jeannette K Loyer, Shimpi Bedi, Frances L Soman, S Dean Rider, Heather A Hostetler.   

Abstract

Peroxisome proliferator-activated receptor α (PPARα) belongs to the family of ligand-dependent nuclear transcription factors that regulate energy metabolism. Although there exists remarkable overlap in the activities of PPARα across species, studies utilizing exogenous PPARα ligands suggest species differences in binding, activation, and physiological effects. While unsaturated long-chain fatty acids (LCFA) and their thioesters (long-chain fatty acyl-CoA; LCFA-CoA) function as ligands for recombinant mouse PPARα (mPPARα), no such studies have been conducted with full-length human PPARα (hPPARα). The objective of the current study was to determine whether LCFA and LCFA-CoA constitute high-affinity endogenous ligands for hPPARα or whether there exist species differences for ligand specificity and affinity. Both hPPARα and mPPARα bound with high affinity to LCFA-CoA; however, differences were noted in LCFA affinities. A fluorescent LCFA analog was bound strongly only by mPPARα, and naturally occurring saturated LCFA was bound more strongly by hPPARα than mPPARα. Similarly, unsaturated LCFA induced transactivation of both hPPARα and mPPARα, whereas saturated LCFA induced transactivation only in hPPARα-expressing cells. These data identified LCFA and LCFA-CoA as endogenous ligands of hPPARα, demonstrated species differences in binding specificity and activity, and may help delineate the role of PPARα as a nutrient sensor in metabolic regulation.

Entities:  

Keywords:  PPAR; endogenous ligand; fatty acid; long chain fatty acyl-CoA; species differences; transcription factor

Mesh:

Substances:

Year:  2013        PMID: 23797899      PMCID: PMC3735934          DOI: 10.1194/jlr.M035436

Source DB:  PubMed          Journal:  J Lipid Res        ISSN: 0022-2275            Impact factor:   5.922


  36 in total

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2.  trans-Activation of PPARalpha and PPARgamma by structurally diverse environmental chemicals.

Authors:  E K Maloney; D J Waxman
Journal:  Toxicol Appl Pharmacol       Date:  1999-12-01       Impact factor: 4.219

Review 3.  Peroxisomal beta-oxidation and peroxisome proliferator-activated receptor alpha: an adaptive metabolic system.

Authors:  J K Reddy; T Hashimoto
Journal:  Annu Rev Nutr       Date:  2001       Impact factor: 11.848

4.  Estimation of protein secondary structure from circular dichroism spectra: comparison of CONTIN, SELCON, and CDSSTR methods with an expanded reference set.

Authors:  N Sreerama; R W Woody
Journal:  Anal Biochem       Date:  2000-12-15       Impact factor: 3.365

5.  Liver fatty acid-binding protein targets fatty acids to the nucleus. Real time confocal and multiphoton fluorescence imaging in living cells.

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Journal:  J Biol Chem       Date:  2002-05-22       Impact factor: 5.157

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Authors:  Béatrice Desvergne; Liliane Michalik; Walter Wahli
Journal:  Mol Endocrinol       Date:  2004-04-15

Review 7.  Nuclear receptors and the control of metabolism.

Authors:  Gordon A Francis; Elisabeth Fayard; Frédéric Picard; Johan Auwerx
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8.  Liver fatty acid-binding protein colocalizes with peroxisome proliferator activated receptor alpha and enhances ligand distribution to nuclei of living cells.

Authors:  Huan Huang; Olga Starodub; Avery McIntosh; Barbara P Atshaves; Gebre Woldegiorgis; Ann B Kier; Friedhelm Schroeder
Journal:  Biochemistry       Date:  2004-03-09       Impact factor: 3.162

9.  Identification of hepatic transcriptional changes in insulin-resistant rats treated with peroxisome proliferator activated receptor-alpha agonists.

Authors:  K S Frederiksen; E M Wulf; K Wassermann; P Sauerberg; J Fleckner
Journal:  J Mol Endocrinol       Date:  2003-06       Impact factor: 5.098

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Authors:  Maryam Rakhshandehroo; Guido Hooiveld; Michael Müller; Sander Kersten
Journal:  PLoS One       Date:  2009-08-27       Impact factor: 3.240

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  12 in total

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Authors:  Dhawal P Oswal; Gerald M Alter; S Dean Rider; Heather A Hostetler
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Review 3.  The Effect of MUFA-Rich Food on Lipid Profile: A Meta-Analysis of Randomized and Controlled-Feeding Trials.

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4.  Early life exposure to per- and polyfluoroalkyl substances and mid-childhood lipid and alanine aminotransferase levels.

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5.  MUTATIONS IN LIVER X RECEPTOR ALPHA THAT IMPAIR DIMERIZATION AND LIGAND DEPENDENT TRANSACTIVATION.

Authors:  Shimpi Bedi; Heather A Hostetler; Stanley Dean Rider
Journal:  Nucl Receptor Res       Date:  2017

6.  Ligand-regulated heterodimerization of peroxisome proliferator-activated receptor α with liver X receptor α.

Authors:  Madhumitha Balanarasimha; Andrea M Davis; Frances L Soman; S Dean Rider; Heather A Hostetler
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7.  Fatty acid binding profile of the liver X receptor α.

Authors:  Shimpi Bedi; Genesis Victoria Hines; Valery V Lozada-Fernandez; Camila de Jesus Piva; Alagammai Kaliappan; S Dean Rider; Heather A Hostetler
Journal:  J Lipid Res       Date:  2016-12-23       Impact factor: 5.922

Review 8.  Integrated physiology and systems biology of PPARα.

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Journal:  Mol Metab       Date:  2014-03-06       Impact factor: 7.422

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10.  Phosphatidic Acid (PA) can Displace PPARα/LXRα Binding to The EGFR Promoter Causing its Transrepression in Luminal Cancer Cells.

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