Literature DB >> 11356172

Peroxisome-proliferator-activated receptors as physiological sensors of fatty acid metabolism: molecular regulation in peroxisomes.

N Latruffe1, M Cherkaoui Malki, V Nicolas-Frances, B Jannin, M C Clemencet, F Hansmannel, P Passilly-Degrace, J P Berlot.   

Abstract

The enzymes required for the beta-oxidation of fatty acyl-CoA are present in peroxisomes and mitochondria. Administration of hypolipidaemic compounds such as clofibrate to rodents leads to an increase in the volume and density of peroxisomes in liver cells. These proliferators also induce simultaneously the expression of genes encoding acyl-CoA oxidase, enoyl-CoA hydratase-hydroxyacyl-CoA dehydrogenase (multifunctional enzyme) and thiolase (3-ketoacyl-CoA thiolase). All these enzymes are responsible for long-chain and very-long-chain fatty acid beta-oxidation in peroxisomes. Similar results were observed when rat hepatocytes, or liver-derived cell lines, were cultured with a peroxisome proliferator. The increased expression of these genes is due to the stimulation of their transcription rate. These results show that the peroxisome proliferators act on the hepatic cells and regulate the transcription through various cellular components and pathways, including peroxisome-proliferator-activated receptor alpha (PPARalpha). After activation by specific ligands, either fibrates or fatty acid derivatives, PPARalpha binds to a DNA response element: peroxisome-proliferator-responsive element (PPRE), which is a direct repeat of the following consensus sequence: TGACCTXTGACCT, found in the promoter region of the target genes. PPARalpha is expressed mainly in liver, intestine and kidney. PPARalpha is a transcriptional factor, which requires other nuclear proteins for function including retinoic acid X receptor (RXRalpha) and other regulatory proteins. From our results and others we suggest the role of PPARalpha in the regulation of the peroxisomal fatty acid beta-oxidation. In this regard, we showed that although PPARalpha binds to thiolase B gene promoter at -681 to -669, a better response is observed with hepatic nuclear factor 4 ("HNf-4"). Moreover, rat liver PPARalpha regulatory activity is dependent on its phosphorylated state. In contrast, a protein-kinase-C-mediated signal transduction pathway seems to be modified by peroxisome proliferators, leading to an increase in the phosphorylation level of specific proteins, some of which have been shown to be involved in the phosphoinositide metabolism.

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Year:  2001        PMID: 11356172     DOI: 10.1042/0300-5127:0290305

Source DB:  PubMed          Journal:  Biochem Soc Trans        ISSN: 0300-5127            Impact factor:   5.407


  8 in total

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Authors:  Pierluigi Ramadori; Daniela Kroy; Konrad L Streetz
Journal:  Hepatobiliary Surg Nutr       Date:  2015-02       Impact factor: 7.293

2.  Chronic treatment with the peroxisome proliferator-activated receptor alpha agonist Wy-14,643 attenuates myocardial respiratory capacity and contractile function.

Authors:  Makhosazane Zungu; Martin E Young; William C Stanley; M Faadiel Essop
Journal:  Mol Cell Biochem       Date:  2009-04-10       Impact factor: 3.396

3.  Overview of an interlaboratory collaboration on evaluating the effects of model hepatotoxicants on hepatic gene expression.

Authors:  Roger G Ulrich; John C Rockett; G Gordon Gibson; Syril D Pettit
Journal:  Environ Health Perspect       Date:  2004-03       Impact factor: 9.031

4.  Activation of PPARα by Oral Clofibrate Increases Renal Fatty Acid Oxidation in Developing Pigs.

Authors:  Yonghui He; Imad Khan; Xiumei Bai; Jack Odle; Lin Xi
Journal:  Int J Mol Sci       Date:  2017-12-08       Impact factor: 5.923

5.  Pharmacologic activation of peroxisome proliferator-activating receptor-α accelerates hepatic fatty acid oxidation in neonatal pigs.

Authors:  Kwanseob Shim; Sheila Jacobi; Jack Odle; Xi Lin
Journal:  Oncotarget       Date:  2018-05-08

6.  Transcriptional analysis of microRNAs related to unsaturated fatty acid synthesis by interfering bovine adipocyte ACSL1 gene.

Authors:  Xupeng Li; Yanbin Bai; Jingsheng Li; Zongchang Chen; Yong Ma; Bingang Shi; Xiangmin Han; Yuzhu Luo; Jiang Hu; Jiqing Wang; Xiu Liu; Shaobin Li; Zhidong Zhao
Journal:  Front Genet       Date:  2022-09-26       Impact factor: 4.772

7.  Clofibrate-induced gene expression changes in rat liver: a cross-laboratory analysis using membrane cDNA arrays.

Authors:  Valerie A Baker; Helen M Harries; Jeff F Waring; Colette M Duggan; Hong A Ni; Robert A Jolly; Lawrence W Yoon; Angus T De Souza; Judith E Schmid; Roger H Brown; Roger G Ulrich; John C Rockett
Journal:  Environ Health Perspect       Date:  2004-03       Impact factor: 9.031

Review 8.  Refocusing Peroxisome Proliferator Activated Receptor-α: A New Insight for Therapeutic Roles in Diabetes.

Authors:  Hannah Seok; Bong Soo Cha
Journal:  Diabetes Metab J       Date:  2013-10       Impact factor: 5.376

  8 in total

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