Literature DB >> 11714844

Fasting-induced changes in the expression of genes controlling substrate metabolism in the rat heart.

K A Van der Lee1, P H Willemsen, S Samec, J Seydoux, A G Dulloo, M M Pelsers, J F Glatz, G J Van der Vusse, M Van Bilsen.   

Abstract

During fasting, when overall metabolism changes, the contribution of glucose and fatty acids (FA) to cardiac energy production alters as well. Here, we examined if the heart is able to adapt to such fasting-induced changes by modulation of its gene expression. Rats were fed ad libitum or fasted for 46 h, resulting in reduced circulating glucose levels and a 3-fold rise in FA. Besides changes in the cardiac activity or content of proteins involved in glucose or FA metabolism, mRNA levels also altered. The cardiac expression of genes coding for glucose-handling proteins (glucose transporter GLUT4, hexokinase I and II) was up to 70% lower in fasted than in fed rats. In contrast, the mRNA levels of various genes involved in FA transport and metabolism (FA translocase/CD36, muscle-type carnitine palmitoyl transferase 1, long-chain acyl-CoA dehydrogenase) and of the uncoupling protein UCP-3 increased over 50% in hearts of fasted rats. Surprisingly, mRNA levels of the fatty acid- activated transcription factors PPARalpha and PPARbeta/delta were reduced in hearts of fasted rats, whereas in livers, fasting led to a marked rise in PPARalpha mRNA. Reducing FA levels by nicotinic acid administration during the final 8 h of fasting did not affect the expression of the majority of metabolic genes, but totally abolished the induction of UCP-3. In conclusion, the adult rat heart responds to changes in nutritional status, as provoked by 46 h fasting, through adjustment of glucose as well as FA metabolism at the level of gene expression.

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Year:  2001        PMID: 11714844

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


  10 in total

Review 1.  Critical steps in cellular fatty acid uptake and utilization.

Authors:  Ger J van der Vusse; Marc van Bilsen; Jan F C Glatz; Danny M Hasselbaink; Joost J F P Luiken
Journal:  Mol Cell Biochem       Date:  2002-10       Impact factor: 3.396

Review 2.  Peroxisome proliferator-activated receptors: lipid binding proteins controling gene expression.

Authors:  Marc van Bilsen; Ger J van der Vusse; Andries J Gilde; Martijn Lindhout; Karin A J M van der Lee
Journal:  Mol Cell Biochem       Date:  2002-10       Impact factor: 3.396

3.  Gene expression in human skeletal muscle: alternative normalization method and effect of repeated biopsies.

Authors:  Carsten Lundby; Nikolai Nordsborg; Keiko Kusuhara; Kristina Møller Kristensen; P Darrell Neufer; Henriette Pilegaard
Journal:  Eur J Appl Physiol       Date:  2005-10-27       Impact factor: 3.078

4.  Molecular cloning and gene/protein expression of FAT/CD36 from grass carp (Ctenopharyngodon idella) and the regulation of its expression by dietary energy.

Authors:  Juan Tian; Wei Liu; Weihua Gao; Fan Wu; Lijuan Yu; Xing Lu; Chang-Geng Yang; Ming Jiang; Hua Wen
Journal:  Fish Physiol Biochem       Date:  2017-01-18       Impact factor: 2.794

5.  Differential regulation of metabolic genes in skeletal muscle during starvation and refeeding in humans.

Authors:  Kostas Tsintzas; Kirsty Jewell; Mo Kamran; David Laithwaite; Tantip Boonsong; Julie Littlewood; Ian Macdonald; Andrew Bennett
Journal:  J Physiol       Date:  2006-06-08       Impact factor: 5.182

6.  Evaluation of the role of peroxisome-proliferator-activated receptor alpha in the regulation of cardiac pyruvate dehydrogenase kinase 4 protein expression in response to starvation, high-fat feeding and hyperthyroidism.

Authors:  Mark J Holness; Nicholas D Smith; Karen Bulmer; Teresa Hopkins; Geoffrey F Gibbons; Mary C Sugden
Journal:  Biochem J       Date:  2002-06-15       Impact factor: 3.857

7.  Gene expression changes controlling distinct adaptations in the heart and skeletal muscle of a hibernating mammal.

Authors:  Katie L Vermillion; Kyle J Anderson; Marshall Hampton; Matthew T Andrews
Journal:  Physiol Genomics       Date:  2015-01-08       Impact factor: 3.107

8.  High-fat feeding in cardiomyocyte-restricted PPARdelta knockout mice leads to cardiac overexpression of lipid metabolic genes but fails to rescue cardiac phenotypes.

Authors:  Yuquan Li; Lihong Cheng; Qianhong Qin; Jian Liu; Woo-kuen Lo; Lowrence A Brako; Qinglin Yang
Journal:  J Mol Cell Cardiol       Date:  2009-07-09       Impact factor: 5.000

9.  Differential regulation of the expressions of the PGC-1α splice variants, lipins, and PPARα in heart compared to liver.

Authors:  Bernard P C Kok; Jason R B Dyck; Thurl E Harris; David N Brindley
Journal:  J Lipid Res       Date:  2013-03-16       Impact factor: 5.922

Review 10.  Mitochondrial oxidative metabolism and uncoupling proteins in the failing heart.

Authors:  Alexander T Akhmedov; Vitalyi Rybin; José Marín-García
Journal:  Heart Fail Rev       Date:  2015-03       Impact factor: 4.214

  10 in total

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