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PMID: 15151993 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Oligonucleotide microarray analysis reveals PDX1 as an essential regulator of mitochondrial metabolism in rat islets.

The Journal of biological chemistry ·Vol. 279 ·No. 30 ·2004-07-23 ·Pages 31121-30

Gauthier BR, Brun T, Sarret EJ, Ishihara H, Schaad O, Descombes P, Wollheim CB

Abstract

Mutations in the transcription factor IPF1/PDX1 have been associated with type 2 diabetes. To elucidate beta-cell dysfunction, PDX1 was suppressed by transduction of rat islets with an adenoviral construct encoding a dominant negative form of PDX1. After 2 days, there was a marked inhibition of insulin secretion in response to glucose, leucine, and arginine. Increasing cAMP levels with forskolin and isobutylmethylxanthine restored glucose-stimulated insulin secretion, indicating normal capacity for exocytosis. To identify molecular targets implicated in the altered metabolism secretion coupling, DNA microarray analysis was performed on PDX1-deficient and control islets. Of the 2640 detected transcripts, 70 were up-regulated and 56 were down-regulated. Transcripts were subdivided into 12 clusters; the most prevalent were associated with metabolism. Quantitative reverse transcriptase-PCR confirmed increases in succinate dehydrogenase and ATP synthase mRNAs as well as pyruvate carboxylase and the transcript for the malate shuttle. In parallel there was a 50% reduction in mRNA levels for the mitochondrially encoded nd1 gene, a subunit of the NADH dehydrogenase comprising complex I of the mitochondrial respiratory chain. As a consequence, total cellular ATP concentration was drastically decreased by 75%, and glucose failed to augment cytosolic ATP, explaining the blunted glucose-stimulated insulin secretion. Rotenone, an inhibitor of complex I, mimicked this effect. Surprisingly, TFAM, a nuclear-encoded transcription factor important for sustaining expression of mitochondrial genes, was down-regulated in islets expressing DN79PDX1. In conclusion, loss of PDX1 function alters expression of mitochondrially encoded genes through regulation of TFAM leading to impaired insulin secretion.

MeSH Terms
Adenosine Triphosphate/metabolism Adenoviridae/genetics Animals Gene Transfer Techniques Glucose/pharmacology Homeodomain Proteins In Vitro Techniques Insulin/metabolism Insulin Secretion Islets of Langerhans/drug effects,metabolism Male Mitochondria/metabolism Mutation NADH Dehydrogenase/genetics Oligonucleotide Array Sequence Analysis RNA, Messenger/genetics,metabolism Rats Rats, Wistar Trans-Activators/genetics,metabolism Transcription Factors/genetics Transduction, Genetic
Chemicals
Homeodomain Proteins Insulin RNA, Messenger Tfam protein, rat Trans-Activators Transcription Factors pancreatic and duodenal homeobox 1 protein Adenosine Triphosphate NADH Dehydrogenase mt-Nd1 protein, rat Glucose
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Gauthier Benoit R
Department of Cell Physiology and Metabolism and Genomics Platform, National Center of Competence in Research Frontiers in Genetics, University of Geneva, 1211 Geneva 4, Switzerland. benoit.gauthier@medecine.unige.ch
Brun Thierry
Sarret Eve Julie
Ishihara Hisamitsu
Schaad Olivier
Descombes Patrick
Wollheim Claes B
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2004-07-23
Epub
2004-00-19
Pages
31121-30
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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