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AMP-activated Protein Kinase Mediates Apoptosis in Response to Bioenergetic Stress through Activation of the Pro-apoptotic Bcl-2 Homology Domain-3-only Protein BMF
- Source :
- Journal of Biological Chemistry, Vol. 285, No 46 (2010) pp. 36199-206
- Publication Year :
- 2010
- Publisher :
- Elsevier BV, 2010.
-
Abstract
- Heterozygous loss-of-function mutations in the hepatocyte nuclear factor 1A (HNF1A) gene result in the pathogenesis of maturity-onset diabetes-of-the-young type 3, (HNF1A-MODY). This disorder is characterized by a primary defect in metabolism-secretion coupling and decreased beta cell mass, attributed to excessive beta cell apoptosis. Here, we investigated the link between energy stress and apoptosis activation following HNF1A inactivation. This study employed single cell fluorescent microscopy, flow cytometry, gene expression analysis, and gene silencing to study the effects of overexpression of dominant-negative (DN)-HNF1A expression on cellular bioenergetics and apoptosis in INS-1 cells. Induction of DN-HNF1A expression led to reduced ATP levels and diminished the bioenergetic response to glucose. This was coupled with activation of the bioenergetic stress sensor AMP-activated protein kinase (AMPK), which preceded the onset of apoptosis. Pharmacological activation of AMPK using aminoimidazole carboxamide ribonucleotide (AICAR) was sufficient to induce apoptosis in naive cells. Conversely, inhibition of AMPK with compound C or AMPKα gene silencing protected against DN-HNF1A-induced apoptosis. Interestingly, AMPK mediated the induction of the pro-apoptotic Bcl-2 homology domain-3-only protein Bmf (Bcl-2-modifying factor). Bmf expression was also elevated in islets of DN-HNF1A transgenic mice. Furthermore, knockdown of Bmf expression in INS-1 cells using siRNA was sufficient to protect against DN-HNF1A-induced apoptosis. Our study suggests that overexpression of DN-HNF1A induces bioenergetic stress and activation of AMPK. This in turn mediates the transcriptional activation of the pro-apoptotic Bcl-2-homology protein BMF, coupling prolonged energy stress to apoptosis activation.
- Subjects :
- Adenosine Triphosphate/metabolism
Insulinoma/genetics/metabolism/pathology
Apoptosis
AMP-Activated Protein Kinases
Biochemistry
Hepatocyte Nuclear Factor 1-alpha/genetics/metabolism
Mice
Adenosine Triphosphate
AMP-activated protein kinase
Ribonucleotides/pharmacology
Hepatocyte Nuclear Factor 1-alpha
Regulation of gene expression
Gene knockdown
biology
Reverse Transcriptase Polymerase Chain Reaction
Molecular Bases of Disease
Flow Cytometry
Adaptor Proteins, Signal Transducing/genetics/metabolism
Gene Expression Regulation, Neoplastic
Apoptosis/drug effects/physiology
Doxycycline
Enzyme Activation/drug effects
RNA Interference
Signal transduction
Protein Subunits/genetics/metabolism
endocrine system
Energy Metabolism/drug effects/physiology
Blotting, Western
Mice, Transgenic
Doxycycline/pharmacology
Hypoglycemic Agents/pharmacology
Cell Line, Tumor
Animals
Hypoglycemic Agents
Gene silencing
ddc:612
Protein kinase A
Molecular Biology
Adaptor Proteins, Signal Transducing
AMPK
Cell Biology
Ribonucleotides
Aminoimidazole Carboxamide
Molecular biology
Rats
Enzyme Activation
Mice, Inbred C57BL
Protein Subunits
AMP-Activated Protein Kinases/genetics/metabolism
Gene Expression Regulation, Neoplastic/drug effects
biology.protein
Insulinoma
Aminoimidazole Carboxamide/analogs & derivatives/pharmacology
Energy Metabolism
Subjects
Details
- ISSN :
- 00219258
- Volume :
- 285
- Database :
- OpenAIRE
- Journal :
- Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....7fc43ccbd11d59c672b8fc51607d7a22