Elevated expression of the metabolic regulator receptor-interacting protein 140 results in cardiac hypertrophy and impaired cardiac function
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Accepted version
Supporting information
Author(s)
Type
Journal Article
Abstract
Aims Receptor-interacting protein 140 (RIP140) is a ligand-dependent cofactor for nuclear receptors that regulate networks of genes involved in cellular processes, including metabolism. An important role for RIP140 in metabolic control has been identified in RIP140 null mice, whose phenotypes include derepression of genes involved in energy mobilization or catabolism in adipocytes and a switch to more oxidative fibres in skeletal muscle. We hypothesized that ubiquitous expression of RIP140 would suppress metabolic processes, leading to defects in development or cellular function.
Methods and results The primary effect of exogenous expression of RIP140 mRNA (real-time PCR) and protein (western blotting) in transgenic mice is impaired postnatal heart function. There was rapid onset of cardiac hypertrophy and ventricular fibrosis, detected microscopically, in male RIP140 transgenic mice from 4 weeks of age, resulting in 25% mortality by 5 months. RIP140 exogenous expression in the heart leads to decreased mitochondria state III and state IV membrane potential and oxygen consumption. Quantitative PCR showed more than 50% reduced expression of genes involved in mitochondrial activity and fatty acid metabolism, including mitochondrial transcription factor A, cytochrome oxidase VIIa, cytochrome XII, CD36, medium-chain acyl dehydrogenase, and fatty acid transport protein, many of which are known targets for nuclear receptors, including peroxisome proliferator-activated receptors PPARα and PPARδ and oestrogen-related receptors ERRα and ERRγ.
Conclusion This study demonstrates that RIP140 is an important cofactor in postnatal cardiac function and that inhibition of the action of RIP140 may provide a model system to investigate specific interventions designed to prevent or delay the onset of cardiac disease.
Methods and results The primary effect of exogenous expression of RIP140 mRNA (real-time PCR) and protein (western blotting) in transgenic mice is impaired postnatal heart function. There was rapid onset of cardiac hypertrophy and ventricular fibrosis, detected microscopically, in male RIP140 transgenic mice from 4 weeks of age, resulting in 25% mortality by 5 months. RIP140 exogenous expression in the heart leads to decreased mitochondria state III and state IV membrane potential and oxygen consumption. Quantitative PCR showed more than 50% reduced expression of genes involved in mitochondrial activity and fatty acid metabolism, including mitochondrial transcription factor A, cytochrome oxidase VIIa, cytochrome XII, CD36, medium-chain acyl dehydrogenase, and fatty acid transport protein, many of which are known targets for nuclear receptors, including peroxisome proliferator-activated receptors PPARα and PPARδ and oestrogen-related receptors ERRα and ERRγ.
Conclusion This study demonstrates that RIP140 is an important cofactor in postnatal cardiac function and that inhibition of the action of RIP140 may provide a model system to investigate specific interventions designed to prevent or delay the onset of cardiac disease.
Date Issued
2010-06-01
Date Acceptance
2009-12-21
Citation
Cardiovascular Research, 2010, 86 (3), pp.443-451
ISSN
1755-3245
Publisher
Oxford University Press (OUP)
Start Page
443
End Page
451
Journal / Book Title
Cardiovascular Research
Volume
86
Issue
3
Copyright Statement
This is a pre-copyedited, author-produced PDF of an article accepted for publication in Cardiovascular Research following peer review. The version of record 'Elevated expression of the metabolic regulator receptor-interacting protein 140 results in cardiac hypertrophy and impaired cardiac function' Asmaà Fritah, Jennifer H. Steel, Donna Nichol, Nadeene Parker, Sharron Williams, Anthony Price, Leena Strauss, Timothy A. Ryder, Margaret A. Mobberley, Matti Poutanen, Malcolm Parker, Roger White 443-451 is available online at:https://dx.doi.org/10.1093/cvr/cvp418
Subjects
Science & Technology
Life Sciences & Biomedicine
Cardiac & Cardiovascular Systems
Cardiovascular System & Cardiology
CARDIAC & CARDIOVASCULAR SYSTEMS
RIP140
Nuclear receptors
Cardiac hypertrophy
Mitochondria
Transgenic mice
PROLIFERATOR-ACTIVATED RECEPTOR
FATTY-ACID OXIDATION
ALPHA PPAR-ALPHA
COREPRESSOR RIP140
ESTROGEN-RECEPTOR
NUCLEAR RECEPTORS
SKELETAL-MUSCLE
GENE-EXPRESSION
HEART-FAILURE
ENERGY-METABOLISM
Publication Status
Published