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Published on: March 12, 2021
Constitutive expression of peroxisome proliferator-activated receptor alpha-regulated genes in dwarf mice
Anja J Stauber1, Holly Brown-Borg, Jie Liu
1CIIT Centers for Health Research, Research Triangle Park, North Carolina, USA.
Abstract:
Defects in growth hormone secretion or signaling in mice are associated with decreased body weights (dwarfism), increased longevity, increased resistance to stress, and decreases in factors that contribute to cardiovascular disease and cancer. Peroxisome proliferators (PP) alter a subset of these changes in wild-type mice through activation of the nuclear receptor family member PP-activated receptor alpha (PPARalpha). We tested the hypothesis that an overlap in the transcriptional programs between untreated dwarf mice and PP-treated wild-type mice underlies these similarities. Using transcript profiling, we observed a statistically significant overlap in the expression of genes differentially regulated in control Snell dwarf mice (Pit-1dw) compared with phenotypically normal heterozygote (+/dw) control mice and those altered by the PP 4-chloro-6-(2,3-xylidino)-2-pyrimidinyl)thioacetic acid (WY-14,643) in +/dw mice. The genes included those involved in beta- and omega-oxidation of fatty acids (Acox1, Cyp4a10, Cyp4a14) and those involved in stress responses (the chaperonin, T-complex protein1epsilon) and cardiovascular disease (fibrinogen). The levels of some of these gene products were also altered in other dwarf mouse models, including Ames, Little, and growth hormone receptor-null mice. The constitutive increases in PPARalpha-regulated genes may be partly caused by increased expression of PPARalpha mRNA and protein as observed in the livers of control Snell dwarf mice. These results indicate that some of the beneficial effects associated with the dwarf phenotype may be caused by constitutive activation of PPARalpha and regulated genes.
Insights
Growth hormone deficiency in mice leads to dwarfism and increased longevity. Constitutive activation of PPARalpha in dwarf mice explains shared beneficial traits with peroxisome proliferator-treated mice.
Area of Science:
- Molecular Biology
- Genetics
- Endocrinology
Background:
- Growth hormone (GH) deficiency in mice causes dwarfism, extended lifespan, and reduced disease risk.
- Peroxisome proliferators (PP) mimic some GH deficiency effects via PPARalpha activation.
Purpose of the Study:
- To investigate the overlap in transcriptional programs between dwarf mice and PP-treated mice.
- To determine if PPARalpha activation underlies shared beneficial phenotypes.
Main Methods:
- Transcript profiling of Snell dwarf mice and wild-type mice treated with WY-14,643 (a PP).
- Analysis of gene expression related to fatty acid metabolism, stress response, and cardiovascular disease.
Main Results:
- Significant overlap in gene expression between dwarf mice and PP-treated mice.
- Key genes involved in fatty acid oxidation, stress response, and cardiovascular health were similarly altered.
- PPARalpha mRNA and protein levels were elevated in dwarf mouse livers.
Conclusions:
- Shared beneficial traits of dwarfism and PP treatment stem from overlapping transcriptional programs.
- Constitutive PPARalpha activation likely contributes to the beneficial effects observed in dwarf mice.
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