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Prolonged treatment with a PI3K p110α inhibitor causes sex- and tissue-dependent changes in antioxidant content, but
Christopher P Hedges1,2, Toan Pham1, Bhoopika Shetty1
1Discipline of Nutrition, School of Medical Sciences, University of Auckland, Auckland, New Zealand.
Abstract:
Genetic inhibition of the p110α isoform of phosphatidylinositol-3-kinase (PI3K) can increase murine lifespan, enhance mitochondrial function and alter tissue-specific oxidative balance. Here, we investigated whether pharmacological inhibition of the p110α isoform of PI3K induces similar enhancement of mitochondrial function in middle-aged mice. Eight-month-old male and female mice were fed a diet containing 0.3 g/kg of the p110α-selective inhibitor BYL-719 (BYL) or a vehicle diet (VEH) for 6 weeks. Mice consuming BYL-719 had higher blood glucose and insulin, and tended towards decreased body weight. After 72 h, gene expression of the mitochondrial biogenesis mediators Pgc1α, Tfam and Nrf1 was greater in liver of BYL-719 males only, but unchanged in skeletal muscle of either sex. Six weeks of BYL-719 treatment did not affect mitochondrial content or function in the liver or skeletal muscle of either sex. In livers of males only, the expression of the antioxidant genes Nfe2l2, Cat, Sod1 and Sod2 increased within 72 h of BYL-719 treatment, and remained higher after 6 weeks. This was associated with an increase in hepatic GSH content and catalase protein expression, and lower H2O2 levels. Our results suggest that pharmacological inhibition of p110α in adult mice does not affect liver or skeletal muscle mitochondrial function, but does show sex- and tissue-specific effects on up-regulation of antioxidant response.
Insights
Pharmacological inhibition of p110α with BYL-719 did not enhance mitochondrial function in adult mice. However, it did up-regulate antioxidant responses in male mouse livers, showing sex- and tissue-specific effects.
Area of Science:
- Biochemistry
- Molecular Biology
- Gerontology
Background:
- Genetic inhibition of phosphatidylinositol-3-kinase (PI3K) p110α isoform in mice increases lifespan and enhances mitochondrial function.
- Investigating pharmacological inhibition of PI3K p110α to determine its effects on mitochondrial function in middle-aged mice.
Purpose of the Study:
- To assess the impact of the p110α-selective inhibitor BYL-719 on mitochondrial function in middle-aged mice.
- To examine sex- and tissue-specific responses to pharmacological PI3K p110α inhibition.
Main Methods:
- Middle-aged male and female mice were treated with BYL-719 or vehicle for 6 weeks.
- Mitochondrial function, gene expression (Pgc1α, Tfam, Nrf1, Nfe2l2, Cat, Sod1, Sod2), and oxidative balance markers (GSH, catalase, H2O2) were analyzed in liver and skeletal muscle.
Main Results:
- BYL-719 treatment did not alter mitochondrial content or function in liver or skeletal muscle.
- In male mice livers, BYL-719 increased the expression of antioxidant genes within 72 hours, which persisted after 6 weeks.
- This antioxidant response was associated with increased hepatic GSH and catalase, and decreased H2O2 levels in males.
Conclusions:
- Pharmacological inhibition of p110α does not improve mitochondrial function in adult mouse liver or skeletal muscle.
- BYL-719 induces a sex- and tissue-specific antioxidant response in the liver of male mice.
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