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Differentiation and Imaging of Brown Adipocytes from the Stromal Vascular Fraction of Interscapular Adipose Tissue from Newborn Mice
Published on: February 3, 2023
Tissue-specific effects of leptin administration on the abundance of mitochondrial proteins during neonatal
M G Gnanalingham1, A Mostyn, J Wang
1Centre for Reproduction and Early Life, Institute of Clinical Research, University of Nottingham, Nottingham NG7 2UH, UK.
Insights
Neonatal lambs treated with leptin showed a decrease in uncoupling protein 2 (UCP2) in the pancreas, but not the brain. This suggests leptin influences neonatal tissue development and metabolic control.
Area of Science:
- Mitochondrial biology
- Neonatal physiology
- Endocrinology
Background:
- Postnatal development involves significant changes in mitochondrial protein function.
- Uncoupling proteins (UCPs) are crucial for tissue function, with abundance changing after birth.
- Leptin's role in regulating UCPs beyond brown adipose tissue is not well understood.
Purpose of the Study:
- To investigate the effects of leptin on mitochondrial protein abundance, specifically UCP2, VDAC, and cytochrome c, in neonatal lamb tissues.
- To determine tissue-specific responses to leptin administration in neonatal lambs.
Main Methods:
- Neonatal lambs received daily jugular venous injections of ovine recombinant leptin or vehicle for six days.
- Mitochondrial protein abundance was assessed using immunoblotting in the brain, pancreas, liver, and skeletal muscle.
- Correlations between UCP2, VDAC, cytochrome c, and colonic temperature were analyzed.
Main Results:
- Leptin administration significantly reduced UCP2 abundance in the pancreas but had no effect in the brain.
- No significant changes in voltage-dependent anion channel (VDAC) or cytochrome c abundance were observed in any tissue.
- In leptin-treated lambs, pancreatic UCP2 correlated positively with VDAC and cytochrome c; brain UCP2 correlated with colonic temperature.
Conclusions:
- Leptin administration induces a tissue-specific reduction of UCP2 in the neonatal lamb pancreas.
- These findings suggest a role for leptin in regulating neonatal tissue development and metabolic homeostasis.
- Further research may elucidate leptin's long-term impact on metabolic control mechanisms.
Abstract:
Many tissues undergo a rapid transition after birth, accompanied by dramatic changes in mitochondrial protein function. In particular, uncoupling protein (UCP) abundance increases at birth in the lung and adipose tissue, to then gradually decline, an adaptation that is important in enabling normal tissue function. Leptin potentially mediates some of these changes and is known to promote the loss of UCP1 from brown fat but its effects on UCP2 and related mitochondrial proteins (i.e. voltage-dependent anion channel (VDAC) and cytochrome c) in other tissues are unknown. We therefore determined the effects of once-daily jugular venous administration of ovine recombinant leptin on mitochondrial protein abundance as determined by immunoblotting in tissues that do (i.e. the brain and pancreas) and do not (i.e. liver and skeletal muscle) express UCP2. Eight pairs of 1-day-old lambs received either 100 mug leptin or vehicle daily for 6 days, before tissue sampling on day 7. Administration of leptin diminished UCP2 abundance in the pancreas, but not the brain. Leptin administration had no affect on the abundance of VDAC or cytochrome c in any tissue examined. In leptin-administered animals, but not controls, UCP2 abundance in the pancreas was positively correlated with VDAC and cytochrome c content, and UCP2 abundance in the brain with colonic temperature. In conclusion, leptin administration to neonatal lambs causes a tissue-specific loss of UCP2 from the pancreas. These effects may be important in the regulation of neonatal tissue development and potentially for optimising metabolic control mechanisms in later life.
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