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Maternal high-fat diet induces metabolic stress response disorders in offspring hypothalamus
Long The Nguyen1, Sonia Saad1, Yi Tan2
1Kolling InstituteRoyal North Shore Hospital, University of Sydney, Sydney, New South Wales, Australia.
Insights
Maternal obesity leads to offspring metabolic issues, impacting appetite regulators and endoplasmic reticulum (ER) stress. Treating offspring with 4-phenylbutyrate (PBA) improved metabolic health, suggesting ER stress and mitophagy are key factors.
Area of Science:
- Endocrinology
- Metabolic disorders
- Neuroscience
Background:
- Maternal obesity increases offspring risk for obesity and metabolic disorders.
- Hypothalamic appetite regulators are implicated in these transgenerational effects.
- Endoplasmic reticulum (ER) stress and autophagy may mediate these changes.
Purpose of the Study:
- To investigate the role of ER stress and autophagy in the hypothalamus of offspring from obese mothers.
- To determine if interventions targeting ER stress can ameliorate metabolic dysfunction in offspring.
Main Methods:
- Offspring from high-fat diet-fed dams were assessed for metabolic parameters and hypothalamic gene/protein expression.
- Expression of appetite regulators, ER stress markers, and autophagy-related proteins were analyzed.
- Offspring were treated with 4-phenylbutyrate (PBA) to assess its effects on metabolic health and molecular markers.
Main Results:
- Offspring exhibited increased body weight, glucose intolerance, adiposity, and altered hypothalamic neuropeptide Y (NPY) and pro-opiomelanocortin (POMC) levels.
- Reduced expression of ER stress markers (GRP94, Erdj4) and altered autophagy markers (Atg5, Atg7, Parkin) were observed.
- PBA treatment reduced body weight and fat deposition, associated with normalized ER stress and mitophagy markers.
Conclusions:
- Hypothalamic ER stress and mitophagy are implicated in metabolic alterations in offspring of obese mothers.
- Targeting ER stress pathways, such as with PBA, may offer therapeutic potential for preventing or treating offspring metabolic disorders.
Abstract:
Maternal obesity has been shown to increase the risk of obesity and related disorders in the offspring, which has been partially attributed to changes of appetite regulators in the offspring hypothalamus. On the other hand, endoplasmic reticulum (ER) stress and autophagy have been implicated in hypothalamic neuropeptide dysregulation, thus may also play important roles in such transgenerational effect. In this study, we show that offspring born to high-fat diet-fed dams showed significantly increased body weight and glucose intolerance, adiposity and plasma triglyceride level at weaning. Hypothalamic mRNA level of the orexigenic neuropeptide Y (NPY) was increased, while the levels of the anorexigenic pro-opiomelanocortin (POMC), NPY1 receptor (NPY1R) and melanocortin-4 receptor (MC4R) were significantly downregulated. In association, the expression of unfolded protein response (UPR) markers including glucose-regulated protein (GRP)94 and endoplasmic reticulum DNA J domain-containing protein (Erdj)4 was reduced. By contrast, protein levels of autophagy-related genes Atg5 and Atg7, as well as mitophagy marker Parkin, were slightly increased. The administration of 4-phenyl butyrate (PBA), a chemical chaperone of protein folding and UPR activator, in the offspring from postnatal day 4 significantly reduced their body weight, fat deposition, which were in association with increased activating transcription factor (ATF)4, immunoglobulin-binding protein (BiP) and Erdj4 mRNA as well as reduced Parkin, PTEN-induced putative kinase (PINK)1 and dynamin-related protein (Drp)1 protein expression levels. These results suggest that hypothalamic ER stress and mitophagy are among the regulatory factors of offspring metabolic changes due to maternal obesity.
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