1989 McCollum Award lecture. Genetic and hypothalamic mechanisms for obesity--finding the needle in the haystack
Open Access
- 1 November 1989
- journal article
- review article
- Published by Elsevier in The American Journal of Clinical Nutrition
- Vol. 50 (5) , 891-902
- https://doi.org/10.1093/ajcn/50.5.891
Abstract
The elements of a feedback system for regulating body fat stores consists of an afferent limb providing feedback signals to the central controller in the brain, which integrates information from the sensory and autonomic nervous systems with signals from the internal milieu and modulates ingestive behavior and thermogenic components of the adrenergic nervous system. The search for defective mechanisms that produce obesity has utilized animals with genetic, hypothalamic, and dietary types of obesity. In all three cases, obesity is associated with an absolute or relative decrease in the activity of the sympathetic nervous system. Experimental situations associated with reduced activity of the sympathetic nervous system are generally accompanied by increased food intake and vice versa. Hypothalamic obesity results from damage to the ventromedial hypothalamus, which disrupts modulation of the autonomic nervous system by nutrient and hormonal signals. Recessively inherited obesity may result from failure to modulate the steroid-receptor complex interaction with the promoter region of the genome. Impaired acetylation of melanocyte-stimulating hormone (MSH) may be involved in the development of obesity in the obese yellow mouse. In all cases adrenalectomy arrests the progression or reverses the obesity. These findings further strengthen the autonomic and endocrine hypothesis for obesity.Keywords
This publication has 47 references indexed in Scilit:
- Effects of MSH on food intake, body weight and coat color of the yellow obese mouseLife Sciences, 1989
- Diurnal changes in sympathetic activity. Relation to food intake and to insulin injected into the ventromedial or suprachiasmatic nucleus.Journal of Clinical Investigation, 1988
- Body Fat and the Activity of the Autonomic Nervous SystemNew England Journal of Medicine, 1988
- Role of fatty acid oxidation in control of meal patternBehavioral and Neural Biology, 1987
- The effect of d-glucose on the firing rate of glucose-sensitive vagal afferents in the liver in comparison with the effect of 2-deoxy-d-glucoseJournal of the Autonomic Nervous System, 1984
- Adrenalectomy increases norepinephrine turnover in brown adipose tissue of obese (ob/ob) miceLife Sciences, 1984
- Isolation and characterization of the mouse corticotropin‐β‐lipotropin precursor gene and a related pseudogeneFEBS Letters, 1983
- Intraventricular corticotropin-releasing factor enhances behavioral effects of noveltyLife Sciences, 1982
- Regulation of energy balanc: studies on gnetic, hypothalamic and dietary obesityProceedings of the Nutrition Society, 1982
- N-Acetylation Regulates the Behavioral Activity of α-Melanotropin in a Multineurotransmitter NeuronScience, 1982