Related Experiment Videos
NPY-induced overfeeding suppresses hypothalamic NPY mRNA expression: potential roles of plasma insulin and leptin
J E McMinn1, R J Seeley, C W Wilkinson
1Program in Nutritional Science, University of Washington, Seattle 98195, USA.
Abstract:
To test the hypothesis that NPY-induced overfeeding activates compensatory responses that inhibit hypothalamic NPY gene expression, we investigated the effect of chronically administered neuropeptide Y (NPY) on plasma hormones involved in energy balance and on the level of mRNA for hypothalamic neuropeptides. After cannulation of the third cerebral ventricle, male Long-Evans rats received a 4.5-day intracerebroventricular (i.c.v.) infusion of either human NPY (12 microg per day), or synthetic cerebrospinal fluid (CSF). NPY-treated animals were either allowed ad libitum access to food or were pairfed to the intake of CSF-treated controls. In rats fed ad libitum, i.c.v. NPY induced significant increases in food intake (75%), body weight (9%), plasma insulin (150%) and plasma leptin levels (300%) as compared to the i.c.v. CSF group. Levels of plasma leptin, but not insulin, remained elevated in NPY-treated rats that were pairfed to the intake of the CSF group. NPY mRNA levels in the midregion of the arcuate nucleus (ARC) were reduced by 50% in NPY-treated rats that were allowed to overeat, but not in the pairfed group, as determined by in situ hybridization. In contrast, mRNA for corticotropin-releasing hormone (CRH) in the paraventricular nucleus (PVN) and proopiomelanocortin (POMC) in the rostral ARC were not significantly different among groups. These findings indicate that NPY-induced overfeeding suppresses ARC NPY mRNA expression, and that this effect unlikely to be mediated by a direct action of NPY, since it was abolished by limiting food intake in NPY-treated animals to that observed in controls. NPY-induced overfeeding was also associated with elevated plasma levels of leptin and insulin. The effect of these hormones to inhibit NPY gene expression may therefore have contributed to the decrease of NPY mRNA.
Insights
Neuropeptide Y (NPY) overfeeding suppresses NPY gene expression in the hypothalamus, likely mediated by elevated leptin and insulin, not direct NPY action.
Area of Science:
- Neuroendocrinology
- Metabolic Regulation
- Gene Expression Analysis
Background:
- Neuropeptide Y (NPY) is a potent stimulator of feeding behavior.
- The regulation of NPY gene expression in response to overfeeding is not fully understood.
- Compensatory mechanisms may inhibit hypothalamic NPY expression during overfeeding.
Purpose of the Study:
- To investigate the effect of chronic NPY administration and subsequent overfeeding on hypothalamic NPY gene expression.
- To examine the role of plasma hormones, such as leptin and insulin, in mediating these changes.
- To determine if NPY's effect on its own gene expression is direct or indirect.
Main Methods:
- Intracerebroventricular (i.c.v.) infusion of NPY or cerebrospinal fluid (CSF) in male Long-Evans rats.
- Animals were either allowed ad libitum feeding or pair-fed to control intake.
- Measurement of food intake, body weight, plasma hormone levels (insulin, leptin), and hypothalamic neuropeptide mRNA levels (NPY, CRH, POMC) using in situ hybridization.
Main Results:
- NPY infusion with ad libitum feeding significantly increased food intake, body weight, plasma insulin, and leptin.
- NPY-treated rats that were pair-fed showed elevated leptin but not insulin.
- Hypothalamic NPY mRNA levels decreased by 50% in overfed NPY-treated rats, an effect abolished in pair-fed animals.
- CRH and POMC mRNA levels remained unchanged across groups.
Conclusions:
- NPY-induced overfeeding suppresses hypothalamic NPY gene expression.
- This suppression is likely mediated by hormonal feedback (leptin, insulin) rather than a direct effect of NPY.
- Elevated leptin and insulin levels during overfeeding may contribute to the downregulation of NPY gene expression.