Peripheral administration of the N-terminal pro-opiomelanocortin fragment 1–28 to Pomc−/− mice reduces food intake and weight but does not affect adrenal growth or corticosterone production
Open Access
- 1 August 2006
- journal article
- research article
- Published by Bioscientifica in Journal of Endocrinology
- Vol. 190 (2) , 515-525
- https://doi.org/10.1677/joe.1.06749
Abstract
Pro-opiomelanocortin (POMC) is a polypeptide precursor that undergoes extensive processing to yield a range of peptides with biologically diverse functions. POMC-derived ACTH is vital for normal adrenal function and the melanocortin α-MSH plays a key role in appetite control and energy homeostasis. However, the roles of peptide fragments derived from the highly conserved N-terminal region of POMC are less well characterized. We have used mice with a null mutation in the Pomc gene (Pomc−/−) to determine the in vivo effects of synthetic N-terminal 1–28 POMC, which has been shown previously to possess adrenal mitogenic activity. 1–28 POMC (20 μg) given s.c. for 10 days had no effect on the adrenal cortex of Pomc−/− mice, with resultant cortical morphology and plasma corticosterone levels being indistinguishable from sham treatment. Concurrent administration of 1–28 POMC and 1–24 ACTH (30 μg/day) resulted in changes identical to 1–24 ACTH treatment alone, which consisted of upregulation of steroidogenic enzymes, elevation of corticosterone levels, hypertrophy of the zona fasciculate, and regression of the X-zone. However, treatment of corticosterone-depleted Pomc−/− mice with 1–28 POMC reduced cumulative food intake and total body weight. These anorexigenic effects were ameliorated when the peptide was administered to Pomc−/− mice with circulating corticosterone restored either to a low physiological level by corticosterone-supplemented drinking water (CORT) or to a supraphysiological level by concurrent 1–24 ACTH administration. Further, i.c.v. administration of 1–28 POMC to CORT-treated Pomc−/− mice had no effect on food intake or body weight. In wild-type mice, the effects of 1–28 POMC upon food intake and body weight were identical to sham treatment, but 1–28 POMC was able to ameliorate the hyperphagia induced by concurrent 1–24 ACTH treatment. In a mouse model which lacks all endogenous POMC peptides, s.c. treatment with synthetic 1–28 POMC alone can reduce food intake and body weight, but has no impact upon adrenal growth or steroidogenesis.Keywords
This publication has 24 references indexed in Scilit:
- Glucocorticoids exacerbate obesity and insulin resistance in neuron-specific proopiomelanocortin-deficient miceJournal of Clinical Investigation, 2006
- Anatomy and regulation of the central melanocortin systemNature Neuroscience, 2005
- Activin Induces x-Zone Apoptosis That Inhibits Luteinizing Hormone-Dependent Adrenocortical Tumor Formation in Inhibin-Deficient MiceMolecular and Cellular Biology, 2003
- Characterization of a Serine Protease that Cleaves Pro-γ-Melanotropin at the Adrenal to Stimulate GrowthCell, 2001
- Disproportionate Inhibition of Feeding in Ay Mice by Certain Stressors: A Cautionary NoteNeuroendocrinology, 2000
- Adrenal regeneration in the rat is mediated by mitogenic N-terminal pro-opiomelanocortin peptides generated by changes in precursor processing in the anterior pituitaryJournal of Endocrinology, 1988
- Further evidence that N-terminal pro-opiomelanocortin peptides are involved in adrenal mitogenesisJournal of Endocrinology, 1988
- Structure and bioactivity of the amino-terminal fragment of pro-opiomelanocortinJournal of Steroid Biochemistry, 1986
- Pro-γ-melanocyte-stimulating hormone cleavage in adrenal gland undergoing compensatory growthNature, 1983
- Comparison of the steroidogenic and melanotropic activities of corticotropin, α-melanotropin and analogs with their lipolytic activities in rat and rabbit adipocytesBiochimica et Biophysica Acta (BBA) - General Subjects, 1976