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Y2 and Y4 receptor signalling synergistically act on energy expenditure and physical activity

Abstract

Neuropeptide Y receptors are critical regulators of energy homeostasis and are well known for their powerful influence on feeding, but their roles in other important aspects of energy homeostasis, such as energy expenditure and their functional interactions in these processes, are largely unknown. Here we show that mice lacking both Y2 and Y4 receptors exhibited a reduction in adiposity ? more prominent in visceral versus subcutaneous fat, and an increase in lean mass as determined by dual-energy X-ray absorptiometry. These changes were more pronounced than those seen in mice with Y2 or Y4 receptor single deletion, demonstrating the important roles and synergy of Y2 and Y4 signalling in the regulation of body composition. These changes in body composition occurred without significant changes in food intake, but energy expenditure and physical activity were significantly increased in Y4-/- and particularly in Y2-/-Y4-/- but not in Y2-/- mice suggesting a critical role of Y4 signalling and synergistic interactions with Y2 signalling in the regulation of energy expenditure and physical activity. Y2-/- and Y4-/- mice also exhibited a decrease in respiratory exchange ratio, with no further synergistic decrease in Y2-/-Y4-/- mice, suggesting that Y2 and Y4 signalling each play important and independent roles in the regulation of substrate utilization. The synergy between Y2 and Y4 signalling in regulating fat mass may be related to differences in mitochondrial oxidative capacity, since Y2-/-Y4-/- but not Y2-/- or Y4-/- mice showed significant increases in muscle protein levels of peroxisome proliferator-activated receptor (PPAR) ? coactivator (PGC)-1?, and mitochondrial respiratory chain complexes I and III. Taken together, this work demonstrates the critical roles of Y2 and Y4 receptors in the regulation of body composition and energy metabolism, highlighting dual antagonism of Y2 and Y4 receptors as a potentially effective anti-obesity treatment.

Type Journal
ISBN 1522-1490 (Electronic) 0363-6119 (Linking)
Authors Zhang, L.; Riepler, S.J.; Turner, N.; Enriquez, R.F.; Lee, I.C.J.; Baldock, P.A.; Herzog, H.; Sainsbury, A.
Publisher Name AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY
Published Date 2010-12-01
Published Volume 299
Published Issue 6
Published Pages R1618-28
Status Published in-print
DOI ajpregu.00345.2010 [pii] 10.1152/ajpregu.00345.2010
URL link to publisher's version http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=20881101
OpenAccess link to author's accepted manuscript version https://publications.gimr.garvan.org.au/open-access/10708