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Submitted on November 5, 2004
Accepted on December 16, 2004
Molecular Endocrinology Group, Rowett Research Institute and Aberdeen centre for energy regulation and obesity (ACERO), Greenburn Road, Bucksburn, Aberdeen AB21 9SB Scotland.; Department of Biology, Åbo Akademi University, BIOCITY, Artillerigatan 6 20520, Åbo, Finland.; Neuroscience Center, Institute of Biomedicine/Anatomy, University of Helsinki, Haartmaninkatu 8, 00290 Helsinki, Finland; School of Biomedical Sciences, University of Nottingham Medical School, Nottingham, NG7 2UH, UK
* To whom correspondence should be addressed. E-mail: pb{at}rri.sari.ac.uk.
To survive winter the Siberian hamster has evolved profound physiological and behavioral adaptations, including a moult to winter pelage, regression of the reproductive axis, onset of daily torpor and increased capacity for thermogenesis. However, one of the most striking adaptations is the catabolism of intra-abdominal and subcutaneous fat reserves contributing to the loss of up to 40% of body weight. These physiological and behavioral adaptations are photoperiodically driven, yet neither the site(s) in the brain nor the molecular mechanism(s) involved in the regulation of these profound adaptations are known. Here we report a dynamic regulation of gene expression in a dorsal region of the medial posterior area of the arcuate nucleus (dmpARC) of the Siberian and Syrian hamster brain in response to altered photoperiod. We show mRNA for the histamine H3 receptor is down-regulated and VGF is up-regulated in the dmpARC in hamsters switched from long to short day photoperiod. These data provide further evidence to support the view that the dmpARC is a major site to relay photoperiodic changes and as a site for the long-term regulation of seasonal physiology and behavior.
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