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Restricted Feeding Schedules Modulate in a Different Manner the Expression of Clock Genes in Rat Hypothalamic Nuclei

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De Araujo, Leonardo D. ; Roa, Silvia L. ; Bueno, Ana C. ; Coeli-Lacchini, Fernanda B. ; Martins, Clarissa S. ; Uchoa, Ernane T. ; Antunes-Rodrigues, Jose ; Elias, Lucila L. ; Elias, Paula C. ; Moreira, Ayrton C. ; De Castro, Margaret
Número total de Autores: 11
Tipo de documento: Artigo Científico
Fonte: FRONTIERS IN NEUROSCIENCE; v. 10, DEC 6 2016.
Citações Web of Science: 3
Resumo

Food access restriction is associated to changes in gene expression of the circadian clock system. However, there are only a few studies investigating the effects of non-photic synchronizers, such as food entrainment, on the expression of clock genes in the central oscillators. We hypothesized that different feeding restriction patterns could modulate the expression of clock genes in the suprachiasmatic nucleus (SCN) ``master{''} clock and in extra-SCN oscillators such as the paraventricular (PVN) and arcuate (ARC) hypothalamic nuclei. Wistar rats were divided into four groups: Control group (CG; food available ad libitum), Restricted night-fed (RF-n; food access during 2 h at night), Restricted day-fed (RF-d; food access during 2 h at daytime), Day-fed (DF; food access during 12 h at daytime). After 21 days, rats were decapitated between ZT2-ZT3 (0800-0900 h); ZT11-ZT12 (1700-1800 h), or ZT17-18 (2300-2400 h). Plasma corticosterone was measured by radioimmunoassay (RIA). The expression of Clock, Bmall, Pert, Per2, Per3, Cry1, Cry2, Rev-erb alpha, and Ror alpha were assessed in SCN, PVN, and ARC hypothalamic nuclei by RT-PCR and calculated by the 2({[}-DeltaDeltaCT(Cyclethreshold)])(2(-Delta Delta CT),) method. Restricted food availability during few h led to decreased body weight in RF-n and RF-d groups compared to controls and DF group. We also observed an anticipatory corticosterone peak before food availability in RF-n and RF-d groups. Furthermore, the pattern of clock gene expression in response to RF-n, RF-d, and DF schedules was affected differently in the SCN, PVN, and ARC hypothalamic nuclei. In conclusion, the master oscillator in SCN as well as the oscillator in PVN and ARC, all brain areas involved in food intake, responds in a tissue-specific manner to feeding restriction. (AU)

Processo FAPESP: 13/09799-1 - Regulação da homeostase energética e do balanço hidromineral: das células aos sistemas fisiológicos
Beneficiário:José Antunes Rodrigues
Modalidade de apoio: Auxílio à Pesquisa - Temático
Processo FAPESP: 07/58365-3 - Fisiopatologia e etiopatogenia molecular de doenças relacionadas aos eixos corticotrófico, somatotrófico e neurohipofisário
Beneficiário:Margaret de Castro
Modalidade de apoio: Auxílio à Pesquisa - Temático