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1.
FEBS Lett ; 588(17): 3104-10, 2014 Aug 25.
Artigo em Inglês | MEDLINE | ID: mdl-24983496

RESUMO

Hepatic circadian transcription, considered to be driven by the liver clock, is largely influenced by food even uncoupling it from the suprachiasmatic nucleus (SCN). In SCN lesioned rats (SCNx) we determined the influence of a physiological feeding schedule on the entrainment of clock and clock-controlled (CCG) genes in the liver. We show that clock genes and the CCG Rev-erbα and peroxisome proliferator-activated receptor alpha (PPARα) in food-scheduled intact and SCNx have a robust diurnal differential expression persisting after a 24h fast. However, hepatic nicotinamide phosphoribosyl transferase (Nampt) shows time dependent changes that are lost in intact animals under fasting; moreover, it is unresponsive to the nutrient status in SCNx, indicating a poor reliance on liver clock genes and highlighting the relevance of SCN-derived signals for its metabolic status-related expression.


Assuntos
Relógios Circadianos/genética , Alimentos , Fígado/metabolismo , Núcleo Supraquiasmático/fisiopatologia , Animais , Jejum/metabolismo , Regulação da Expressão Gênica , Proteína 2 Inibidora de Diferenciação/genética , Masculino , Nicotinamida Fosforribosiltransferase/genética , Membro 1 do Grupo D da Subfamília 1 de Receptores Nucleares/genética , PPAR alfa/genética , Ratos , Temperatura
2.
Proc Natl Acad Sci U S A ; 108(14): 5813-8, 2011 Apr 05.
Artigo em Inglês | MEDLINE | ID: mdl-21402951

RESUMO

Food anticipatory behavior (FAA) is induced by limiting access to food for a few hours daily. Animals anticipate this scheduled meal event even without the suprachiasmatic nucleus (SCN), the biological clock. Consequently, a food-entrained oscillator has been proposed to be responsible for meal time estimation. Recent studies suggested the dorsomedial hypothalamus (DMH) as the site for this food-entrained oscillator, which has led to considerable controversy in the literature. Herein we demonstrate by means of c-Fos immunohistochemistry that the neuronal activity of the suprachiasmatic nucleus (SCN), which signals the rest phase in nocturnal animals, is reduced when animals anticipate the scheduled food and, simultaneously, neuronal activity within the DMH increases. Using retrograde tracing and confocal analysis, we show that inhibition of SCN neuronal activity is the consequence of activation of GABA-containing neurons in the DMH that project to the SCN. Next, we show that DMH lesions result in a loss or diminution of FAA, simultaneous with increased activity in the SCN. A subsequent lesion of the SCN restored FAA. We conclude that in intact animals, FAA may only occur when the DMH inhibits the activity of the SCN, thus permitting locomotor activity. As a result, FAA originates from a neuronal network comprising an interaction between the DMH and SCN. Moreover, this study shows that the DMH-SCN interaction may serve as an intrahypothalamic system to gate activity instead of rest overriding circadian predetermined temporal patterns.


Assuntos
Antecipação Psicológica/fisiologia , Núcleo Hipotalâmico Dorsomedial/fisiologia , Alimentos , Modelos Neurológicos , Núcleo Supraquiasmático/fisiologia , Animais , Núcleo Hipotalâmico Dorsomedial/patologia , Imuno-Histoquímica , Ácido Caínico , Proteínas Proto-Oncogênicas c-fos/metabolismo , Ratos , Núcleo Supraquiasmático/patologia
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