
It is not known whether behaviors unrelated to feeding are affected by hypothalamic regulators of hunger. We found that impairment of Agouti-related protein (AgRP) circuitry by either Sirt1 knockdown in AgRP-expressing neurons or early postnatal ablation of these neurons increased exploratory behavior and enhanced responses to cocaine. In AgRP circuit-impaired mice, ventral tegmental dopamine neurons exhibited enhanced spike timing-dependent long-term potentiation, altered amplitude of miniature postsynaptic currents and elevated dopamine in basal forebrain. Thus, AgRP neurons determine the set point of the reward circuitry and associated behaviors.
Neurons, Neuronal Plasticity, QH3011 Biochemistry / biokémia, neurológia, Behavior, Animal, Dopamine, Dopaminergic Neurons, Long-Term Potentiation, Mice, Transgenic, RC0321 Neuroscience. Biological psychiatry. Neuropsychiatry / idegkórtan, Mice, Cocaine, Reward, pszichiátria, Gene Knockdown Techniques, Animals, Agouti-Related Protein, Female
Neurons, Neuronal Plasticity, QH3011 Biochemistry / biokémia, neurológia, Behavior, Animal, Dopamine, Dopaminergic Neurons, Long-Term Potentiation, Mice, Transgenic, RC0321 Neuroscience. Biological psychiatry. Neuropsychiatry / idegkórtan, Mice, Cocaine, Reward, pszichiátria, Gene Knockdown Techniques, Animals, Agouti-Related Protein, Female
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