[PDF][PDF] Leptin directly activates SF1 neurons in the VMH, and this action by leptin is required for normal body-weight homeostasis

H Dhillon, JM Zigman, C Ye, CE Lee, RA McGovern… - Neuron, 2006 - cell.com
H Dhillon, JM Zigman, C Ye, CE Lee, RA McGovern, V Tang, CD Kenny, LM Christiansen…
Neuron, 2006cell.com
Leptin, an adipocyte-derived hormone, acts directly on the brain to control food intake and
energy expenditure. An important question is the identity of first-order neurons initiating
leptin's anti-obesity effects. A widely held view is that most, if not all, of leptin's effects are
mediated by neurons located in the arcuate nucleus of the hypothalamus. However, leptin
receptors (LEPRs) are expressed in other sites as well, including the ventromedial
hypothalamus (VMH). The possible role of leptin acting in" nonarcuate" sites has largely …
Summary
Leptin, an adipocyte-derived hormone, acts directly on the brain to control food intake and energy expenditure. An important question is the identity of first-order neurons initiating leptin's anti-obesity effects. A widely held view is that most, if not all, of leptin's effects are mediated by neurons located in the arcuate nucleus of the hypothalamus. However, leptin receptors (LEPRs) are expressed in other sites as well, including the ventromedial hypothalamus (VMH). The possible role of leptin acting in "nonarcuate" sites has largely been ignored. In the present study, we show that leptin depolarizes and increases the firing rate of steroidogenic factor-1 (SF1)-positive neurons in the VMH. We also show, by generating mice that lack LEPRs on SF1-positive neurons, that leptin action at this site plays an important role in reducing body weight and, of note, in resisting diet-induced obesity. These results reveal a critical role for leptin action on VMH neurons.
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