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Publication : TrkB-expressing paraventricular hypothalamic neurons suppress appetite through multiple neurocircuits.

First Author  An JJ Year  2020
Journal  Nat Commun Volume  11
Issue  1 Pages  1729
PubMed ID  32265438 Mgi Jnum  J:287168
Mgi Id  MGI:6405948 Doi  10.1038/s41467-020-15537-w
Citation  An JJ, et al. (2020) TrkB-expressing paraventricular hypothalamic neurons suppress appetite through multiple neurocircuits. Nat Commun 11(1):1729
abstractText  The TrkB receptor is critical for the control of energy balance, as mutations in its gene (NTRK2) lead to hyperphagia and severe obesity. The main neural substrate mediating the appetite-suppressing activity of TrkB, however, remains unknown. Here, we demonstrate that selective Ntrk2 deletion within paraventricular hypothalamus (PVH) leads to severe hyperphagic obesity. Furthermore, chemogenetic activation or inhibition of TrkB-expressing PVH (PVH(TrkB)) neurons suppresses or increases food intake, respectively. PVH(TrkB) neurons project to multiple brain regions, including ventromedial hypothalamus (VMH) and lateral parabrachial nucleus (LPBN). We find that PVH(TrkB) neurons projecting to LPBN are distinct from those to VMH, yet Ntrk2 deletion in PVH neurons projecting to either VMH or LPBN results in hyperphagia and obesity. Additionally, TrkB activation with BDNF increases firing of these PVH neurons. Therefore, TrkB signaling is a key regulator of a previously uncharacterized neuronal population within the PVH that impinges upon multiple circuits to govern appetite.
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