Saltar al contenido
MilliporeSigma

Interplay between glucose and leptin signalling determines the strength of GABAergic synapses at POMC neurons.

Nature communications (2015-03-27)
Dong Kun Lee, Jae Hoon Jeong, Sung-Kun Chun, Streamson Chua, Young-Hwan Jo
RESUMEN

Regulation of GABAergic inhibitory inputs and alterations in POMC neuron activity by nutrients and adiposity signals regulate energy and glucose homeostasis. Thus, understanding how POMC neurons integrate these two signal molecules at the synaptic level is important. Here we show that leptin's action on GABA release to POMC neurons is influenced by glucose levels. Leptin stimulates the JAK2-PI3K pathway in both presynaptic GABAergic terminals and postsynaptic POMC neurons. Inhibition of AMPK activity in presynaptic terminals decreases GABA release at 10 mM glucose. However, postsynaptic TRPC channel opening by the PI3K-PLC signalling pathway in POMC neurons enhances spontaneous GABA release via activation of presynaptic MC3/4 and mGlu receptors at 2.5 mM glucose. High-fat feeding blunts AMPK-dependent presynaptic inhibition, whereas PLC-mediated GABAergic feedback inhibition remains responsive to leptin. Our data indicate that the interplay between glucose and leptin signalling in glutamatergic POMC neurons is critical for determining the strength of inhibitory tone towards POMC neurons.

MATERIALES
Referencia del producto
Marca
Descripción del producto

Sigma-Aldrich
Anticuerpo anti-transportador de glutamato vesicular 2, clone 8G9.2, Chemicon®, from mouse
Sigma-Aldrich
Anti-GFP (Green Fluorescent Protein) Antibody, Upstate®, from chicken
Sigma-Aldrich
Donkey Anti-Chicken IgY Antibody, FITC conjugate, Species Adsorbed, Chemicon®, from donkey