PLC-γ-Ca2+ pathway regulates axonal TrkB endocytosis and is required for long-distance propagation of BDNF signaling

Moya-Alvarado, Guillermo; Valero-Pena, Xavier; Aguirre-Soto, Alejandro; Bustos, Fernando J.; Lazo, Oscar M.; Bronfman, Francisca C.

Abstract

Brain-derived neurotrophic factor (BDNF) and its tropomyosin receptor kinase B (TrkB) are important signaling proteins that regulate dendritic growth and maintenance in the central nervous system (CNS). After binding of BDNF, TrkB is endocytosed into endosomes and continues signaling within the cell soma, dendrites, and axon. In previous studies, we showed that BDNF signaling initiated in axons triggers long-distance signaling, inducing dendritic arborization in a CREB-dependent manner in cell bodies, processes that depend on axonal dynein and TrkB activities. The binding of BDNF to TrkB triggers the activation of different signaling pathways, including the ERK, PLC-gamma and PI3K-mTOR pathways, to induce dendritic growth and synaptic plasticity. How TrkB downstream pathways regulate long-distance signaling is unclear. Here, we studied the role of PLC-gamma-Ca(2+ )in BDNF-induced long-distance signaling using compartmentalized microfluidic cultures. We found that dendritic branching and CREB phosphorylation induced by axonal BDNF stimulation require the activation of PLC-gamma in the axons of cortical neurons. Locally, in axons, BDNF increases PLC-gamma phosphorylation and induces intracellular Ca2+ waves in a PLC-gamma-dependent manner. In parallel, we observed that BDNF-containing signaling endosomes transport to the cell body was dependent on PLC-gamma activity and intracellular Ca2+ stores. Furthermore, the activity of PLC-gamma is required for BDNF-dependent TrkB endocytosis, suggesting a role for the TrkB/PLC-gamma signaling pathway in axonal signaling endosome formation.

Más información

Título según WOS: PLC-γ-Ca2+ pathway regulates axonal TrkB endocytosis and is required for long-distance propagation of BDNF signaling
Título de la Revista: FRONTIERS IN MOLECULAR NEUROSCIENCE
Volumen: 17
Editorial: FRONTIERS MEDIA SA
Fecha de publicación: 2024
DOI:

10.3389/fnmol.2024.1009404

Notas: ISI