ePoster

DISSECTING THE IMPACT OF ENDOLYSOSOMAL CA²⁺ DYNAMICS ON HIPPOCAMPAL PRESYNAPTIC FUNCTION

Zhixin Zhouand 2 co-authors

University of Barcelona

FENS Forum 2026 (2026)
Barcelona, Spain
Board PS01-07AM-034

Presentation

Date TBA

Board: PS01-07AM-034

Poster preview

DISSECTING THE IMPACT OF ENDOLYSOSOMAL CA²⁺ DYNAMICS ON HIPPOCAMPAL PRESYNAPTIC FUNCTION poster preview

Event Information

Poster Board

PS01-07AM-034

Abstract

Ca2+ signaling is well-known for its crucial role in neurotransmission. To keep the Ca2+ homeostasis for hippocampal neurons that constantly undergo synaptic plasticity, Ca2+ stores can always adjust their characteristics between the releaser and buffer to environmental changes. However, evidence is still lacking in whether and how the endolysosomal Ca2+ dynamics may influence presynaptic performance. In this study, we investigate endolysosomes containing the two major Ca2+-release channels, Transient Receptor Potential Mucolipin (TRPML) 1 and Two-pore Channel (TPC) 2 in mouse hippocampus at different postnatal stages. By immunofluorescence staining and immunohistochemistry, we identified a relatively stable subpopulation of endolysosomes at presynaptic compartments in the cell culture, and specify their distribution preference in hippocampal slices with an intact anatomical and more physiological context. We then discovered that the proportion of presynaptic endolysosomal subpopulation is neuronal activity dependent, suggesting its function as an active Ca2+ supplier for synaptic boutons. Pharmacological applications further indicates that endolysosomal Ca2+ dynamics can participate in regulating neurotransmitter release and presynaptic terminal maintenance. Taken together, our results shed new lights on the mechanisms underlying endolysosomal Ca²⁺ signaling in hippocampal presynaptic neurons. This will eventually help elucidate the contribution of Ca²⁺ dis-homeostasis involved in the pathophysiology of many neurological disorders where endolysosomal Ca2+ is disrupted and hold promise toward identifying potential therapeutic targets.

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