Authors
Yasunori Mori, Hirokazu Sakamoto, Yeon-Jeong Kim, Shun Hamada, Fumihiro Kaku, Yamato Hida, Kenzo Hirose, Toshihisa Ohtsuka
Published in
The Journal of cell biology. Volume 225. Issue 9. Sep 07, 2026. Epub Jul 22, 2026.
Abstract
Efficient neurotransmission relies on the precise integration of synaptic vesicle (SV) recycling at the presynaptic terminal. While SV recycling is essential for neurotransmission, the molecular mechanisms coordinating vesicle dynamics at presynaptic terminals remain poorly understood. Here we report that the active zone proteins, CAST and ELKS, play a crucial role in maintaining functional SV pool size through direct interaction with endophilin-A family proteins. In cultured hippocampal neurons, disruption of CAST binding to endophilin-A resulted in a reduced number of SVs available for release, mislocalization of endophilin-A, and altered presynaptic localization of clathrin light chain. Furthermore, reduction of endophilin-A affected expression levels of active zone proteins. Collectively, these findings redefine the role of CAST/ELKS beyond active zone structural organization, demonstrating that their interaction with endophilin-A contributes to maintaining the SV pool required for sustained synaptic transmission at the presynaptic active zone.
PMID:
42484625
Bibliographic data and abstract were imported from PubMed on 22 Jul 2026.
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