bioRxiv · 10.64898/2026.06.25.734451
APP-CTFβ/C99 oligomers drive synaptic vesicle tethering through C-terminal interactions
Abstract
Proteolytic processing of the amyloid precursor protein (APP) generates a 99-amino acid precursor, {beta}-carboxyl-terminal fragments (APP-CTF{beta} or C99). Upon {gamma}-secretase inhibition, APP-CTF{beta} accumulates and induces synaptic defects, resulting in neuronal hyperactivity. However, mechanistic insights in the critical role of APP-CTF{beta} has not been completely elucidated. Here, we show that in primary neurons expressing human APP-CTF{beta} (C99) variants, acute {gamma}-secretase inhibition selectively increases evoked synaptic vesicle release in cells, whereas deletion of the C-terminus abolishes this effect. Using single-molecule approaches and reconstituted membrane systems, we demonstrate that accumulation of APP-CTF{beta} promotes its oligomerisation. In particular, APP-CTF{beta} oligomers augment synaptic vesicle tethering via their C-terminal domain. This effect is driven by the interaction with synaptic vesicle proteins, independent of the YENPTY binding motif. Additionally, APP-CTF{beta} oligomers were associated with alterations in membrane lipid organization. Together, our findings identify APP-CTF{beta} oligomerization as a constitutional gain-of-function mechanism that enhances presynaptic vesicle tethering and release, providing mechanistic insight into how altered APP processing regulates synaptic activity. Short summary{gamma}-Secretase-dependent accumulation of APP-CTF{beta} transforms a transient APP processing intermediate into a membrane-associated oligomeric scaffold that promotes synaptic vesicle tethering enhancing neurotransmitter release. HighlightsO_LIAPP-CTF{beta} self-assembles into higher-order oligomeric assemblies C_LIO_LIAPP-CTF{beta} oligomers promote synaptic vesicle tethering via their C-terminal domain C_LIO_LIAPP-CTF{beta} oligomerization drives a presynaptic gain-of-function linked to neuronal hyperactivity C_LI
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Kapadia, A. B., Cijffers, E., Van, S., Hafner, A.-S.. 2026-06-30. APP-CTFβ/C99 oligomers drive synaptic vesicle tethering through C-terminal interactions. https://doi.org/10.64898/2026.06.25.734451
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