Active zone plasticity couples sleep need to presynaptic hypophosphorylation

Piao C, Dutkiewicz E, Kollipara L, Sickmann A, Huang S, Sigrist SJ. 2026. Active zone plasticity couples sleep need to presynaptic hypophosphorylation. Proceedings of the National Academy of Sciences. 123(24), e2524065123.

Download
OA 2026_PNAS_Piao.pdf 3.92 MB [Published Version]

Journal Article | Published | English

Scopus indexed
Author
Piao, Chengji; Dutkiewicz, EwelinaISTA; Kollipara, Laxmikanth; Sickmann, Albert; Huang, Sheng; Sigrist, Stephan J.
Abstract
Sleep need is associated with both circuit dynamics and widespread synaptic plasticity, yet the specific synaptic changes underlying sleep homeostasis remain incompletely understood. In Drosophila, sleep loss has been shown to trigger plasticity of the presynaptic active zone, marked by increasing levels of the ELKS-family scaffold protein Bruchpilot (BRP). By titrating brp gene copy number, we previously established a presynapse-specific, dosage-dependent paradigm that modulates sleep pressure. Here, to elucidate the molecular landscape of this plasticity, we performed synapse-enriched integrated-omics. Proteomic and bioinformatic analyses revealed changes in immune and stress response pathways and local translation control. Strikingly, phospho-proteomic analysis uncovered a global shift toward hypophosphorylation, particularly in presynaptic proteins, indicating a reprogramming of the phosphorylation–dephosphorylation balance. This presynaptic hypophosphorylation is likely contributed by reduced activity of Protein Kinase A (PKA) and enhanced substrate affinity of Protein Phosphatase 1 (PP1) mediated by its regulatory subunit Spinophilin (Spn). Manipulating either PKA or PP1 activity was sufficient to suppress BRP-modulated sleep phenotypes. We propose that presynaptic hypophosphorylation constitutes a molecular signature of local synaptic remodeling that adaptively tunes sleep need via reversible posttranslational modification, a mechanism likely conserved across species.
Publishing Year
Date Published
2026-06-16
Journal Title
Proceedings of the National Academy of Sciences
Publisher
National Academy of Sciences
Volume
123
Issue
24
Article Number
e2524065123
IST-REx-ID

Cite this

Piao C, Dutkiewicz E, Kollipara L, Sickmann A, Huang S, Sigrist SJ. Active zone plasticity couples sleep need to presynaptic hypophosphorylation. Proceedings of the National Academy of Sciences. 2026;123(24). doi:10.1073/pnas.2524065123
Piao, C., Dutkiewicz, E., Kollipara, L., Sickmann, A., Huang, S., & Sigrist, S. J. (2026). Active zone plasticity couples sleep need to presynaptic hypophosphorylation. Proceedings of the National Academy of Sciences. National Academy of Sciences. https://doi.org/10.1073/pnas.2524065123
Piao, Chengji, Ewelina Dutkiewicz, Laxmikanth Kollipara, Albert Sickmann, Sheng Huang, and Stephan J. Sigrist. “Active Zone Plasticity Couples Sleep Need to Presynaptic Hypophosphorylation.” Proceedings of the National Academy of Sciences. National Academy of Sciences, 2026. https://doi.org/10.1073/pnas.2524065123.
C. Piao, E. Dutkiewicz, L. Kollipara, A. Sickmann, S. Huang, and S. J. Sigrist, “Active zone plasticity couples sleep need to presynaptic hypophosphorylation,” Proceedings of the National Academy of Sciences, vol. 123, no. 24. National Academy of Sciences, 2026.
Piao C, Dutkiewicz E, Kollipara L, Sickmann A, Huang S, Sigrist SJ. 2026. Active zone plasticity couples sleep need to presynaptic hypophosphorylation. Proceedings of the National Academy of Sciences. 123(24), e2524065123.
Piao, Chengji, et al. “Active Zone Plasticity Couples Sleep Need to Presynaptic Hypophosphorylation.” Proceedings of the National Academy of Sciences, vol. 123, no. 24, e2524065123, National Academy of Sciences, 2026, doi:10.1073/pnas.2524065123.
All files available under the following license(s):
Creative Commons Attribution 4.0 International Public License (CC-BY 4.0):
Main File(s)
File Name
Access Level
OA Open Access
Date Uploaded
2026-08-20
MD5 Checksum
3727c5ad18c1e9c65672fbb01ac6ea04


Export

Marked Publications

Metadata Export

Sources

PMID: 42258713
PubMed | Europe PMC

Search this title in

Google Scholar