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Intracellular protein-lipid interactions drive presynaptic assembly prior to neurexin recruitment.

Elisa B Frankel | Araven Tiroumalechetty | Zhaoqian Su | Parise S Henry | Brian D Mueller | Erik M Jorgensen | Yinghao Wu | Peri T Kurshan
Neuron | 2025

Neurexin cell-adhesion molecules regulate synapse development and function by recruiting synaptic components. Here, we uncover a mechanism for presynaptic assembly that precedes neurexin recruitment, mediated by interactions between cytosolic proteins and membrane phospholipids. Developmental imaging in C. elegans reveals that the intracellular active zone protein SYD-1 accumulates at nascent presynapses prior to its binding partner neurexin. Combining molecular dynamics simulations to model intrinsic interactions between SYD-1 and lipid bilayers with biochemical and in vivo validation of these predictions, we find that PIP2-interacting residues in the SYD-1 C2 domain are required for active zone assembly. Genetic perturbation of a PIP2-generating enzyme disrupts synaptic SYD-1 accumulation, while the PIP2-interacting domain of mammalian RIM1 can compensate for the SYD-1 C2 domain, suggesting functional homology between these proteins. Finally, we propose that the evolutionarily conserved γ-neurexin isoform represents a minimal neurexin sequence that stabilizes nascent presynaptic assemblies, potentially a core function of this isoform.

Pubmed ID: 39814011

Associated grants

  • Agency: NINDS NIH HHS, United States
    Id: R01 NS034307
  • Agency: NIGMS NIH HHS, United States
    Id: K12 GM102779
  • Agency: NINDS NIH HHS, United States
    Id: R01 NS123645
  • Agency: NICHD NIH HHS, United States
    Id: P50 HD105352
  • Agency: NIH HHS, United States
    Id: P40 OD010440

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CHARMM-GUI (web application)

RRID:SCR_025037

Web-based platform to interactively build complex systems and prepare their inputs with well established and reproducible simulation protocols for molecular simulations.

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GROMACS (software resource)

RRID:SCR_014565

A software package created to perform molecular dynamics. It is primarily designed for biochemical molecules like proteins, lipids and nucleic acids that have many complicated bonded interactions, but it can also be used for research on non-biological systems, such as polymers.

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Fiji (software resource)

RRID:SCR_002285

Software package as distribution of ImageJ and ImageJ2 together with Java, Java3D and plugins organized into coherent menu structure. Used to assist research in life sciences.

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