Literature DB >> 34324418

An autoinhibitory clamp of actin assembly constrains and directs synaptic endocytosis.

Steven J Del Signore1, Charlotte F Kelley1, Emily M Messelaar1, Tania Lemos1, Michelle F Marchan1, Biljana Ermanoska1, Markus Mund2, Thomas G Fai3, Marko Kaksonen2, Avital Adah Rodal1.   

Abstract

Synaptic membrane-remodeling events such as endocytosis require force-generating actin assembly. The endocytic machinery that regulates these actin and membrane dynamics localizes at high concentrations to large areas of the presynaptic membrane, but actin assembly and productive endocytosis are far more restricted in space and time. Here we describe a mechanism whereby autoinhibition clamps the presynaptic endocytic machinery to limit actin assembly to discrete functional events. We found that collective interactions between the Drosophila endocytic proteins Nwk/FCHSD2, Dap160/intersectin, and WASp relieve Nwk autoinhibition and promote robust membrane-coupled actin assembly in vitro. Using automated particle tracking to quantify synaptic actin dynamics in vivo, we discovered that Nwk-Dap160 interactions constrain spurious assembly of WASp-dependent actin structures. These interactions also promote synaptic endocytosis, suggesting that autoinhibition both clamps and primes the synaptic endocytic machinery, thereby constraining actin assembly to drive productive membrane remodeling in response to physiological cues.
© 2021, Del Signore et al.

Entities:  

Keywords:  D. melanogaster; actin; cell biology; endocytosis; neuroscience; synapse

Mesh:

Substances:

Year:  2021        PMID: 34324418      PMCID: PMC8321554          DOI: 10.7554/eLife.69597

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.140


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