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Neuroligin-2 is ubiquitinated by Nedd4l to control developmental astrocyte morphogenesis

2026/04/30 by Kristina Sakers, J.J. Ramirez, Nimrod Elazar +3 · 1 voice
Biochemistry, Genetics and Molecular Biology · Neuroscience · #Ubiquitin and proteasome pathways #Axon Guidance and Neuronal Signaling #Neurogenesis and neuroplasticity mechanisms

paper · doi:10.1083/jcb.202512111

openalex created_date 2025/12/16 · openalex publication_date 2026/04/30 · openalex updated_date 2026/07/22

Abstract

ABSTRACT Central nervous system astrocytes have an intricate, highly branched morphology. Proper development of perisynaptic astrocyte processes is necessary for tripartite synapse formation and function. However, cellular pathways orchestrating this development are largely unknown. Neuroligins (NLs) 1-3 regulate astrocyte morphogenesis via transcellular adhesions with neuronal neurexins. Here, we found an astrocytic NL2-based mechanism governing morphogenesis. Through structure and function studies, we identified a WW-binding motif within the NL2 intracellular domain required for astrocyte morphogenesis. Using cell-specific in vivo proximity labeling (iBioID), we found that each NL displays distinct protein-protein interactions within astrocytes, distinct from the neuronal NL2 binding partners. From these data, we identified a role for WW domain-containing E3 ubiquitin ligase Nedd4l in astrocyte morphogenesis. Biochemical assays revealed Nedd4l ubiquitinates and stabilizes NL2, and this ubiquitination is required for astrocyte morphogenesis. This study shows that Neuroligins have non-overlapping roles in controlling astrocyte growth and uncovers a molecular mechanism of how NL2 mediates astrocyte morphogenesis. SUMMARY Sakers et al report that astrocytic neuroligins (NLs) are functionally diverse proteins, with unique intracellular protein-protein interactions. They show that Nedd4l binds to NL2 and ubiquitinates its intracellular domain, leading to changes in NL2 stability. In vivo, Nedd4l and NL2 ubiquitination are critical for astrocyte morphogenesis.

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