| Title : Neuroligin-3 interaction with CSPG4 regulates normal and malignant glial precursors through PIEZO1 - Gillespie_2025_bioRxiv__ |
| Author(s) : Gillespie SM , Kim YS , Geraghty AC , Yalcin B , Mancusi R , Hysinger J , Ivec AE , Reed J , Drexler R , Quezada M , Malacon K , Woo P , Mount C , Yang A , Lam M , Pan Y , Zuchero JB , Trotter J , Monje M |
| Ref : bioRxiv , : , 2025 |
|
Abstract :
Glioma pathophysiology is robustly regulated by interactions with neurons. Key to these interactions is the role of neuroligin-3 (NLGN3), a synaptic adhesion molecule shed in response to neuronal activity (1-5) that functions as a paracrine factor crucial for glioma growth. Here, we elucidate the mechanistic pathway whereby shed NLGN3 interacts with glioma and their normal glial counterpart. NLGN3 interacts with Chondroitin Sulfate Proteoglycan 4 (CSPG4) on both glioma and healthy oligodendrocyte precursor cells (OPCs) (6-9) , facilitating CSPG4 shedding by ADAM10. NLGN3-CSPG4 interactions and consequent shedding alter membrane tension, thereby activating PIEZO1 mechanosensitive channels and causing membrane depolarization. The NLGN3-CSPG4-PIEZO1 axis maintains OPCs in an undifferentiated, stem-like state and promotes glioma proliferation, underscoring important functional roles for the NLGN3-CSPG4-PIEZO1 axis in both healthy and malignant glial precursors. |
| PubMedSearch : Gillespie_2025_bioRxiv__ |
| PubMedID: 40791371 |
| Gene_locus related to this paper: human-NLGN3 , mouse-3neur |
| Gene_locus | human-NLGN3 mouse-3neur |
| Family | Neuroligin |
Gillespie SM, Kim YS, Geraghty AC, Yalcin B, Mancusi R, Hysinger J, Ivec AE, Reed J, Drexler R, Quezada M, Malacon K, Woo P, Mount C, Yang A, Lam M, Pan Y, Zuchero JB, Trotter J, Monje M (2025)
Neuroligin-3 interaction with CSPG4 regulates normal and malignant glial precursors through PIEZO1
bioRxiv
:
Gillespie SM, Kim YS, Geraghty AC, Yalcin B, Mancusi R, Hysinger J, Ivec AE, Reed J, Drexler R, Quezada M, Malacon K, Woo P, Mount C, Yang A, Lam M, Pan Y, Zuchero JB, Trotter J, Monje M (2025)
bioRxiv
: