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Nature genetics
Published

PLCG2 downregulation impairs synaptic function and increases Alzheimer's disease hallmarks in neuronal cultures

Authors

Audrey Coulon, Florian Rabiller, Mari Takalo, Avishek Roy, Alexandre Pelletier, Henna Martiskainen, Dolores Siedlecki-Wullich, Nina Lannette-Weimann, Naďa Majerníková, Arthur Grenon, Vance Gao, Anaël Erhardt, Anne Pernodet, Morgane Lemaire, Floriane Limoge, Pauline Walle, Tiago Mendes, Karine Guyot, Célia Lemeu, Lukas-Iohan Carvalho, Ana Raquel Melo de Farias, Marc Hulsman, Chloé Najdek, Alejandra Freire-Regatillo, Orthis Saha, Philippe Amouyel, Camille Charbonnier, Jean-François Deleuze, Orio Dols-Icardo, Heli Jeskanen, Roosa-Maria Willman, Teemu Kuulasmaa, Mitja Kurki, John Hardy, Sami Heikkinen, Henne Holstege, Petra Mäkinen, Gaël Nicolas, Simon Mead, Michael Wagner, Alfredo Ramirez, Tuomas Rauramaa, Aarno Palotie, Rebecca Sims, Hilkka Soininen, John van Swieten, Julie Williams, Céline Bellenguez, Carla Gelle, Erwan Lambert, Marcos R Costa, Julia Tcw, Enrico Glaab, Anne-Marie Ayral, Florie Demiautte, Benjamin Grenier-Boley, Manon Muntaner, Delphine Eberlé, Séverine Deforges, Joel T Haas, Devrim Kilinc, Christophe Mulle, Julien Chapuis, Mikko Hiltunen, Julie Dumont, Jean-Charles Lambert

Abstract

Nat Genet. 2026 Aug 14. doi: 10.1038/s41588-026-02709-5. Online ahead of print.

ABSTRACT

We developed a high-content screening to investigate how Alzheimer's disease (AD) genetic risk factors may affect synaptic mechanisms in rat primary neuronal cultures. Of the target genes identified, we found that Plcg2 downregulation in mouse dentate gyrus neurons consistently disrupted dendritic morphology and synaptic function. In human neuronal cultures (hNCs), PLCG2 downregulation also impaired synaptic function and increased amyloid-β (Aβ) levels and Tau phosphorylation. Very rare PLCG2 loss-of-function (LoF) variants were associated with a tenfold increased AD risk. PLCG2 LoF carriers show low mRNA/protein PLCG2/PLCγ2 levels and the R953* LoF mutation compromised synaptic function and increased AD hallmarks in hNCs. Single-nucleus RNA sequencing analyses confirmed that the downregulation of PLCG2 impacted pathways related to synaptic and neuronal functions, potentially through neurexins in neurons. In conclusion, PLCγ2 downregulation could increase AD risk by impairing synaptic functions and by increasing Aβ levels and Tau phosphorylation in neurons.

PMID:42601455 | DOI:10.1038/s41588-026-02709-5

UK DRI Authors

Prof Sir John Hardy

Group Leader

Harnessing genetics to build a better understanding of dementia

Prof Sir John Hardy

Prof Julie Williams

Group Leader

Understanding the genetics of Alzheimer's disease

Prof Julie Williams