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FBXW11 Activity Regulates Radial Glial Expansion in Human Cerebral Organoids

Moreno, C. L.; King, H.; Trabish, S.; Thijs, M.; Beck, D.; Bergamasco, M.; D'Araujo, T. Y.; Mosca, T. J.; Weatheritt, R.; Neely, G. G.

2026-08-21 neuroscience
10.64898/2026.08.20.746070 bioRxiv
Show abstract

Human brain development depends on tightly coordinated gene-regulatory programs and the emergence of complex tissue architecture, making large scale functional interrogation difficult using conventional screen models. To overcome this challenge, we used a pooled CRISPR screening approach. Guided by neuro-specific whole-genome screens in Drosophila, we tested 129 poorly characterised human orthologs and found 8 that modify cerebral organoid development. Candidates were validated using individual CRISPR knockouts and mosaic competition assays. Among these candidates we describe FBXW11, a substrate-recognition component of the SCF E3 ubiquitin ligase complex, as a potent negative regulator of cerebral organoid expansion. FBXW11 loss increases radial glial abundance, expands ventricular-like domains, and impairs neuronal maturation. Mechanistically, FBXW11 associates with {beta}-catenin and alters WNT signalling. FBXW11 mutations cause the autosomal-dominant Mendelian syndrome Neurodevelopmental, Jaw, Eye and Digital syndrome (NEDJED), and we found that disease-associated variants mapped preferentially to WD40 substrate-binding repeats and {beta}-catenin contact regions, linking impaired substrate recognition to neurodevelopmental disease. Together, these findings identify FBXW11 as a conserved negative regulator of {beta}-catenin-dependent radial glial expansion and neuronal maturation during human cerebral brain development.

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