Publication: Mutational scanning reveals oncogenic CTNNB1 mutations have diverse effects on signaling
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Krishna, Anagha
Meynert, Alison
Dolt, Karamjit Singh
Kelder, Martijn
Mesropian, Agavni
Ewing, Ailith
Brouwers, Conny
Claassens, Jill Wc
Linssen, Margot M.
Sheraz, Shahida
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eng
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No
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Abstract
CTNNB1, the gene encoding beta-catenin, is a frequent target for oncogenic mutations activating the canonical Wnt signaling pathway, typically through missense mutations within a degron hotspot motif in exon 3. Here, we combine saturation genome editing with a fluorescent reporter assay to quantify signaling phenotypes for all 342 possible missense mutations in the mutation hotspot. Our data define the genetic requirements for beta-catenin degron function, refine the consensus motif for substrate recognition by beta-TRCP and reveal diverse levels of signal activation among known driver mutations. Tumorigenesis in different human tissues involves selection for CTNNB1 mutations spanning distinct ranges of predicted activity. In hepatocellular carcinoma, mutation effect scores distinguish two tumor subclasses with different levels of beta-catenin signaling, and weaker mutations predict greater immune cell infiltration in the tumor microenvironment. Our work provides a resource to understand mutational diversity within a pan-cancer mutation hotspot, with potential implications for targeted therapy.
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Nature Research
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Nature Genetics
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DOI
10.1038/s41588-025-02496-5
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