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Recurrent somatic mutation of FAT1 in multiple human cancers leads to aberrant Wnt activation

TLDR
Recurrent somatic mutations of the Drosophila melanogaster tumor suppressor–related gene FAT1 in glioblastoma, colorectal cancer, and head and neck cancer strongly point to FAT1 as a tumor suppressing gene driving loss of chromosome 4q35, a prevalent region of deletion in cancer.
Abstract
Aberrant Wnt signaling can drive cancer development. In many cancer types, the genetic basis of Wnt pathway activation remains incompletely understood. Here, we report recurrent somatic mutations of the Drosophila melanogaster tumor suppressor-related gene FAT1 in glioblastoma (20.5%), colorectal cancer (7.7%), and head and neck cancer (6.7%). FAT1 encodes a cadherin-like protein, which we found is able to potently suppress cancer cell growth in vitro and in vivo by binding β-catenin and antagonizing its nuclear localization. Inactivation of FAT1 via mutation therefore promotes Wnt signaling and tumorigenesis and affects patient survival. Taken together, these data strongly point to FAT1 as a tumor suppressor gene driving loss of chromosome 4q35, a prevalent region of deletion in cancer. Loss of FAT1 function is a frequent event during oncogenesis. These findings address two outstanding issues in cancer biology: the basis of Wnt activation in non-colorectal tumors and the identity of a 4q35 tumor suppressor.

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Targeting WNT Signaling for Multifaceted Glioblastoma Therapy.

TL;DR: The role of WNT in CNS development is summarized and how WNT signaling makes key contributions to malignant glioma stemness, invasiveness, therapeutic resistance, and angiogenesis are described.
Journal ArticleDOI

Genomic insights into head and neck cancer

TL;DR: Application of sophisticated data-mining approaches, integrating genomic information with profiles of tumor methylation and gene expression, have helped to further yield insights, and in some cases suggest additional approaches to stratify patients for clinical treatment.
Journal ArticleDOI

α-Ketoglutarate attenuates Wnt signaling and drives differentiation in colorectal cancer

TL;DR: Using CRC patient-derived organoids and several in vivo CRC tumour models, it is shown that aKG supplementation suppresses Wnt signaling and promotes cellular differentiation, thereby significantly restricting tumour growth and extending survival.
Journal ArticleDOI

Targeting β-catenin signaling for therapeutic intervention in MEN1 -deficient pancreatic neuroendocrine tumours

TL;DR: The data demonstrate that β-catenin signalling is an effective therapeutic target for MEN1-mutant PNETs and may contribute to individualized and combined medication treatment for P NETs.
References
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Journal ArticleDOI

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Journal ArticleDOI

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Journal ArticleDOI

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Roger E. McLendon, +233 more
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TL;DR: The interim integrative analysis of DNA copy number, gene expression and DNA methylation aberrations in 206 glioblastomas reveals a link between MGMT promoter methylation and a hypermutator phenotype consequent to mismatch repair deficiency in treated gliobeasts, demonstrating that it can rapidly expand knowledge of the molecular basis of cancer.
Journal ArticleDOI

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Journal ArticleDOI

Integrated genomic analyses of ovarian carcinoma

Debra A. Bell, +285 more
- 30 Jun 2011 - 
TL;DR: It is reported that high-grade serous ovarian cancer is characterized by TP53 mutations in almost all tumours (96%); low prevalence but statistically recurrent somatic mutations in nine further genes including NF1, BRCA1,BRCA2, RB1 and CDK12; 113 significant focal DNA copy number aberrations; and promoter methylation events involving 168 genes.
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