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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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FAT1 , a direct transcriptional target of E2F1, suppresses cell proliferation, migration and invasion in esophageal squamous cell carcinoma.

TL;DR: Evidence is provided for the tumor suppressive function of FAT1 in ESCC cells and the transcriptional regulation of FAT 1 by E2F1 is elucidated, which may facilitate the understanding of molecular mechanisms of the progression of ESCC.
Journal ArticleDOI

Eviction from the sanctuary: Development of targeted therapy against cell adhesion molecules in acute lymphoblastic leukemia.

TL;DR: Development of targeted therapies against CAMs could improve outcome and raise the overall cure rate in ALL and review the signaling mechanisms activated by the engagement of CAMs that provide protection from chemotherapy.
Journal ArticleDOI

Mutational Landscape of Esophageal Squamous Cell Carcinoma in an Indian Cohort.

TL;DR: Exome sequence analysis of ESCC from an Indian cohort revealed several genes that were mutated or had copy number changes and genomic alterations were frequently observed in PIK3CA-AKT pathway members independent of the history of tobacco usage.
Journal ArticleDOI

The two sides of Hippo pathway in cancer

TL;DR: The Hippo pathway was originally characterized by genetic studies in Drosophila to regulate tissue growth and organ size, and the core components of this pathway are highly conserved in mammals as mentioned in this paper .
Journal ArticleDOI

Chemical Disruption of Wnt-dependent Cell Fate Decision-making Mechanisms in Cancer and Regenerative Medicine.

TL;DR: How medicinal chemistry efforts focused on first in class small molecules targeting two Wnt pathway components--the polytopic Porcupine (Porcn) acyltransferase and the cytoplasmic Tankyrase (Tnks) poly-ADP-ribosylases--have contributed to the understanding of the druggable genome and expanded the armamentarium of chemicals that can be used to influence cell fate decision-making is discussed.
References
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Journal ArticleDOI

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Debra A. Bell, +285 more
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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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