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Transcription factor switching drives subtype-specific pancreatic cancer

delete2025-10-30
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OA
AI
S
Shalini V. Rao
L
Lisa Young
D
Danya Cheeseman
S
Sean M. Flynn
N
Niklas Krebs
D
Dominique‐Laurent Couturier
S
Stephanie Mack
R
Rebecca Brais
J
Jill Temple
A
Amy Smith
E
Evangelia K. Papachristou
C
Catarina Pelicano
C
Chandra Sekhar Reddy Chilamakuri
K
Krzysztof Herka
H
Hideo Baba
L
Luay Farah
P
Phyllis F. Cheung
J
Jens T. Siveke
S
Stéphane Guerrier
L
Luca Insolia
M
Michael B. Gill
E
Emily Archer Goode
S
Steven Kupczak
Y
Yi Cheng
G
Giacomo Borsari
D
Duncan I. Jodrell
C
Clive S. D’Santos
A
Alasdair Russell
B
Barbara T. Grünwald
E
Eva Serrão
I
Igor Chernukhin
J
Jason S. Carroll *
DOI:10.1038/s41588-025-02389-7delete
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Abstract

Abstract

En 中文
Emerging evidence suggests that lineage-specifying transcription factors control the progression of pancreatic ductal adenocarcinoma (PDAC). We have discovered a transcription factor switching mechanism involving the poorly characterized orphan nuclear receptor HNF4G and the putative pioneer factor FOXA1, which drives PDAC progression. Using our unbiased protein interactome discovery approach, we identified HNF4A and HNF4G as reproducible, FOXA1-associated proteins, in both preclinical models and Whipple surgical samples. In the primary tumor context, we consistently find that the dominant transcription factor is HNF4G, where it functions as the driver. A molecular switch occurs in advanced disease, whereby HNF4G expression or activity decreases, unmasking FOXA1’s transcriptional potential. Derepressed FOXA1 drives late-stage disease by orchestrating metastasis-specific enhancer–promoter loops to regulate the expression of metastatic genes. Overall survival is influenced by HNF4G and FOXA1 activity in primary tumor growth and in metastasis, respectively. We suggest that the existence of stage-dependent transcription factor activity, triggered by molecular compartmentalization, mediates the progression of PDAC. Pancreatic cancer progression is driven by a switch from HNF4G-driven transcriptional activity in primary disease to FOXA1-mediated transcription in the metastatic setting.
Keywords:
Cancer
Biomedicine
general
Human Genetics
Cancer Research
Agriculture
Gene Function
Animal Genetics and Genomics
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Nature Genetics cover
Nature Genetics
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University of Cambridge
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university of geneva
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University Hospital Essen
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Cambridge University Hospitals NHS Foundation Trust
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