Functional role of GLI2 in cancer-associated fibroblasts for modulation of the fibrotic tumor microenvironment within pancreatic cancer.

J John Y. Kwon R Renzo Vera (Mayo Clinic, Rochester, MN) M Maite G. Fernadez-Barrena (Universidad de Navarra, Navarra, Spain) J Jose M. Falero R Roberto G. Chaparro (University of Texas at El Paso, El Paso, TX) M Matthew D. Ross M Merih Deniz Toruner M Murat Toruner E Ezequiel Tolosa (Mayo Clinic, Rochester, MN) L Luciana Almada (Mayo Clinic, Rochester, MN) H Huocong Huang R Rolf A. Brekken M Martin E Fernandez-Zapico (Mayo Clinic Rochester, Rochester, MN)

Abstract

4155 Background: The tumor microenvironment (TME) that surrounds pancreatic ductal adenocarcinoma (PDAC) is a multi-faceted and dynamic ecosystem in which stromal fibroblasts communicate with cancer cells to mediate tumor growth, metastasis, and chemotherapy resistance. It is well recognized that both cancer-associated fibroblasts (CAFs) and its non-cellular, fibrotic components within the TME can foster a protumorigenic environment for PDAC. However, we still lack a comprehensive understanding of the precise mechanisms in which this dense, fibrotic matrix can help drive malignant behaviors. Here, we reveal a novel mechanism in which the zinc-finger transcription factor GLI2 regulates type 1 collagen expression within CAFs and how the soluble variant of this collagen promotes irinotecan chemoresistance. Methods: We leveraged transcriptomic data from The Cancer Genome Atlas, International Cancer Genome Consortium, and Clinical Proteomic Tumor Analysis Consortium to evaluate GLI2 expression and stromal content of human PDAC tumors through bulk RNA-sequencing deconvolution. Using single-nucleus RNA sequencing of human PDAC tumors, we validated the association of GLI2 expression and stromal matrix constituents in CAFs. Chromatin immunoprecipitation assays in human CAFs confirmed GLI2 binding at the COL1A1 promoter. Through RNAi-based inactivation of GLI2, we determined how loss of GLI2 impacts regulation of type 1 collagen. Additionally, we conducted MTT assays to assess tumor viability in response to irinotecan treatment. Results: Transcriptomic analysis revealed that GLI2 is highly enriched in CAFs and strongly correlated with stromal fibrosis compared to other non-tumor cell constituents within the TME. We have shown that GLI2 directly binds to the promoter of COL1A1, a key component of type 1 collagen, in CAFs and regulates its transcription in a manner dependent on TGFβ1 signaling. Interestingly, PDAC tumors exposed to type 1 collagen show increased expression of pro-tumorigenic pathways involved in inflammation, EGR signaling, cytokine-receptor interactions, and irinotecan resistance. We further validate that human PDAC cells pre-treated with collagen can confer chemoresistance to irinotecan with viability assays. Conclusions: Taken together, our study demonstrates a novel mechanism in which GLI2 regulates the secretion of collagen within CAFs, which in turn can enable PDAC to acquire resistance to standard-of-care treatments. These findings highlight not only the oncogenic functions for CAFs and their fibrotic secretome, but also open new avenues in which therapeutic targeting of the TME may provide clinical benefit for PDAC patients.

Article Details

Volume / Issue Vol. 43, Issue 16_suppl
Published June 01, 2025
Pages 4155-4155
ISSN 0732-183X
Publisher Lippincott Williams & Wilkins

Journal Info

Journal of Clinical Oncology

Lippincott Williams & Wilkins

ISSN: 0732-183X Health Sciences

Authors (13)

J

John Y. Kwon

R

Renzo Vera

Mayo Clinic, Rochester, MN

M

Maite G. Fernadez-Barrena

Universidad de Navarra, Navarra, Spain

J

Jose M. Falero

R

Roberto G. Chaparro

University of Texas at El Paso, El Paso, TX

M

Matthew D. Ross

M

Merih Deniz Toruner

M

Murat Toruner

E

Ezequiel Tolosa

Mayo Clinic, Rochester, MN

L

Luciana Almada

Mayo Clinic, Rochester, MN

H

Huocong Huang

R

Rolf A. Brekken

M

Martin E Fernandez-Zapico

Mayo Clinic Rochester, Rochester, MN