A mucus production programme promotes classical pancreatic ductal adenocarcinoma

Author:

Tonelli Claudia,Yordanov Georgi N,Hao Yuan,Deschênes AstridORCID,Hinds Juliene,Belleau Pascal,Klingbeil Olaf,Brosnan Erin,Doshi Abhishek,Park Youngkyu,Hruban Ralph H,Vakoc Christopher R,Dobin Alexander,Preall Jonathan,Tuveson David AORCID

Abstract

ObjectiveThe optimal therapeutic response in cancer patients is highly dependent upon the differentiation state of their tumours. Pancreatic ductal adenocarcinoma (PDA) is a lethal cancer that harbours distinct phenotypic subtypes with preferential sensitivities to standard therapies. This study aimed to investigate intratumour heterogeneity and plasticity of cancer cell states in PDA in order to reveal cell state-specific regulators.DesignWe analysed single-cell expression profiling of mouse PDAs, revealing intratumour heterogeneity and cell plasticity and identified pathways activated in the different cell states. We performed comparative analysis of murine and human expression states and confirmed their phenotypic diversity in specimens by immunolabeling. We assessed the function of phenotypic regulators using mouse models of PDA, organoids, cell lines and orthotopically grafted tumour models.ResultsOur expression analysis and immunolabeling analysis show that a mucus production programme regulated by the transcription factor SPDEF is highly active in precancerous lesions and the classical subtype of PDA — the most common differentiation state. SPDEF maintains the classical differentiation and supports PDA transformationin vivo. The SPDEF tumour-promoting function is mediated by its target genes AGR2 andERN2/IRE1β that regulate mucus production, and inactivation of the SPDEF programme impairs tumour growth and facilitates subtype interconversion from classical towards basal-like differentiation.ConclusionsOur findings expand our understanding of the transcriptional programmes active in precancerous lesions and PDAs of classical differentiation, determine the regulators of mucus production as specific vulnerabilities in these cell states and reveal phenotype switching as a response mechanism to inactivation of differentiation states determinants.

Funder

Thompson Foundation

Cold Spring Harbor Laboratory

Simons Foundation

American-Italian Cancer Foundation

Pershing Square Foundation

National Institutes of Health

Lustgarten Foundation

Northwell Health

National Cancer Institute

Publisher

BMJ

Subject

Gastroenterology

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