Generation and multiomic profiling of a TP53/CDKN2A double-knockout gastroesophageal junction organoid model

Author:

Zhao Hua123ORCID,Cheng Yulan2,Kalra Andrew2ORCID,Ma Ke24,Zheng Yueyuan5ORCID,Ziman Benjamin1ORCID,Tressler Caitlin6,Glunde Kristine678,Shin Eun Ji2ORCID,Ngamruengphong Saowanee2,Khashab Mouen2,Singh Vikesh2ORCID,Anders Robert A.9,Jit Simran2ORCID,Wyhs Nicolas7ORCID,Chen Wei3ORCID,Li Xu10ORCID,Lin De-Chen1ORCID,Meltzer Stephen J.2ORCID

Affiliation:

1. Center for Craniofacial Molecular Biology, Herman Ostrow School of Dentistry, and Norris Comprehensive Cancer Center, University of Southern California, Los Angeles, CA 90033, USA.

2. Division of Gastroenterology and Hepatology, Department of Medicine and Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.

3. Clinical Laboratory, The First Affiliated Hospital of Xi’an Jiaotong University, No. 277 Yanta West Road, Xi’an 710061, Shaanxi, China.

4. Einstein Healthcare Network, Philadelphia, PA 19136, USA.

5. Department of Medicine, Cedars-Sinai Medical Center, Los Angeles, CA 90048, USA.

6. Russell H. Morgan Department of Radiology and Radiological Science, Division of Cancer Imaging Research, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.

7. The Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.

8. Department of Biological Chemistry, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.

9. Department of Pathology, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.

10. Center for Translational Medicine, The First Affiliated Hospital of Xi’an Jiaotong University, Xi’an 710061, Shaanxi, China.

Abstract

Inactivation of the tumor suppressor genes tumor protein p53 ( TP53 ) and cyclin-dependent kinase inhibitor 2A ( CDKN2A ) occurs early during gastroesophageal junction (GEJ) tumorigenesis. However, because of a paucity of GEJ-specific disease models, cancer-promoting consequences of TP53 and CDKN2A inactivation at the GEJ have not been characterized. Here, we report the development of a wild-type primary human GEJ organoid model and a CRISPR-edited transformed GEJ organoid model. CRISPR-Cas9–mediated TP53 and CDKN2A knockout ( TP53/CDKN2A KO ) in GEJ organoids induced morphologic dysplasia and proneoplastic features in vitro and tumor formation in vivo. Lipidomic profiling identified several platelet-activating factors (PTAFs) among the most up-regulated lipids in CRISPR-edited organoids. PTAF/PTAF receptor (PTAFR) abrogation by siRNA knockdown or a pharmacologic inhibitor (WEB2086) reduced proliferation and other proneoplastic features of TP53/CDKN2A KO GEJ organoids in vitro and tumor formation in vivo. In addition, murine xenografts of Eso26, an established human esophageal adenocarcinoma cell line, were suppressed by WEB2086. Mechanistically, TP53/CDKN2A dual inactivation disrupted both the transcriptome and the DNA methylome, likely mediated by key transcription factors, particularly forkhead box M1 (FOXM1). FOXM1 activated PTAFR transcription by binding to the PTAFR promoter, further amplifying the PTAF-PTAFR pathway. Together, these studies established a robust model system for investigating early GEJ neoplastic events, identified crucial metabolic and epigenomic changes occurring during GEJ model tumorigenesis, and revealed a potential cancer therapeutic strategy. This work provides insights into proneoplastic mechanisms associated with TP53/CDKN2A inactivation in early GEJ neoplasia, which may facilitate early diagnosis and prevention of GEJ neoplasms.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine

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