CRISPR/Cas9 Screen in Gastric Cancer Patient‐Derived Organoids Reveals KDM1A‐NDRG1 Axis as a Targetable Vulnerability

Author:

Mircetic Jovan12ORCID,Camgöz Aylin34567,Abohawya Moustafa1,Ding Li8,Dietzel Julia2,Tobar Sebastián García29,Paszkowski‐Rogacz Maciej8,Seidlitz Therese9,Schmäche Tim45679,Mehnert Marie‐Christin2,Sidorova Olga810,Weitz Jürgen45679,Buchholz Frank45678ORCID,Stange Daniel E.14567

Affiliation:

1. German Cancer Consortium (DKTK) Partner Site Dresden German Cancer Research Center (DKFZ) 01309 Dresden Germany

2. Mildred Scheel Early Career Center (MSNZ) P2 Medical Faculty and University Hospital Carl Gustav Carus Technische Universität Dresden 01307 Dresden Germany

3. Division of Pediatric Neurooncology German Cancer Research Center (DKFZ) German Cancer Consortium (DKTK) 69120 Heidelberg Germany

4. National Center for Tumor Diseases (NCT) 01307 Dresden Germany

5. German Cancer Research Center (DKFZ) 01307 Heidelberg Germany

6. Faculty of Medicine and University Hospital Carl Gustav Carus Technische Universität Dresden 01307 Dresden Germany

7. Helmholtz‐Zentrum Dresden – Rossendorf (HZDR) 01307 Dresden Germany

8. Medical Systems Biology Medical Faculty and University Hospital Carl Gustav Carus Technische Universität Dresden 01307 Dresden Germany

9. Department of Visceral Thoracic and Vascular Surgery Medical Faculty and University Hospital Carl Gustav Carus Technische Universität Dresden 01307 Dresden Germany

10. Experimental and Clinical Research Center (ECRC) of the Max Delbrück Center (MDC) and Charité Berlin 10117 Berlin Germany

Abstract

AbstractViability CRISPR screens have proven indispensable in parsing genome function. However, their application in new, more physiologically relevant culturing systems like patient‐derived organoids (PDOs) has been much slower. To probe epigenetic contribution to gastric cancer (GC), the third leading cause of cancer‐related deaths worldwide, the first negative selection CRISPR screen in GC PDOs that faithfully preserve primary tumor characteristics is performed. Extensive quality control measurements showing feasibility of CRISPR screens in primary organoid culture are provided. The screen reveals the histone lysine demethylase‐1A (KDM1A) to constitute a GC vulnerability. Both genetic and pharmacological inhibition of KDM1A cause organoid growth retardation. Further, it is shown that most of KDM1A cancer‐supporting functions center on repression of N‐myc downstream regulates gene‐1 (NDRG1). De‐repression of NDRG1 by KDM1A inhibitors (KDM1Ai) causes inhibition of Wnt signaling and a strong G1 cell cycle arrest. Finally, by profiling 20 GC PDOs, it is shown that NDRG1 upregulation predicts KDM1Ai response with 100% sensitivity and 82% specificity in the tested cohort. Thus, this work pioneers the use of negative selection CRISPR screens in patient‐derived organoids, identifies a marker of KDM1Ai response, and accordingly a cohort of patients who may benefit from such therapy.

Funder

Deutsche Krebshilfe

Publisher

Wiley

Subject

General Materials Science,General Chemistry

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