Chromatin Rewiring by Mismatch Repair Protein MSH2 Alters Cell Adhesion Pathways and Sensitivity to BET Inhibition in Gastric Cancer

Author:

Nargund Amrita M.1ORCID,Xu Chang1ORCID,Mandoli Amit1ORCID,Okabe Atsushi2ORCID,Chen Gao Bin1ORCID,Huang Kie Kyon1,Sheng Taotao13,Yao Xiaosai4ORCID,Teo Jia Ming Nickolas1ORCID,Sundar Raghav156ORCID,Kok Yee Jiun7,See Yi Xiang8ORCID,Xing Manjie9,Li Zhimei10,Yong Chern Han10ORCID,Anand Aparna11,Bin Adam Isa Zul Fazreen7,Poon Lai Fong1,Ng Michelle Shu Wen4,Koh Javier Yu Peng1,Ooi Wen Fong9,Tay Su Ting1ORCID,Ong Xuewen1,Tan Angie Lay Keng1,Smoot Duane T.12ORCID,Ashktorab Hassan1314,Grabsch Heike I.1516ORCID,Fullwood Melissa J.811,Teh Bin Tean1101117,Bi Xuezhi17ORCID,Kaneda Atsushi2ORCID,Li Shang16,Tan Patrick191117ORCID

Affiliation:

1. 1Cancer and Stem Cell Biology Program, Duke-NUS Medical School, Singapore, Singapore.

2. 2Department of Molecular Oncology, Graduate School of Medicine, Chiba University, Chiba, Japan.

3. 3Department of Biochemistry, National University of Singapore, Singapore, Singapore.

4. 4Institute of Molecular and Cell Biology, Singapore, Singapore.

5. 5Department of Hematology-Oncology, National University Health System, Singapore, Singapore.

6. 6Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.

7. 7Bioprocessing Technology Institute, Singapore, Singapore.

8. 8School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.

9. 9Epigenetic and Epitranscriptomic Regulation, Genome Institute of Singapore, Singapore, Singapore.

10. 10Division of Medical Science, Laboratory of Cancer Epigenome, National Cancer Center, Singapore, Singapore.

11. 11Cancer Science Institute of Singapore, National University of Singapore, Singapore, Singapore.

12. 12Department of Internal Medicine, Meharry Medical College, Nashville, Tennessee.

13. 13Gasteroentrology Division, Howard University, Washington D.C.

14. 14Internal Medicine, Howard University, Washington D.C.

15. 15Department of Pathology, GROW—School for Oncology and Developmental Biology, Maastricht University Medical Center, Maastricht, the Netherlands.

16. 16Division of Pathology and Data Analytics, Leeds Institute of Medical Research at St James's, University of Leeds, Leeds, United Kingdom.

17. 17SingHealth/Duke-NUS Institute of Precision Medicine, National Heart Centre, Singapore, Singapore.

Abstract

Abstract Mutations in the DNA mismatch repair gene MSH2 are causative of microsatellite instability (MSI) in multiple cancers. Here, we discovered that besides its well-established role in DNA repair, MSH2 exerts a novel epigenomic function in gastric cancer. Unbiased CRISPR-based mass spectrometry combined with genome-wide CRISPR functional screening revealed that in early-stage gastric cancer MSH2 genomic binding is not randomly distributed but rather is associated specifically with tumor-associated super-enhancers controlling the expression of cell adhesion genes. At these loci, MSH2 genomic binding was required for chromatin rewiring, de novo enhancer–promoter interactions, maintenance of histone acetylation levels, and regulation of cell adhesion pathway expression. The chromatin function of MSH2 was independent of its DNA repair catalytic activity but required MSH6, another DNA repair gene, and recruitment to gene loci by the SWI/SNF chromatin remodeler SMARCA4/BRG1. Loss of MSH2 in advanced gastric cancers was accompanied by deficient cell adhesion pathway expression, epithelial–mesenchymal transition, and enhanced tumorigenesis in vitro and in vivo. However, MSH2-deficient gastric cancers also displayed addiction to BAZ1B, a bromodomain-containing family member, and consequent synthetic lethality to bromodomain and extraterminal motif (BET) inhibition. Our results reveal a role for MSH2 in gastric cancer epigenomic regulation and identify BET inhibition as a potential therapy in MSH2-deficient gastric malignancies. Significance: DNA repair protein MSH2 binds and regulates cell adhesion genes by enabling enhancer–promoter interactions, and loss of MSH2 causes deficient cell adhesion and bromodomain and extraterminal motif inhibitor synthetic lethality in gastric cancer.

Funder

National Medical Research Council

Ministry of Education - Singapore

National Research Foundation Singapore

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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