Integrated enhancer regulatory network by enhancer–promoter looping in gastric cancer

Author:

Zhu Tianhui1,Okabe Atsushi12,Usui Genki13,Fujiki Ryoji1,Komiyama Daichi1,Huang Kie Kyon4,Seki Motoaki1,Fukuyo Masaki1,Abe Hiroyuki3,Ning Meng1,Okada Tomoka1,Minami Mizuki1,Matsumoto Makoto1,Fan Qin1,Rahmutulla Bahityar1,Hoshii Takayuki1ORCID,Tan Patrick456,Morikawa Teppei7,Ushiku Tetsuo3,Kaneda Atsushi12ORCID

Affiliation:

1. Department of Molecular Oncology, Graduate School of Medicine, Chiba University , Chiba 260-8670 , Japan

2. Health and Disease Omics Center, Chiba University , Chiba 260-8670 , Japan

3. Department of Pathology, Graduate School of Medicine, The University of Tokyo , Tokyo 113-0033 , Japan

4. Program in Cancer and Stem Cell Biology, Duke–NUS Medical School , Singapore  169857 , Singapore

5. Genome Institute of Singapore, Agency for Science, Technology and Research , Singapore  138632 , Singapore

6. Cancer Science Institute of Singapore, National University of Singapore , Singapore  117599 , Singapore

7. Department of Diagnostic Pathology, NTT Medical Center Tokyo , Tokyo 141-8625 , Japan

Abstract

Abstract Enhancer cis-regulatory elements play critical roles in gene regulation at many stages of cell growth. Enhancers in cancer cells also regulate the transcription of oncogenes. In this study, we performed a comprehensive analysis of long-range chromatin interactions, histone modifications, chromatin accessibility and expression in two gastric cancer (GC) cell lines compared to normal gastric epithelial cells. We found that GC-specific enhancers marked by histone modifications can activate a population of genes, including some oncogenes, by interacting with their proximal promoters. In addition, motif analysis of enhancer–promoter interacting enhancers showed that GC-specific transcription factors are enriched. Among them, we found that MYB is crucial for GC cell growth and activated by the enhancer with an enhancer–promoter loop and TCF7 upregulation. Clinical GC samples showed epigenetic activation of enhancers at the MYB locus and significant upregulation of TCF7 and MYB, regardless of molecular GC subtype and clinicopathological factors. Single-cell RNA sequencing of gastric mucosa with intestinal metaplasia showed high expression of TCF7 and MYB in intestinal stem cells. When we inactivated the loop-forming enhancer at the MYB locus using CRISPR interference (dCas9-KRAB), GC cell growth was significantly inhibited. In conclusion, we identified MYB as an oncogene activated by a loop-forming enhancer and contributing to GC cell growth.

Funder

Japan Society for the Promotion of Science

Japan Agency for Medical Research and Development

Chiba University

Publisher

Oxford University Press (OUP)

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