Oncofetal IGF2BP3-mediated control of microRNA structural diversity in the malignancy of early-stage lung adenocarcinoma

Author:

Fujiwara Yuko1ORCID,Takahashi Ryou-u2ORCID,Saito Motonobu3,Umakoshi Michinobu4,Shimada Yoko5,Koyama Kei4,Yatabe Yasushi6,Watanabe Shun-ichi7,Koyota Souichi8,Minamiya Yoshihiro9,Tahara Hidetoshi2,Kono Koji3,Shiraishi Kouya510ORCID,Kohno Takashi5,Goto Akiteru4ORCID,Tsuchiya Naoto1

Affiliation:

1. Laboratory of Molecular Carcinogenesis, National Cancer Center Research Institute, Tokyo 104-0045, Japan

2. Department of Cellular and Molecular Biology, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima 734-8553, Japan

3. Department of Gastrointestinal Tract Surgery, Fukushima Medical University School of Medicine, Fukushima 960-1295, Japan

4. Department of Cellular and Organ Pathology, Graduate School of Medicine, Akita University, Akita 010-8543, Japan

5. Division of Genome Biology, National Cancer Center Research Institute, Tokyo 104-0045, Japan

6. Department of Diagnostic Pathology, National Cancer Center Hospital, Tokyo 104-0045, Japan

7. Department of Thoracic Surgery, National Cancer Center Hospital, Tokyo 104-0045, Japan

8. Molecular Medicine Laboratory, Bioscience Education and Research Support Center, Akita University, Akita 010-8543, Japan

9. Department of Thoracic Surgery, Akita University Hospital, Akita 010-8543, Japan

10. Department of Clinical Genomics, National Cancer Center Research Institute, Tokyo 104-0045, Japan

Abstract

The nature of microRNA (miRNA) dysfunction in carcinogenesis remains controversial because of the complex connection between miRNA structural diversity and biological processes. Here, we found that oncofetal IGF2BP3 regulates the selective production of a subset of 3′-isoforms (3′-isomiRs), including miR-21-5p and Let-7 family, which induces significant changes in their cellular seed occupancy and structural components, establishing a cancer-specific gene expression profile. The D-score, reflecting dominant production of a representative miR-21-5p+C (a 3′-isomiR), discriminated between clinical early-stage lung adenocarcinoma (LUAD) cases with low and high recurrence risks, and was associated with molecular features of cell cycle progression, epithelial–mesenchymal transition pressure, and immune evasion. We found that IGF2BP3 controls the production of miR-21-5p+C by directing the nuclear Drosha complex to select the cleavage site. IGF2BP3 was also involved in the production of 3′-isomiRs of miR-425-5p and miR-454-3p. IGF2BP3-regulated these three miRNAs are suggested to be associated with the regulation of p53, TGF-β, and TNF pathways in LUAD. Knockdown of IGF2BP3 also induced a selective upregulation of Let-7 3′-isomiRs, leading to increased cellular Let-7 seed occupancy and broad repression of its target genes encoding cell cycle regulators. The D-score is an index that reflects this cellular situation. Our results suggest that the aberrant regulation of miRNA structural diversity is a critical component for controlling cellular networks, thus supporting the establishment of a malignant gene expression profile in early stage LUAD.

Funder

Japan Agency for Medical Research and Development

MEXT | Japan Society for the Promotion of Science

Publisher

Proceedings of the National Academy of Sciences

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