1
Return

RNA methyltransferase 3 drives pancreatic acinar cell carcinoma growth and is a therapeutic target

delete2026-08-06
delete0
delete
OA
AI
S
Shotaro Tatekawa
T
Tomoaki Hara
S
Sikun Meng
T
Tetsuya Sato
T
Takahiro Arai
K
Keisuke Tamari
Y
Yasuko Arao
Y
Yoshiko Tsuji
M
Masamitsu Konno
K
Ken Ofusa
K
Koji Kitamura
S
Sarah Rennie
M
Motoharu Inui
D
Daisuke Taguchi
H
Hirofumi Akita
D
Daisuke Motooka
Y
Yoshiki Murakumo
H
Hidenori Inohara
Y
Yuichiro Doki
H
Hidetoshi Eguchi
K
Kazuhiko Ogawa
H
Hideshi Ishii *
DOI:10.1038/s41392-026-02880-5delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Pancreatic acinar cell carcinoma (ACC) is a rare and aggressive malignancy whose molecular basis remains poorly understood. N6-methyladenosine (m⁶A) RNA modification, mediated particularly through methyltransferase 3 (METTL3), has emerged as a critical regulator in various cancers. Here, we investigated the role of METTL3-mediated RNA methylation in ACC development and progression. We used transgenic mouse models overexpressing Mettl3 and SV40 large T antigen under the pancreatic elastase I promoter. Comprehensive analyses included m⁶A-methylated RNA immunoprecipitation sequencing (MeRIP-seq), single-cell RNA sequencing (scRNA-seq), functional studies using the METTL3 inhibitor STM2457, and S-adenosylmethionine (SAM)-binding domain deletion mutants to assess functional requirements. Mettl3 overexpression significantly accelerated ACC development and increased tumor aggressiveness. The SAM-binding domain was essential for tumor formation, as deletion mutants failed to promote carcinogenesis. MeRIP-seq revealed preferential methylation of cell cycle and DNA replication genes in Mettl3-overexpressing tumors. scRNA-seq analysis demonstrated enhanced malignancy signatures, including epithelial-to-mesenchymal transition and transforming growth factor-β signaling. METTL3 also promoted PRSS1-mediated signaling from ACC cells to inflammatory cancer-associated fibroblasts, creating a feed-forward loop involving IGF1 that amplifies tumor growth. Conditional Mettl3 deletion induced rapid tumor apoptosis. Pharmacological inhibition with STM2457 similarly triggered caspase-3/7-dependent apoptosis in pancreatic tumors. METTL3-mediated RNA methylation drives ACC pathogenesis through tumor-intrinsic cell cycle regulation and tumor-extrinsic stromal interactions. These findings establish METTL3 as a promising therapeutic target and provide mechanistic insights supporting the clinical development of METTL3 inhibitors for ACC treatment.

Journal

Signal Transduction and Targeted Therapy cover
Signal Transduction and Targeted Therapy
IF:
52.7
Papers:
1.2K
Citations:
5.1W

Organization

R
Research Institute for Microbial Diseases
Scholars:
42
Papers: 22
Citations: 1
D
department of biology
Scholars:
2.5K
Papers: 1.2K
Citations: 2
D
department of pathology
Scholars:
1.2K
Papers: 600
Citations: 0
D
department of radiation oncology
Scholars:
823
Papers: 267
Citations: 0
D
Department of Gastroenterological Surgery
Scholars:
596
Papers: 178
Citations: 2
H
H.U. Group Research Institute
Scholars:
6
Papers: 3
Citations: 0
Cited Papers

Cited Papers

Citing Papers

Citing Papers