Gene Therapy with Enterovirus 3 C Protease: A Promising Strategy for Various Solid Tumors

X Xiaotong Yang W Wei Li S Shaokang Yang Z Zhuang Wang (State Key Laboratory of Photoelectric Conversion and Utilization of Solar Energy, Qingdao New Energy Shandong Laboratory, Qingdao Institute of Bioenergy and Bioprocess Technology) J Jiye Yin W Wenhao Zhang (School of Physical Science and Technology, ShanghaiTech University, 393 Middle Huaxia Road, Shanghai 201210, China) H Huimin Tao S Siqi Li X Xiaojia Guo Q Qingsong Dai W Weiyan Zhu Y Yuexiang Li X Xintong Yan C Chongda Luo J Jiazheng Li S Sichen Ren P Ping Wang Y Yunfeng Shao Y Yan Luo (Laboratory of Advanced Materials, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, State Key Laboratory of Porous Materials for Separation and Conversion, Fudan University, 220 Handan, Shanghai 200433, P. R. China) Z Zhenyang Li J Jingjing Yang (Institute of Environmental Processes and Pollution Control, School of Environment and Ecology) Z Zhijie Chang R Ruiyuan Cao S Song Li W Wu Zhong

Abstract

Abstract Current cancer gene therapies rely primarily on antitumor immunity, but the exploration of alternative mRNA cargoes for direct antitumor effects is crucial to expand cancer gene therapies. Here we show that lipid nanoparticles (LNPs) carrying mRNA encoding a viral 3 C protease can efficiently suppress tumors by selectively inducing tumor cell apoptosis. In various solid tumor models, intracranial injection of LNPs carrying mRNA encoding the 3 C protease (3C-LNPs) significantly inhibits tumor growth and prolongs survival in glioblastoma models. Similarly, subcutaneous injection reduces tumor volume and inhibits angiogenesis in a breast cancer model, while intravenous injection inhibits tumor growth and angiogenesis and prolongs survival in hepatocellular carcinoma models. Mass spectrometry and cleavage site prediction assays identify heterogeneous nuclear ribonucleoprotein A1 (hnRNP A1) as the main target degraded by the 3 C protease. This study suggests that viral protease mRNA could be a promising broad-spectrum antitumor therapeutic.

Article Details

Volume / Issue Vol. 16, Issue 1
Published May 08, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (25)

X

Xiaotong Yang

W

Wei Li

S

Shaokang Yang

Z

Zhuang Wang

State Key Laboratory of Photoelectric Conversion and Utilization of Solar Energy, Qingdao New Energy Shandong Laboratory, Qingdao Institute of Bioenergy and Bioprocess Technology

J

Jiye Yin

W

Wenhao Zhang

School of Physical Science and Technology, ShanghaiTech University, 393 Middle Huaxia Road, Shanghai 201210, China

H

Huimin Tao

S

Siqi Li

X

Xiaojia Guo

Q

Qingsong Dai

W

Weiyan Zhu

Y

Yuexiang Li

X

Xintong Yan

C

Chongda Luo

J

Jiazheng Li

S

Sichen Ren

P

Ping Wang

Y

Yunfeng Shao

Y

Yan Luo

Laboratory of Advanced Materials, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, State Key Laboratory of Porous Materials for Separation and Conversion, Fudan University, 220 Handan, Shanghai 200433, P. R. China

Z

Zhenyang Li

J

Jingjing Yang

Institute of Environmental Processes and Pollution Control, School of Environment and Ecology

Z

Zhijie Chang

R

Ruiyuan Cao

S

Song Li

W

Wu Zhong