NeuroD4 converts glioblastoma cells into neuron-like cells through the SLC7A11-GSH-GPX4 antioxidant axis

Date

2023-08-16

Authors

Wang, Hao
Zhao, Peiqi
Zhang, Ying
Chen, Zhen
Bao, Han
Qian, Wenqi
Wu, Jian
Xing, Zhenqiu
Hu, Xiaowei
Jin, Kunlin

ORCID

0000-0002-1336-348X (Jin, Kunlin)

Journal Title

Journal ISSN

Volume Title

Publisher

Springer Nature

Abstract

Cell fate and proliferation ability can be transformed through reprogramming technology. Reprogramming glioblastoma cells into neuron-like cells holds great promise for glioblastoma treatment, as it induces their terminal differentiation. NeuroD4 (Neuronal Differentiation 4) is a crucial transcription factor in neuronal development and has the potential to convert astrocytes into functional neurons. In this study, we exclusively employed NeuroD4 to reprogram glioblastoma cells into neuron-like cells. In vivo, the reprogrammed glioblastoma cells demonstrated terminal differentiation, inhibited proliferation, and exited the cell cycle. Additionally, NeuroD4 virus-infected xenografts exhibited smaller sizes compared to the GFP group, and tumor-bearing mice in the GFP+NeuroD4 group experienced prolonged survival. Mechanistically, NeuroD4 overexpression significantly reduced the expression of SLC7A11 and Glutathione peroxidase 4 (GPX4). The ferroptosis inhibitor ferrostatin-1 effectively blocked the NeuroD4-mediated process of neuron reprogramming in glioblastoma. To summarize, our study demonstrates that NeuroD4 overexpression can reprogram glioblastoma cells into neuron-like cells through the SLC7A11-GSH-GPX4 signaling pathway, thus offering a potential novel therapeutic approach for glioblastoma.

Description

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Citation

Wang, H., Zhao, P., Zhang, Y., Chen, Z., Bao, H., Qian, W., Wu, J., Xing, Z., Hu, X., Jin, K., Zhuge, Q., & Yang, J. (2023). NeuroD4 converts glioblastoma cells into neuron-like cells through the SLC7A11-GSH-GPX4 antioxidant axis. Cell death discovery, 9(1), 297. https://doi.org/10.1038/s41420-023-01595-8