MEK5-ERK5 Axis Promotes Self-renewal and Tumorigenicity of Glioma Stem Cells

Author:

Fukasawa Kazuya1ORCID,Lyu Jiajun1ORCID,Kubo Takuya1ORCID,Tanaka Yuki1ORCID,Suzuki Akane1ORCID,Horie Tetsuhiro2ORCID,Tomizawa Akane1ORCID,Osumi Ryoma1ORCID,Iwahashi Sayuki1ORCID,Tokumura Kazuya1ORCID,Murata Misato1ORCID,Kobayashi Masaki1ORCID,Todo Tomoki3ORCID,Hirao Atsushi45ORCID,Hinoi Eiichi16ORCID

Affiliation:

1. 1Laboratory of Pharmacology, Department of Bioactive Molecules, Gifu Pharmaceutical University, Gifu, Japan.

2. 2Medical Research Institute, Kanazawa Medical University, Ishikawa, Japan.

3. 3Division of Innovative Cancer Therapy, Institute of Medical Science, The University of Tokyo, Tokyo, Japan.

4. 4WPI Nano Life Science Institute (WPI–Nano LSI), Kanazawa University, Kanazawa, Ishikawa, Japan.

5. 5Cancer and Stem Cell Research Program, Division of Molecular Genetics, Cancer Research Institute, Kanazawa University, Kanazawa, Ishikawa, Japan.

6. 6United Graduate School of Drug Discovery and Medical Information Sciences, Gifu University, Gifu, Japan.

Abstract

Glioma stem cells (GSC) promote the malignancy of glioblastoma (GBM), the most lethal brain tumor. ERK5 belongs to the MAPK family. Here, we demonstrated that MAPK kinase 5 (MEK5)-ERK5-STAT3 pathway plays an essential role in maintaining GSC stemness and tumorigenicity by integrating genetic and pharmacologic manipulation and RNA sequencing analysis of clinical specimens. ERK5 was highly expressed and activated in GSCs. ERK5 silencing by short hairpin RNA in GSCs suppressed the self-renewal potential and GBM malignant growth concomitant with downregulation of STAT3 phosphorylation. Conversely, the activation of the MEK5-ERK5 pathway by introducing ERK5 or MEK5 resulted in increased GSC stemness. The introduction of STAT3 counteracted the GSC phenotypes by ERK5 silencing. Moreover, ERK5 expression and signaling are associated with poor prognosis in patients with GBM with high stem cell properties. Finally, pharmacologic inhibition of ERK5 significantly inhibited GSC self-renewal and GBM growth. Collectively, these findings uncover a crucial role of the MEK5-ERK5-STAT3 pathway in maintaining GSC phenotypes and GBM malignant growth, thereby providing a potential target for GSC-directed therapy.Significance:In this study, we demonstrated that MEK5-ERK5-STAT3 axis plays a critical role in maintaining stemness and tumorigenicity in GSCs by using genetic, pharmacologic, and bioinformatics tools, identifying the MEK5-ERK5-STAT3 axis as a potential target for GSC-directed therapy.

Funder

MEXT | Japan Society for the Promotion of Science

Cancer Research Institute, Kanazawa University

Mishima Kaiun Memorial Foundation

Publisher

American Association for Cancer Research (AACR)

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