p38γ MAPK Is a Therapeutic Target for Triple-Negative Breast Cancer by Stimulation of Cancer Stem-Like Cell Expansion

Author:

Qi Xiaomei1,Yin Ning1,Ma Shao1,Lepp Adrienne1,Tang Jun2,Jing Weiqing3,Johnson Bryon3,Dwinell Michael B.4,Chitambar Christopher R.3,Chen Guan15

Affiliation:

1. Department of Pharmacology and Toxicology Medical College of Wisconsin, Milwaukee, Wisconsin

2. Laboratory Medicine Guangzhou Medical University KingMed College, China

3. Division of Hematology and Oncology Medical College of Wisconsin, Milwaukee, Wisconsin

4. Microbiology and Molecular Genetics Medical College of Wisconsin, Milwaukee, Wisconsin

5. Research Services Zablocki Veterans Affairs Medical Center Medical College of Wisconsin, Milwaukee, Wisconsin, USA

Abstract

Abstract Triple-negative breast cancer (TNBC) is highly progressive and lacks established therapeutic targets. p38γ mitogen-activated protein kinase (MAPK) (gene name: MAPK12) is overexpressed in TNBC but how overexpressed p38γ contributes to TNBC remains unknown. Here, we show that p38γ activation promotes TNBC development and progression by stimulating cancer stem-like cell (CSC) expansion and may serve as a novel therapeutic target. p38γ silencing in TNBC cells reduces mammosphere formation and decreases expression levels of CSC drivers including Nanog, Oct3/4, and Sox2. Moreover, p38γ MAPK-forced expression alone is sufficient to stimulate CSC expansion and to induce epithelial cell transformation in vitro and in vivo. Furthermore, p38γ depends on its activity to stimulate CSC expansion and breast cancer progression, indicating a therapeutic opportunity by application of its pharmacological inhibitor. Indeed, the non-toxic p38γ specific pharmacological inhibitor pirfenidone selectively inhibits TNBC growth in vitro and/or in vivo and significantly decreases the CSC population. Mechanistically, p38γ stimulates Nanog transcription through c-Jun/AP-1 via a multi-protein complex formation. These results together demonstrate that p38γ can drive TNBC development and progression and may be a novel therapeutic target for TNBC by stimulating CSC expansion. Inhibiting p38γ activity with pirfenidone may be a novel strategy for the treatment of TNBC. Stem Cells  2015;33:2738—2747

Funder

Biomedical Laboratory Research and Development Service of the VA Office of Research and Development

Cancer Center of Medical College of Wisconsin and Clinical and Translational Science Institute of Southeast Wisconsin

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

Reference53 articles.

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