Notch3 restricts metastasis of breast cancers through regulation of the JAK/STAT5A signaling pathway

Author:

Chen Min-Na,Fang Ze-Xuan,Wu Zheng,Bai Jing-Wen,Li Rong-Hui,Wen Xiao-Fen,Zhang Guo-Jun,Liu Jing

Abstract

Abstract Purpose To explore the potential role of signal transducer and activator of transcription 5A (STAT5A) in the metastasis of breast cancer, and its mechanism of regulation underlying. Methods and results TCGA datasets were used to evaluate the expression of STAT5A in normal and different cancerous tissues through TIMER2.0, indicating that STAT5A level was decreased in breast cancer tissues compared with normal ones. Gene Set Enrichment Analysis predicted that STAT5A was associated with the activation of immune cells and cell cycle process. We further demonstrated that the infiltration of immune cells was positively associated with STAT5A level. Influorescence staining revealed the expression and distribution of F-actin was regulated by STAT5A, while colony formation assay, wound healing and transwell assays predicted the inhibitory role of STAT5A in the colony formation, migratory and invasive abilities in breast cancer cells. In addition, overexpression of the Notch3 intracellular domain (N3ICD), the active form of Notch3, resulted in the increased expression of STAT5A. Conversely, silencing of Notch3 expression by siNotch3 decreased STAT5A expression, supporting that STAT5A expression is positively associated with Notch3 in human breast cancer cell lines and breast cancer tissues. Mechanistically, chromatin immunoprecipitation showed that Notch3 was directly bound to the STAT5A promoter and induced the expression of STAT5A. Moreover, overexpressing STAT5A partially reversed the enhanced mobility of breast cancer cells following Notch3 silencing. Low expression of Notch3 and STAT5A predicted poorer prognosis of patients with breast cancer. Conclusion The present study demonstrates that Notch3 inhibits metastasis in breast cancer through inducing transcriptionally STAT5A, which was associated with tumor-infiltrating immune cells, providing a novel strategy to treat breast cancer.

Funder

Science and Technology Planning Project of Shantou, China

Science and Technology Planning Project of Xiamen

Young Investigator Research Program of Xiang’an Hospital of Xiamen University

Research Fund of Xiamen Key Laboratory of Endocrine-Related Cancer Precision Medicine

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Special Grant for Key Area Programs of Guangdong Education Department

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Genetics,Oncology

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