TGFB2-AS1 inhibits triple-negative breast cancer progression via interaction with SMARCA4 and regulating its targets TGFB2 and SOX2

Author:

Zhou Cixiang1,Wang Difei1ORCID,Li Jingchi1ORCID,Wang Qiuyu1,Wo Lulu1,Zhang Xin1,Hu Zhexuan1,Wang Zheng2,Zhan Mengna3,He Ming1,Hu Guohong4,Chen Xiaosong2,Shen Kunwei2ORCID,Chen Guo-Qiang1ORCID,Zhao Qian1ORCID

Affiliation:

1. State Key Lab of Oncogene and Related Genes, Renji Hospital, Shanghai Institute of Cancer, Key Lab of Cell Differentiation and Apoptosis of Ministry of Education, Research Unit 2019RU043, Chinese Academy of Medical Sciences, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China

2. Department of General Surgery, Comprehensive Breast Health Center, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China

3. Department of Pathology, Zhongshan Hospital, Fudan University, Shanghai 200031, China

4. Chinese Academy of Sciences Key Laboratory of Tissue Microenvironment and Tumor, Shanghai Institute of Nutrition and Health, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai 200031, China

Abstract

Triple-negative breast cancer (TNBC) is the most challenging breast cancer subtype for its high rates of relapse, great metastatic potential, and short overall survival. How cancer cells acquire metastatic potency through the conversion of noncancer stem-like cells into cancer cells with stem-cell properties is poorly understood. Here, we identified the long noncoding RNA (lncRNA) TGFB2-AS1 as an important regulator of the reversibility and plasticity of noncancer stem cell populations in TNBC. We revealed that TGFB2-AS1 impairs the breast cancer stem-like cell (BCSC) traits of TNBC cells in vitro and dramatically decreases tumorigenic frequency and lung metastasis in vivo. Mechanistically, TGFB2-AS1 interacts with SMARCA4, a core subunit of the SWI/SNF chromatin remodeling complex, and results in transcriptional repression of its target genes including TGFB2 and SOX2 in an in cis or in trans way, leading to inhibition of transforming growth factor β (TGFβ) signaling and BCSC characteristics. In line with this, TGFB2-AS1 overexpression in an orthotopic TNBC mouse model remarkably abrogates the enhancement of tumor growth and lung metastasis endowed by TGFβ2. Furthermore, combined prognosis analysis of TGFB2-AS1 and TGFβ2 in TNBC patients shows that high TGFB2-AS1 and low TGFβ2 levels are correlated with better outcome. These findings demonstrate a key role of TGFB2-AS1 in inhibiting disease progression of TNBC based on switching the cancer cell fate of TNBC and also shed light on the treatment of TNBC patients.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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