A negative feedback loop between KLF9 and the EMT program dictates metastasis of hepatocellular carcinoma

Author:

Wang Tao1,Feng Limin2,Shi Zhong3,Yang Lixian45,Yu Xiaofu6,Wu Jinsong7,Sun Jirui8,Zhang Jinku8,Feng Yuxiong45ORCID,Wang Weilin91011

Affiliation:

1. Department of Interventional Oncology Renji Hospital, Shanghai Jiao Tong University School of Medicine Shanghai China

2. Zhejiang University School of Medicine Hangzhou China

3. Department of Medical Oncology Zhejiang Cancer Hospital, Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences Hangzhou China

4. First Affiliated Hospital Institute of Translational Medicine, Zhejiang University School of Medicine Hangzhou China

5. Cancer Center Zhejiang University Hangzhou China

6. Department of Thoracic Radiotherapy Zhejiang Cancer Hospital, Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences Hangzhou China

7. College of Biomedical Engineering and Instrument Science Zhejiang University Hangzhou China

8. Department of Pathology Baoding NO.1 Central Hospital Baoding China

9. Department of Hepatobiliary and Pancreatic Surgery The Second Affiliated Hospital, Zhejiang University School of Medicine Hangzhou China

10. Key Laboratory of Precision Diagnosis and Treatment for Hepatobiliary and Pancreatic Tumor of Zhejiang Province Hangzhou China

11. Research Center of Diagnosis and Treatment Technology for Hepatocellular Carcinoma of Zhejiang Province Hangzhou China

Abstract

AbstractMetastasis is the primary cause of death of hepatocellular carcinoma (HCC), while the mechanism underlying this severe disease remains largely unclear. The Kruppel‐like factor (KLF) family is one of the largest transcription factor families that control multiple physiologic and pathologic processes by governing the cellular transcriptome. To identify metastatic regulators of HCC, we conducted gene expression profiling on the MHCC97 cell series, a set of subclones of the original MHCC97 that was established by in vivo metastasis selection therefore harbouring differential metastatic capacities. We found that the expression of KLF9, a member of the KLF family, was dramatically repressed in the metastatic progeny clone of the MHCC97 cells. Functional studies revealed overexpression of KLF9 suppressed HCC migration in vitro and metastasis in vivo, while knockdown of KLF9 was sufficient to promote cell migration and metastasis accordingly. Mechanistically, we found the expression of KLF9 can reverse the pro‐metastatic epithelial‐mesenchymal transition (EMT) program via direct binding to the promoter regions of essential mesenchymal genes, thus repressing their expression. Interestingly, we further revealed that KLF9 was, in turn, directly suppressed by a mesenchymal transcription factor Slug, suggesting an intriguing negative feedback loop between KLF9 and the EMT program. Using clinical samples, we found that KLF9 was not only downregulated in HCC tissue compared to its normal counterparts but also further reduced in the HCC samples of whom had developed metastatic lesions. Together, we established a critical transcription factor that represses HCC metastasis, which is clinically and mechanically significant in HCC therapies.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cell Biology,Molecular Medicine

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