4.7 Article

Transcriptional regulator CTR9 promotes hepatocellular carcinoma progression and metastasis via increasing PEG10 transcriptional activity

期刊

ACTA PHARMACOLOGICA SINICA
卷 43, 期 8, 页码 2109-2118

出版社

NATURE PUBL GROUP
DOI: 10.1038/s41401-021-00812-3

关键词

hepatocellular carcinoma; Cln Three Requiring 9; paternally expressed gene 10; cell cycle; matrix metalloproteinase

资金

  1. Jiangsu Provincial Commission of Health and Family Planning [H2018037, BJ18010]
  2. Basic Research Program of Jiangsu Province [BK20191153]
  3. Xuzhou Institute of Technology [KC20091, KC19035]
  4. National Natural Science Foundation of China [81874081]
  5. Jiangsu Provincial Qing Lan Project
  6. Jiangsu Provincial Medical Youth Talent [QNRC2016784]
  7. Young Science and Technology Innovation Team of Xuzhou Medical University Key Research and Development Plan of Jiangsu Province [TD202006]
  8. Jiangsu Postgraduate Research Innovation Program [KYCX19_2237]

向作者/读者索取更多资源

CTR9, a scaffold protein of the PAF1 complex, plays essential roles in hepatocellular carcinoma by promoting cell proliferation, invasion, and migration. CTR9 also promotes HCC development by enhancing the transcription of the oncogene PEG10. Targeting CTR9 may provide a novel therapeutic strategy for HCC.
Cln Three Requiring 9 (CTR9), a scaffold protein of the polymerase-associated factor-1 (PAF1) complex (PAF1c), is primarily localized in the nucleus of cells. Recent studies show that CTR9 plays essential roles in the development of various human cancers and their occurrence; however, its regulatory roles and precise mechanisms in hepatocellular carcinoma (HCC) remain unclear. In this study, we investigated the roles of CTR9 using in vitro assays and a xenograft mouse model. We found that CTR9 protein is upregulated in tumor tissues from HCC patients. Knockdown of CTR9 substantially reduced HCC cell proliferation, invasion, and migration, whereas its overexpression promoted these activities. In addition, in vitro results revealed that CTR9 silencing dramatically increased cell cycle regulators, p21 and p27, but markedly decreased matrix metalloproteinases, MMP2 and MMP9, with these outcomes reversed upon CTR9 overexpression. Furthermore, the underlying molecular mechanism suggests that CTR9 promoted the oncogene paternally expressed gene 10 (PEG10) transcription via its promoter region. Finally, the oncogenic roles of CTR9 were confirmed in a xenograft mouse model. This study confirms that CTR9, an oncoprotein that promotes HCC cell proliferation, invasion, and migration, increases tumor growth in a xenograft mouse model. CTR9 could be a novel therapeutic target. Further investigation is warranted to verify CTR9 potential in novel therapies for HCC.

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