4.7 Article

JNK-mediated Ser27 phosphorylation and stabilization of SIRT1 promote growth and progression of colon cancer through deacetylation-dependent activation of Snail

期刊

MOLECULAR ONCOLOGY
卷 16, 期 7, 页码 1555-1571

出版社

WILEY
DOI: 10.1002/1878-0261.13143

关键词

colon cancer; deacetylation; post-translational modification; proinflammatory cytokines; SIRT1; snail

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资金

  1. Basic Science Research Grant from the National Research Foundation, Republic of Korea [2021R1A2C2014186, 2021R1l1A1A01046540]
  2. BK21 FOUR Program from the National Research Foundation, Republic of Korea [5120200513755]
  3. National Research Foundation of Korea [2021R1A2C2014186] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

SIRT1 and its phosphorylated form at serine 27 are upregulated in colon cancer patients' tissues and cells. The phosphorylated form of SIRT1 regulates the activity of Snail and transcription of interleukin by deacetylation, promoting the proliferation and tumor formation of colon cancer cells.
Sirtuin 1 (SIRT1), an NAD(+)-dependent histone/protein deacetylase, has multifaceted functions in various biological events such as inflammation, aging, and energy metabolism. The role of SIRT1 in carcinogenesis, however, is still under debate. Recent studies have indicated that aberrant overexpression of SIRT1 is correlated with metastasis and poor prognosis in several types of malignancy, including colorectal cancer. In the present study, we found that both SIRT1 and SIRT1 phosphorylated on serine 27 were coordinately upregulated in colon cancer patients' tissues and human colon cancer cell lines. This prompted us to investigate a role of phospho-SIRT1 in the context of colon cancer progression. A phosphorylation-defective mutant form of SIRT1, in which serine 27 was substituted by alanine (SIRT1-S27A), exhibited lower protein stability compared to that of wild-type SIRT1. Notably, human colon cancer (HCT-116) cells harboring the SIRT1-S27A mutation showed decreased cell proliferation and reduced capability to form xenograft tumor in athymic nude mice, which was accompanied by diminished transcriptional activity of Snail. HCT-116 cells carrying SIRT1-S27A were less capable of deacetylating the Snail protein, with a concomitant decrease in the levels of interleukin (IL)-6 and IL-8 mRNA transcripts. Taken together, these observations suggest that SIRT1 stabilized through phosphorylation on serine 27 exerts oncogenic effects at least partly through deacetylation-dependent activation of Snail and subsequent transcription of IL-6 and IL-8 in human colon cancer cells.

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