4.7 Article

p53 transcriptionally regulates SQLE to repress cholesterol synthesis and tumor growth

期刊

EMBO REPORTS
卷 22, 期 10, 页码 -

出版社

WILEY
DOI: 10.15252/embr.202152537

关键词

cholesterol; SQLE; p53; cell proliferation

资金

  1. CAMS Innovation Fund for Medical Sciences (CIFMS) [2016-I2M-4-002]
  2. National Key Research and Development Program of China [2019YFA0802600]
  3. National Natural Science Foundation of China [81672766]
  4. CAMS Basic Research Fund [2019-RC-HL-007]
  5. State Key Laboratory Special Fund [2060204]

向作者/读者索取更多资源

The research discovered that p53 can suppress cholesterol biosynthesis by inhibiting SQLE, and the downregulation of SQLE is critical for p53-mediated tumor suppression.
Cholesterol is essential for membrane biogenesis, cell proliferation, and differentiation. The role of cholesterol in cancer development and the regulation of cholesterol synthesis are still under active investigation. Here we show that under normal-sterol conditions, p53 directly represses the expression of SQLE, a rate-limiting and the first oxygenation enzyme in cholesterol synthesis, in a SREBP2-independent manner. Through transcriptional downregulation of SQLE, p53 represses cholesterol production in vivo and in vitro, leading to tumor growth suppression. Inhibition of SQLE using small interfering RNA (siRNA) or terbinafine (a SQLE inhibitor) reverses the increased cell proliferation caused by p53 deficiency. Conversely, SQLE overexpression or cholesterol addition promotes cell proliferation, particularly in p53 wild-type cells. More importantly, pharmacological inhibition or shRNA-mediated silencing of SQLE restricts nonalcoholic fatty liver disease (NAFLD)-induced liver tumorigenesis in p53 knockout mice. Therefore, our findings reveal a role for p53 in regulating SQLE and cholesterol biosynthesis, and further demonstrate that downregulation of SQLE is critical for p53-mediated tumor suppression.

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