4.8 Article

LNC942 promoting METTL14-mediated m6A methylation in breast cancer cell proliferation and progression

Journal

ONCOGENE
Volume 39, Issue 31, Pages 5358-5372

Publisher

SPRINGERNATURE
DOI: 10.1038/s41388-020-1338-9

Keywords

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Funding

  1. National Natural Science Foundation of China [31828005, 81872905, 81673475, U1608281]
  2. National Natural Science Foundation of Liaoning [U1608281]
  3. Liaoning Revitalization Talents Program [XLYC1807155]
  4. China Postdoctoral Science Foundation [2019M661180]
  5. Special Foundation of China postdoctoral science foundation [2019T120225]
  6. Shenyang ST Projects [19-109-4-09]

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Increasing evidence supports that long noncoding RNAs (lncRNAs) act as master regulators involved in tumorigenesis and development at theN6-methyladenine (m(6)A) epigenetic modification level. However, the underlying regulatory mechanism in breast cancer (BRCA) remains elusive. Here, we unveil that LINC00942 (LNC942) exerts its functions as an oncogene in promoting METTL14-mediated m(6)A methylation and regulating the expression and stability of its target genes CXCR4 and CYP1B1 in BRCA initiation and progression. Specifically, LNC942 and METTL14 were significantly upregulated accompanied with the upregulation of m(6)A levels in BRCA cells and our included BRCA cohorts (n = 150). Functionally, LNC942 elicits potent oncogenic effects on promoting cell proliferation and colony formation and inhibiting cell apoptosis, subsequently elevating METTL14-mediated m(6)A methylation levels and its associated mRNA stability and protein expression of CXCR4 and CYP1B1 in BRCA cells. Mechanistically, LNC942 directly recruits METTL14 protein by harboring the specific recognize sequence (+176-+265), thereby stabilized the expression of downstream targets of LNC942 including CXCR4 and CYP1B1 through posttranscriptional m(6)A methylation modification in vitro and in vivo. Therefore, our results uncover a novel LNC942-METTL14-CXCR4/CYP1B1 signaling axis, which provides new targets and crosstalk m(6)A epigenetic modification mechanism for BRCA prevention and treatment.

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