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Repression of ZNFX1 by LncRNA ZFAS1 mediates tobacco-induced pulmonary carcinogenesis

  1. Author:
    Xi, Sichuan
    Shan, Jigui
    Wu, Xinwei
    Wang, Haitao
    Zhang, Mary R
    Oyetunji, Shakirat
    Xu, Hong
    Xiao, Zuoxiang
    Tolunay, Tuana
    Carr, Shamus R
    Hoang, Chuong D
    Schrump, David S [ORCID]
  2. Author Address

    Thoracic Epigenetics Section, Thoracic Surgery Branch, Center for Cancer Research, National Cancer Institute, Building 10; 4-3942, 10 Center Drive, Bethesda, MD, 20892, USA., Advanced Biomedical Computational Science, Frederick National Laboratory for Cancer Research, Frederick, MD, 21702, USA., Laboratory of Cancer Prevention, National Cancer Institute, Frederick, MD, 21702, USA., Cancer and Inflammation Program, Center for Cancer Research, National Cancer Institute, Frederick, MD, 21702, USA., Thoracic Epigenetics Section, Thoracic Surgery Branch, Center for Cancer Research, National Cancer Institute, Building 10; 4-3942, 10 Center Drive, Bethesda, MD, 20892, USA. David_Schrump@nih.gov.,
    1. Year: 2025
    2. Date: Apr 10
    3. Epub Date: 2025 04 10
  1. Journal: Cellular & Molecular Biology Letters
    1. 30
    2. 1
    3. Pages: 44
  2. Type of Article: Article
  3. Article Number: 44
  1. Abstract:

    Despite exhaustive research efforts, integrated genetic and epigenetic mechanisms contributing to tobacco-induced initiation and progression of lung cancers have yet to be fully elucidated. In particular, limited information is available regarding dysregulation of noncoding RNAs during pulmonary carcinogenesis. We examined correlations and interactions of long noncoding (lnc) RNAs and protein-coding genes in normal respiratory epithelial cells (NREC) and pulmonary tumor cells following exposure to cigarette smoke condensate (CSC) using gene expression arrays, qRT-PCR, western blot, growth assays, transwell assays, and murine xenograft models, as well as methylated DNA immunoprecipitation, RNA cross-link immunoprecipitation, and quantitative chromatin immunoprecipitation techniques with bioinformatics analyses. Among diverse alterations of lncRNA and coding gene expression profiles in NREC exposed to CSC, we observed upregulation of lncRNA ZFAS1 and repression of an adjacent protein-coding gene, ZNFX1, and confirmed these findings in primary lung cancers. Phenotypic experiments indicated that ZFAS1 is an oncogene, whereas ZNFX1 functions as a tumor suppressor in lung cancer cells. Mechanistically, CSC induces ZFAS1 expression via SP1 and NF?B-associated activation of an enhancer linked to ZFAS1. Subsequently, ZFAS1 interacts with DNA methyltransferases and polycomb group proteins to silence ZNFX1. Mithramycin and methysticin repress ZFAS1 and upregulate ZNFX1 in lung cancer cells in vitro and in vivo. These studies reveal a novel feedforward lncRNA circuit contributing to pulmonary carcinogenesis and suggest that pharmacologic targeting of SP1 and/or NF?B may be useful strategies for restoring ZNFX1 expression for lung tumor therapy. © 2025. This is a U.S. Government work and not under copyright protection in the US; foreign copyright protection may apply.

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External Sources

  1. DOI: 10.1186/s11658-025-00705-x
  2. PMID: 40211119
  3. PMCID: PMC11983736
  4. PII : 10.1186/s11658-025-00705-x

Library Notes

  1. Fiscal Year: FY2024-2025
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