4.7 Article

MUC3A promotes non-small cell lung cancer progression via activating the NFκB pathway and attenuates radiosensitivity

期刊

INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES
卷 17, 期 10, 页码 2523-2536

出版社

IVYSPRING INT PUBL
DOI: 10.7150/ijbs.59430

关键词

MUC3A; NSCLC; NF kappa B; Radiosensitivity; DNA damage

资金

  1. National Natural Science Foundation of China [81773236, 81800429, 81972852]
  2. Key Research & Development Project of Hubei Province [2020BCA069]
  3. Nature Science Foundation of Hubei Province [2020CFB612]
  4. Health Commission of Hubei Province Medical Leading Talent Project
  5. Young and Middle-Aged Medical Backbone Talents of Wuhan [WHQG201902]
  6. Application Foundation Frontier Project of Wuhan [2020020601012221]
  7. Zhongnan Hospital of Wuhan University Science, Technology and Innovation Seed Fund [znpy2019001, znpy2019048, ZNJC201922]
  8. Chinese Society of Clinical Oncology TopAlliance Tumor Immune Research Fund [Y-JS2019-036]
  9. Natural Science Foundation of Fujian Province [2020J01126]
  10. Startup Fund of Fujian Medical University [2018QH1164]
  11. Health Commission of Fujian Province Young & Middle-Aged Medical Backbone Talents Project [2020GGA077]
  12. Scientific Fund of Sanming Science and Technology Bureau [.2018-5-1(7)]

向作者/读者索取更多资源

MUC3A is highly expressed in non-small cell lung cancer (NSCLC) and associated with poor prognosis, advanced staging, and low differentiation. Knockdown of MUC3A suppresses tumor growth and DNA damage repair pathways, suggesting it may be a potential oncogene.
Mucin 3A (MUC3A) is highly expressed in non-small cell lung cancer (NSCLC), but its functions and effects on clinical outcomes are not well understood. Tissue microarray of 92 NSCLC samples indicated that high levels of MUC3A were associated with poor prognosis, advanced staging, and low differentiation. MUC3A knockdown significantly suppressed NSCLC cell proliferation and induced G1/S accumulation via downregulating cell cycle checkpoints. MUC3A knockdown also inhibited tumor growth in vivo and had synergistic effects with radiation. MUC3A knockdown increased radiation-induced DNA double strain breaks and gamma-H2AX phosphorylation in NSCLC cells. MUC3A downregulation inhibited the BRCA-1/RAD51 pathway and nucleus translocation of P53 and XCRR6, suggesting that MUC3A promoted DNA damage repair and attenuated radiation sensitivity. MUC3A knockdown also resulted in less nucleus translocation of RELA and P53 in vivo. Immunoprecipitation revealed that MUC3A interacted with RELA and activated the NF kappa B pathway via promoting RELA phosphorylation and interfering the binding of RELA to I kappa B. Our studies indicated that MUC3A was a potential oncogene and associated with unfavorable clinical outcomes. NSCLC patients with a high MUC3A level, who should be more frequent follow-up and might benefit less from radiotherapy.

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