4.7 Article

PPDPF Promotes the Progression and acts as an Antiapoptotic Protein in Non-Small Cell Lung Cancer

Journal

INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES
Volume 18, Issue 1, Pages 214-228

Publisher

IVYSPRING INT PUBL
DOI: 10.7150/ijbs.65654

Keywords

PPDPF; NSCLC; BABAM2; MDM2; radioresistance

Funding

  1. National Natural Science Foundation of China [82172980, 81874200, 81972163, 82030087, 82060308]
  2. Hunan Provincial Science and Technology Department [2018RS3028, 2021JJ30039]
  3. Guangdong Provincial Department of Science and Technology [2019A1515010947]
  4. State Key Lab of Respiratory Disease [SKLRDQN201702, SKLRD-OP-202003]
  5. Non-profit central research Institute fund of Chinese academy of medical sciences [2019PT320003]
  6. Guizhou Talent Office

Ask authors/readers for more resources

This study found that the upregulation of PPDPF in NSCLC correlated with poor overall survival. PPDPF promoted the growth, colony formation, and invasion of lung cancer cells. Mechanistically, it interacted with BABAM2, blocking its ubiquitination and stabilizing BABAM2, leading to radioresistance in lung cancer cells.
Resistance to radiotherapy is frequently observed in the clinic and leads to poor prognosis of non-small cell lung cancer (NSCLC). How to overcome resistance to radiotherapy is a challenge in the treatment of NSCLC. In this study, PPDPF was found to be upregulated in NSCLC tissues and cell lines, and its expression negatively correlated with the overall survival of patients with NSCLC. PPDPF promoted the growth, colony formation and invasion of lung cancer cells. Moreover, knockout of PPDPF inhibited tumorigenesis in the KL (KrasG12D; LKB1(f/f)) mouse model of lung cancer. Additionally, overexpression of PPDPF led to radioresistance in lung cancer cells, and knockdown of PPDPF sensitized lung cancer cells to radiotherapy. Mechanistically, PPDPF interacted with BABAM2 (an antiapoptotic protein) and blocked its ubiquitination by MDM2, thus stabilizing BABAM2 and promoting the radioresistance of lung cancer cells. Our present study suggested PPDPF as a therapeutic target in NSCLC.

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