Overexpression of Both Human Sodium Iodide Symporter (NIS) and BRG1-Bromodomain Synergistically Enhances Radioiodine Sensitivity by Stabilizing p53 through NPM1 Expression.
Juri NaChul-Hee LeeJune-Key ChungHyewon YounPublished in: International journal of molecular sciences (2023)
Improved therapeutic strategies are required to minimize side effects associated with radioiodine gene therapy to avoid unnecessary damage to normal cells and radiation-induced secondary malignancies. We previously reported that codon-optimized sodium iodide symporter (oNIS) enhances absorption of I-131 and that the brahma-associated gene 1 bromodomain (BRG1-BRD) causes inefficient DNA damage repair after high-energy X-ray therapy. To increase the therapeutic effect without applying excessive radiation, we considered the combination of oNIS and BRG1-BRD as gene therapy for the most effective radioiodine treatment. The antitumor effect of I-131 with oNIS or oNIS+BRD expression was examined by tumor xenograft models along with functional assays at the cellular level. The synergistic effect of both BRG1-BRD and oNIS gene overexpression resulted in more DNA double-strand breaks and led to reduced cell proliferation/survival rates after I-131 treatment, which was mediated by the p53/p21 pathway. We found increased p53, p21, and nucleophosmin 1 (NPM1) in oNIS- and BRD-expressing cells following I-131 treatment, even though the remaining levels of citrulline and protein arginine deiminase 4 (PAD4) were unchanged at the protein level.
Keyphrases
- cell proliferation
- radiation induced
- dna damage
- poor prognosis
- induced apoptosis
- acute myeloid leukemia
- gene therapy
- genome wide
- oxidative stress
- copy number
- radiation therapy
- binding protein
- endothelial cells
- high resolution
- stem cells
- combination therapy
- computed tomography
- amino acid
- magnetic resonance imaging
- body mass index
- magnetic resonance
- cell cycle arrest
- mesenchymal stem cells
- physical activity
- endoplasmic reticulum stress
- weight loss
- genome wide analysis