Department of Nuclear Medicine, Seoul National University College of Medicine, Seoul 03080, Republic of Korea.
Cancer Research Institute, Seoul National University College of Medicine, Seoul 03080, Republic of Korea.
Int J Mol Sci. 2023 Feb 1;24(3):2761. doi: 10.3390/ijms24032761.
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.
需要改进治疗策略,以尽量减少放射性碘基因治疗相关的副作用,避免对正常细胞造成不必要的损伤和辐射诱导的继发性恶性肿瘤。我们之前曾报道过,密码子优化的钠碘同向转运体(oNIS)可增强 I-131 的吸收,而 brahma 相关基因 1 溴结构域(BRG1-BRD)在高能 X 射线治疗后会导致 DNA 损伤修复效率低下。为了在不施加过度辐射的情况下提高治疗效果,我们考虑将 oNIS 和 BRG1-BRD 联合作为基因治疗,以实现最有效的放射性碘治疗。通过肿瘤异种移植模型以及细胞水平的功能测定,研究了 oNIS 或 oNIS+BRD 表达的 I-131 的抗肿瘤作用。BRG1-BRD 和 oNIS 基因过表达的协同作用导致更多的 DNA 双链断裂,并导致 I-131 治疗后细胞增殖/存活率降低,这是由 p53/p21 途径介导的。我们发现,即使在蛋白质水平上瓜氨酸和精氨酸蛋白水解酶 4(PAD4)的剩余水平保持不变,在用 I-131 处理后,oNIS 和 BRD 表达的细胞中 p53、p21 和核磷蛋白 1(NPM1)的水平增加。