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反义介导的剪接校正作为治疗 p53 K120R 突变的方法。

Antisense-mediated splicing correction as a therapeutic approach for p53 K120R mutation.

机构信息

College of Pharmacy, Chungnam National University, Daejeon 34134, Korea.

Division of KM Science Research, Korea Institute of Oriental Medicine, Daejeon 34054, Korea.

出版信息

BMB Rep. 2024 Nov;57(11):503-508. doi: 10.5483/BMBRep.2024-0118.

Abstract

The TP53 c.359A>G mutation significantly disrupts the expression of the major TP53 transcript variant encoding p53 K120R by generating a new splice donor site. An antisense morpholino oligomer (AMO) targeting this mutation successfully restored normal splicing and the expression of the major TP53 variant. Given that p53 exerts its tumor suppressor function by regulating target genes responsible for growth arrest or apoptosis, the p53 K120R protein enhanced by AMO exhibits impaired transcriptional regulation of CDKN1A, a key growth arrest gene, while maintaining normal induction of the pro-apoptotic BBC3 gene. As a result, the mutant p53 K120R protein shows a defective cell growth arrest phenotype but retains apoptotic function, suggesting that it may still possess some tumor suppressor activity. Furthermore, lysine 120, known to provide a critical acetylation site for p53 activation, highlights the relevance of acetylation in tumor suppression through studies of the p53 K120R mutant. However, our findings demonstrate that targeting mutant TP53 mRNA with AMO is essential for restoring p53 function. In conclusion, this study emphasizes the potential of AMO-mediated splice correction as a therapeutic approach for TP53 mutations. [BMB Reports 2024; 57(11): 503-508].

摘要

TP53 c.359A>G 突变通过产生新的剪接供体位点,显著破坏了编码 p53 K120R 的主要 TP53 转录变体的表达。针对该突变的反义吗啉代寡核苷酸(AMO)成功地恢复了正常剪接和主要 TP53 变体的表达。鉴于 p53 通过调节负责生长停滞或凋亡的靶基因发挥其肿瘤抑制功能,被 AMO 增强的 p53 K120R 蛋白表现出对关键生长停滞基因 CDKN1A 的转录调节受损,而 BBC3 基因的促凋亡诱导则保持正常。因此,突变型 p53 K120R 蛋白显示出缺陷的细胞生长停滞表型,但保留凋亡功能,表明它可能仍然具有一些肿瘤抑制活性。此外,赖氨酸 120 是 p53 激活的关键乙酰化位点,通过对 p53 K120R 突变体的研究强调了乙酰化在肿瘤抑制中的相关性。然而,我们的研究结果表明,用 AMO 靶向突变型 TP53 mRNA 对于恢复 p53 功能至关重要。总之,本研究强调了 AMO 介导的剪接纠正作为治疗 TP53 突变的潜在方法。[BMB 报告 2024;57(11):503-508]。

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