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低温和三氧化二砷协同拯救温度敏感型 p53 突变体。

Synergistic rescue of temperature-sensitive p53 mutants by hypothermia and arsenic trioxide.

机构信息

Department of Molecular Oncology, Moffitt Cancer Center, Tampa, Florida, USA.

Department of Anesthesiology, Moffitt Cancer Center, Tampa, Florida, USA.

出版信息

Mol Carcinog. 2024 Nov;63(11):2205-2217. doi: 10.1002/mc.23804. Epub 2024 Aug 8.

Abstract

The p53 tumor suppressor is inactivated by mutations in about 50% of tumors. Rescuing the transcriptional function of mutant p53 has potential therapeutic benefits. Approximately 15% of p53 mutants are temperature sensitive (TS) and regain maximal activity at 32°C. Proof of concept study showed that induction of 32°C hypothermia in mice restored TS mutant p53 activity and inhibited tumor growth. However, 32°C is the lower limit of therapeutic hypothermia procedures for humans. Higher temperatures are preferable but result in suboptimal TS p53 activation. Recently, arsenic trioxide (ATO) was shown to rescue the conformation of p53 structural mutants by stabilizing the DNA binding domain. We examined the responses of 17 frequently observed p53 TS mutants to functional rescue by temperature shift and ATO. The results showed that ATO only rescued mild p53 TS mutants with high basal activity at 37°C. Mild TS mutants showed a common feature of regaining significant activity at the semi-permissive temperature of 35°C and could be further stimulated by ATO at 35°C. TS p53 rescue by ATO was antagonized by the cellular redox mechanism and was rapidly reversible. Inhibition of glutathione (GSH) biosynthesis enhanced ATO rescue efficiency and sustained p53 activity after ATO washout. The results suggest that mild TS p53 mutants are uniquely responsive to functional rescue by ATO due to small thermostability deficits and inherent potential to regain active conformation. Combining mild hypothermia and ATO may provide an effective and safe procedure for targeting tumors with p53 TS mutations.

摘要

p53 肿瘤抑制因子在大约 50%的肿瘤中因突变而失活。恢复突变 p53 的转录功能具有潜在的治疗益处。大约 15%的 p53 突变体是温度敏感型(TS)的,在 32°C 时恢复最大活性。概念验证研究表明,在小鼠中诱导 32°C 低温恢复了 TS 突变 p53 的活性并抑制了肿瘤生长。然而,32°C 是人类治疗性低温程序的下限。较高的温度是优选的,但会导致 TS p53 激活效果不佳。最近,三氧化二砷(ATO)被证明通过稳定 DNA 结合域来挽救 p53 结构突变体的构象。我们研究了 17 种常见的 p53 TS 突变体对温度转换和 ATO 的功能挽救的反应。结果表明,ATO 仅挽救了在 37°C 下具有高基础活性的轻度 TS 突变体。轻度 TS 突变体表现出在半许可温度 35°C 下恢复显著活性的共同特征,并且可以在 35°C 下进一步被 ATO 刺激。ATO 对 TS p53 的挽救被细胞氧化还原机制拮抗,并且可以快速逆转。谷胱甘肽(GSH)生物合成的抑制增强了 ATO 挽救效率,并在 ATO 洗脱后维持 p53 活性。结果表明,轻度 TS p53 突变体由于小的热稳定性缺陷和固有恢复活性构象的潜力而对 ATO 的功能挽救具有独特的反应性。轻度低温和 ATO 的联合使用可能为靶向具有 p53 TS 突变的肿瘤提供一种有效且安全的方法。

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