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低剂量曲古抑菌素 A 通过激活 Akt/Nrf2 依赖性抗氧化通路提高癌细胞辐射抗性。

Low Dose of Trichostatin A Improves Radiation Resistance by Activating Akt/Nrf2-Dependent Antioxidation Pathway in Cancer Cells.

机构信息

CAS Key Laboratory of High Magnetic Field and Ion Beam Physical Biology, Institute of Intelligent Machines, HFIPS, Chinese Academy of Sciences, Hefei, 230031, China.

Henan Key Laboratory of Ion-beam Bioengineering, School of Physics, Zhengzhou University, Zhengzhou, 450052, China.

出版信息

Radiat Res. 2021 Apr 1;195(4):366-377. doi: 10.1667/RADE-20-00145.1.

Abstract

Numerous studies have shown that histone deacetylase inhibitors (HDACis) improve cellular acetylation while also enhancing the radiation sensitivity. In this work, however, we confirmed that low-dose trichostatin A (TSA) as a typical HDACi could reduce rather than increase the radiosensitivity of cancer cells, while the cellular acetylation was also increased with TSA-induced epigenetic modification. The surviving fraction of HeLa/HepG2 cells pretreated with 25 nM TSA for 24 h was higher at 1 Gy/2 Gy of γ-ray radiation than that of the cells with the same radiation dose but without TSA pretreatment. To understand the underlying mechanism, we investigated the effect of low-dose TSA on HO-1, SOD and CAT induction and activating Akt together with its downstream Nrf2 signaling pathway. Our results indicated that TSA activated HO-1, SOD and CAT expression by increasing the phosphorylation level of Nrf2 in an Akt-dependent manner. In addition, we also observed that the 25-nM-TSA-pretreated group showed a significant increase in the antioxidant capacity in terms of SOD and CAT activities. Therefore, our results suggest that low-dose TSA can activate the Akt/Nrf2 pathway and upregulate expression of HO-1, SOD and CAT to stimulate the cellular defense mechanism. This work demonstrates that low-dose TSA treatment may activate the adaptation mechanism against the oxidative stress induced by ionizing radiation, and application of HDACi treatment should be undertaken with caution to avoid its possible radioresistance in radiotherapy.

摘要

大量研究表明,组蛋白去乙酰化酶抑制剂(HDACi)在提高细胞乙酰化水平的同时,还能增强辐射敏感性。然而,在本工作中,我们证实低剂量曲古抑菌素 A(TSA)作为一种典型的 HDACi,可降低而非增加癌细胞的辐射敏感性,同时细胞乙酰化也随着 TSA 诱导的表观遗传修饰而增加。用 25 nM TSA 预处理 24 h 的 HeLa/HepG2 细胞在 1 Gy/2 Gy γ射线辐射下的存活分数高于未经 TSA 预处理的相同辐射剂量的细胞。为了了解其潜在机制,我们研究了低剂量 TSA 对 HO-1、SOD 和 CAT 诱导的影响,并激活 Akt 及其下游 Nrf2 信号通路。结果表明,TSA 通过增加 Akt 依赖性 Nrf2 的磷酸化水平来激活 HO-1、SOD 和 CAT 的表达。此外,我们还观察到用 25 nM TSA 预处理的组在 SOD 和 CAT 活性方面表现出抗氧化能力的显著增加。因此,我们的结果表明,低剂量 TSA 可以激活 Akt/Nrf2 通路,并上调 HO-1、SOD 和 CAT 的表达,从而刺激细胞防御机制。这项工作表明,低剂量 TSA 处理可能会激活对电离辐射诱导的氧化应激的适应机制,在放疗中应用 HDACi 治疗时应谨慎,以避免其可能的放射抗性。

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