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Stat3 磷酸化参与轻度热休克诱导的耐热性。

Involvement of Stat3 phosphorylation in mild heat shock-induced thermotolerance.

机构信息

Department of Biochemistry & Molecular Biology, Kyoto Pharmaceutical University, Kyoto 607-8414, Japan.

Department of Biochemistry & Molecular Biology, Kyoto Pharmaceutical University, Kyoto 607-8414, Japan.

出版信息

Exp Cell Res. 2019 Apr 15;377(1-2):67-74. doi: 10.1016/j.yexcr.2019.02.011. Epub 2019 Feb 15.

Abstract

Thermotolerance is a phenomenon in which cells become resistant to stress by prior exposure to heat shock, and its development is associated with the induction of heat shock proteins (Hsps), including Hsp70. We previously showed that the expression of Hsp70 is regulated by the cytokine signaling transcription factor Stat3, but the role of Stat3 in thermotolerance is not known. In this study, we examined the possible involvement of Stat3 in the acquisition of thermotolerance. We found that severe heat shock-induced morphological changes and decreases in cell viability, which were suppressed by exposure to non-lethal mild heat shock prior to severe heat shock. This thermotolerance development was accompanied by Stat3 phosphorylation and the induction of Hsps such as Hsp105, Hsp70, and Hsp27. Stat3 phosphorylation and Hsp induction were inhibited by AG490, an inhibitor of JAK tyrosine kinase. Consistent with this, we found that mild heat shock-induced thermotolerance was partially suppressed by AG490 or knockdown of Hsp105. We also found that the Stat3 inhibitor Stattic suppresses the acquisition of thermotolerance by inhibiting the mild heat shock-induced Stat3 phosphorylation and Hsp105 expression. These results suggest that the mild heat shock-dependent stimulation of the JAK-Stat signaling pathway contributes to the development of thermotolerance via the induction of Hsps including Hsp105. This signaling pathway may be a useful target for hyperthermia cancer therapy.

摘要

热耐受是一种细胞通过先前暴露于热休克而对压力产生抗性的现象,其发展与热休克蛋白(Hsps)的诱导有关,包括 Hsp70。我们之前表明,Hsp70 的表达受细胞因子信号转导转录因子 Stat3 调节,但 Stat3 在热耐受中的作用尚不清楚。在这项研究中,我们研究了 Stat3 是否参与获得热耐受。我们发现,严重热休克诱导的形态变化和细胞活力下降,可以通过在严重热休克之前暴露于非致死性轻度热休克来抑制。这种热耐受的发展伴随着 Stat3 的磷酸化和 Hsps(如 Hsp105、Hsp70 和 Hsp27)的诱导。Stat3 磷酸化和 Hsp 诱导被 JAK 酪氨酸激酶抑制剂 AG490 抑制。与此一致,我们发现轻度热休克诱导的热耐受被 AG490 或 Hsp105 的敲低部分抑制。我们还发现,Stat3 抑制剂 Stattic 通过抑制轻度热休克诱导的 Stat3 磷酸化和 Hsp105 表达来抑制热耐受的获得。这些结果表明,轻度热休克依赖的 JAK-Stat 信号通路的刺激通过诱导包括 Hsp105 在内的 Hsps 有助于热耐受的发展。该信号通路可能是高热癌症治疗的一个有用靶点。

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