Laboratory of Molecular Medicine, Department of Immunology, Roswell Park Cancer Institute, Buffalo, New York 14263, USA.
Int J Hyperthermia. 2013;29(1):51-61. doi: 10.3109/02656736.2012.753471.
To investigate whether mild heat stress at 39.5°C altered Dicer protein and miRNA expression patterns in several cell types.
Multiple human and mouse cell types were cultured during the course of 9 h at temperatures from 37°C to 39.5°C. Dicer mRNA levels and microRNAs were quantified by TaqMan RT-qPCR assays and Dicer protein by western blotting.
Dicer protein was substantially elevated on western analysis in response to heat stress at 39.5°C in the absence of significant changes in Dicer mRNA by RT-qPCR.
Heat-induced regulation of Dicer expression occurs primarily post- transcriptionally, and the expression levels of Dicer protein are increased and often oscillate in response to fever-range hyperthermia in multiple mouse and human cells. Our studies suggest a potential role for Dicer and microRNAs in the response to mild thermal stress. Additional studies on the mechanisms involved in the stress-induced oscillations of Dicer protein and microRNAs will be of interest.
研究 39.5°C 的轻度热应激是否改变了几种细胞类型中的 Dicer 蛋白和 miRNA 表达模式。
在 37°C 至 39.5°C 的温度下培养多种人类和小鼠细胞类型 9 小时。通过 TaqMan RT-qPCR 测定法和 Western 印迹法定量 Dicer mRNA 水平和 microRNAs,以及 Dicer 蛋白。
Western 分析显示,在没有 RT-qPCR 检测到 Dicer mRNA 显著变化的情况下,39.5°C 的热应激会显著提高 Dicer 蛋白水平。
热诱导的 Dicer 表达调控主要发生在转录后水平,在多种小鼠和人类细胞中,热应激诱导的 Dicer 蛋白表达水平升高且常呈振荡式变化。我们的研究表明 Dicer 和 microRNAs 在应对轻度热应激方面可能具有潜在作用。对 Dicer 蛋白和 microRNAs 应激诱导振荡相关机制的进一步研究将具有重要意义。