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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Molecular and biochemical modulation of heat shock protein 20 (Hsp20) gene by temperature stress and hydrogen peroxide (H_2O_2) in the monogonont rotifer, Brachionus sp.
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Molecular and biochemical modulation of heat shock protein 20 (Hsp20) gene by temperature stress and hydrogen peroxide (H_2O_2) in the monogonont rotifer, Brachionus sp.

机译:轮虫单臂轮虫中温度胁迫和过氧化氢(H_2O_2)对热休克蛋白20(Hsp20)基因的分子和生化调控。

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摘要

The monogonont rotifer, Brachionus sp. has been regarded as a potential model for reproductive physiology, evolution, and environmental genomics. To uncover the role of the heat shock protein upon temperature stress and hydrogen peroxide (H_2O_2) exposure, we cloned heat shock protein 20 (Hsp20) and determined its modulatory response under different temperatures and H_2O_2 concentrations. Under different temperature stresses (10 °C and 37 °C), the rotifer Brachionus sp. Hsp20 (Br-Hsp20) gene was highly expressed over time, and reached the maximum level 90 min after exposure, indicating that Br-Hsp20 gene would be involved in the chaperoning process to protect proteins at both low and high temperatures. To test the ability of thermotolerance of the recombinant Br-Hsp20-containing transformed Escherichia coli, we expressed the recombinant Br-Hsp20 protein with 1 mM IPTG for 18 h at 30 °C, exposed them at 54 °C with time course (10 to 60 min), and measured cell survival. In this elevated temperature shock (54 °C), the cell survival was significantly higher at the Br-Hsp20 transformed E. coli, compared to the control (vector only). To analyze the modulatory effect of Br-Hsp20 gene on oxidative stress, we initially exposed 0.1 mM H_2O_2 over time and measured antioxidant enzyme activities along with the expression level of Br-Hsp20 mRNA. Upon H_2O_2 exposure, Br-Hsp20 gene was time-dependently upregulated and glutathione peroxidase (GPx), glutathione S-transferase (GST), and glutathione reductase (GR) activities were also elevated at the 12 h-exposed group in a dose-dependent manner, indicating that the Br-Hsp20 gene would be an important gene in response to oxidative and temperature stress. Here, we demonstrated the role of the Hsp20 gene in the rotifer, Brachionus sp. providing a better understanding of the ecophysiology at environmental stress in this species.
机译:单性轮虫,Brachionus sp。已经被认为是生殖生理,进化和环境基因组学的潜在模型。为了揭示热激蛋白在温度胁迫和过氧化氢(H_2O_2)暴露下的作用,我们克隆了热激蛋白20(Hsp20),并确定了其在不同温度和H_2O_2浓度下的调节响应。在不同的温度应力(10°C和37°C)下,轮虫Brachionus sp。 Hsp20(Br-Hsp20)基因随着时间的推移而高表达,并在暴露90分钟后达到最高水平,这表明Br-Hsp20基因将参与分子伴侣的形成过程,以在低温和高温下保护蛋白质。为了测试含有重组Br-Hsp20的转化大肠杆菌的耐热性,我们在30°C下用1 mM IPTG将重组Br-Hsp20蛋白表达了18 h,并在54°C下随时间变化暴露了它们的能力(10至60分钟),并测量细胞存活率。在这种高温休克(54°C)中,与对照(仅载体)相比,在Br-Hsp20转化的大肠杆菌中,细胞存活率明显更高。为了分析Br-Hsp20基因对氧化应激的调节作用,我们最初随时间暴露了0.1 mM H_2O_2,并测量了抗氧化酶的活性以及Br-Hsp20 mRNA的表达水平。暴露于H_2O_2后,Br-Hsp20基因呈时间依赖性上调,在剂量依赖性的12 h暴露组中,谷胱甘肽过氧化物酶(GPx),谷胱甘肽S-转移酶(GST)和谷胱甘肽还原酶(GR)活性也升高。这表明Br-Hsp20基因将是一个重要的基因,可以应对氧化和温度胁迫。在这里,我们证明了Hsp20基因在轮虫Brachionus sp。中的作用。提供对该物种在环境压力下的生态生理的更好理解。

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