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Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress

机译:自然的热适应能力提高了热激蛋白的水平并降低了氧化应激

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摘要

Heat shock proteins (HSPs), originally identified as heat-inducible gene products, are a family of highly conserved proteins that respond to a wide variety of stress including oxidative stress. Although both acute and chronic oxidative stress have been well demonstrated to induce HSP responses, little evidence is available whether increased HSP levels provide enhanced protection against oxidative stress under elevated yet sublethal temperatures. We studied relationships between oxidative stress and HSPs in a physiological model by using Garra rufa (doctor fish), a fish species naturally acclimatized to different thermal conditions. We compared fish naturally living in a hot spring with relatively high water temperature (34.4±0.6 °C) to those living in normal river water temperature (25.4±4.7 °C), and found that levels of all the studied HSPs (HSP70, HSP60, HSP90, HSC70 and GRP75) were higher in fish living in elevated water temperature compared with normal river water temperature. In contrast, indicators of oxidative stress, including protein carbonyls and lipid hydroperoxides, were decreased in fish living in the elevated temperature, indicating that HSP levels are inversely associated with oxidative stress. The present results provide evidence that physiologically increased HSP levels provide protection against oxidative stress and enhance cytoprotection.
机译:热休克蛋白(HSP)最初被鉴定为可热诱导的基因产物,是一类高度保守的蛋白家族,可应对多种应激,包括氧化应激。尽管已经很好地证明了急性和慢性氧化应激都能诱导HSP反应,但很少有证据表明,升高的HSP水平在高温下致死温度下是否提供增强的抗氧化应激保护作用。我们使用Garra rufa(医生鱼)研究了生理模型中氧化应激与HSP之间的关系,该鱼是自然适应不同热条件的鱼类。我们将生活在温泉中水温相对较高(34.4±0.6°C)的自然鱼类与生活在正常河水温度(25.4±4.7°C)中的鱼类进行了比较,发现所有研究的HSP(HSP70,HSP60水温升高的鱼类中的HSP90,HSC70和GRP75高于正常河水温度。相反,在高温下生活的鱼类中包括蛋白质羰基和脂质氢过氧化物在内的氧化应激指标降低了,这表明HSP水平与氧化应激成反比。本发明结果提供了生理上增加的HSP水平提供了抗氧化应激的保护并增强了细胞保护的证据。

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