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Hsp72, and Hsp90α mRNA transcription is characterised by large, sustained changes in core temperature during heat acclimation

机译:Hsp72和Hsp90αmRNA转录的特征是在热适应过程中核心温度发生较大的持续变化

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摘要

Increased intracellular heat shock protein-72 (Hsp72), and -90α (Hsp90α) have been implicated as important components of acquired thermotolerance, providing cytoprotection during stress. This experiment determined the physiological responses characterising increases in Hsp72 and Hsp90α mRNA on the first and tenth day of 90 min heat acclimation (in 40.2°C, 41.0% RH) or equivalent normothermic training (in 20°C, 29% RH.). Pearson’s product-moment correlation and stepwise multiple regression were performed to determine relationships between physiological [e.g. (T rec, sweat rate (SR) and heart rate (HR)] and training variables (exercise duration, exercise intensity, work done), and the leukocyte Hsp72 and Hsp90α mRNA responses via RT-QPCR (n=15). Significant (p0.05) correlations existed between increased Hsp72 and Hsp90α mRNA (r=0.879). Increased core temperature was the most important criteria for gene transcription with ΔTrec (r=0.714), SR (r=0.709), Trecfinal45 (r=0.682), area under the curve where Trec≥38.5°C (AUC38.5°C; r=0.678), peak Trec (r=0.661), duration Trec≥38.5°C (r=0.650) and ΔHR (r=0.511) each demonstrating a significant (p0.05) correlation with the increase in Hsp72 mRNA. The Trec AUC38.5°C (r=0.729), ΔTrec (r=0.691), peak Trec (r=0.680), Trecfinal45 (r=0.678), SR (r=0.660), duration Trec≥38.5°C (r=0.629), the rate of change in Trec (r=0.600) and ΔHR (r=0.531) were the strongest correlate with the increase in Hsp90α mRNA.  Multiple regression improved the model for Hsp90α mRNA only, when Trec AUC38.5°C and SR were combined.  Training variables showed insignificant (p>0.05) weak (r0.300) relationships with Hsp72 and Hsp90α mRNA.  Hsp72 and Hsp90α mRNA correlates were comparable on the first and tenth day.  When transcription of the related Hsp72 and Hsp90α mRNA is important, protocols should rapidly induce large, prolonged changes in core temperature.
机译:细胞内热休克蛋白-72(Hsp72)和-90α(Hsp90α)的增加被认为是获得性耐热性的重要组成部分,可在应激时提供细胞保护作用。该实验确定了在90分钟热适应(在40.2°C,41.0%RH)或等效的常温训练(在20°C,29%RH)的第一天和第十天,Hsp72和Hsp90αmRNA增加的生理反应。进行了Pearson的乘积矩和相关性的逐步回归,以确定生理[例如(T rec,出汗率(SR)和心率(HR)]和训练变量(运动时间,运动强度,完成的工作)以及通过RT-QPCR进行的白细胞Hsp72和Hsp90αmRNA反应(n = 15)。 Hsp72和Hsp90αmRNA增加之间存在p <0.05)相关性(r = 0.879)。核心温度升高是ΔTrec(r = 0.714),SR(r = 0.709),Trecfinal45(r = 0.682)基因转录的最重要标准。 ,曲线下面积Trec≥38.5°C(AUC38.5°C; r = 0.678),峰值Trec(r = 0.661),持续时间Trec≥38.5°C(r = 0.650)和ΔHR(r = 0.511)证明与Hsp72 mRNA的增加存在显着相关性(p <0.05)Trec AUC38.5°C(r = 0.729),ΔTrec(r = 0.691),Trec峰值(r = 0.680),Trecfinal45(r = 0.678) ,SR(r = 0.660),持续时间Trec≥38.5°C(r = 0.629),Trec(r = 0.600)和ΔHR(r = 0.531)的变化率与Hsp90αmRNA的增加最强相关。当Trec AUC38.5°C和SR结合使用时,回归仅改善了Hsp90αmRNA的模型。训练变量显示与Hsp72和Hsp90αmRNA的关系微不足道(p> 0.05)(r <0.300)。 Hsp72和Hsp90αmRNA的相关性在第一天和第十天是相当的。当相关的Hsp72和Hsp90αmRNA的转录很重要时,方案应迅速诱导核心温度发生长时间的大变化。

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