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首页> 外文期刊>Cell stress & chaperones >Heat stress upregulates chaperone heat shock protein 70 and antioxidant manganese superoxide dismutase through reactive oxygen species (ROS), p38MAPK, and Akt
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Heat stress upregulates chaperone heat shock protein 70 and antioxidant manganese superoxide dismutase through reactive oxygen species (ROS), p38MAPK, and Akt

机译:热应激通过活性氧(ROS),p38MAPK和Akt上调分子伴侣热休克蛋白70和抗氧化剂锰超氧化物歧化酶

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Chinese hamster lung fibroblasts V79 cells were treated with heat stress for 4?weeks with short duration (15?min) heat shock every alternate day in culture. It was observed that Hsp 70 and the antioxidant enzyme MnSOD became overexpressed during the chronic heat stress period. Both p38 MAPK and Akt became phosphorylated by chronic heat stress exposure. Simultaneous exposure to SB203580, a potent and specific p38MAPK inhibitor drastically inhibited the phosphorylation of p38MAPK and Akt. Furthermore, exposure to SB203580 also blocked the increase in Hsp70 and MnSOD levels and the elevated SOD activity brought about by chronic heat stress. Heat shock factor 1 (HSF1) transcriptional activity and nuclear translocation of HSF1 were prominently augmented by chronic heat stress, and this amplification is markedly reduced by concomitant exposure to SB203580. Also, activations of p38MAPK and Akt and upregulations of Hsp70 and MnSOD were observed on exposure to heat shock for a single exposure of longer duration (40?min). siRNA against p38MAPK notably reduced Akt phosphorylation by single exposure to heat stress and drastically diminished the rise in Hsp70 and MnSOD levels. Similarly, siRNA against Akt also eliminated the augmentation in Hsp70 and MnSOD levels but p38MAPK levels remained unaffected. Heat stress produced reactive oxygen species (ROS) in V79 fibroblasts. N-acetyl cysteine blocked the increase in phosphorylation of p38MAPK, amplification of Hsp70, and MnSOD levels by heat stress. Therefore, we conclude that heat stress-activated p38MAPK which in turn activated Akt. Akt acted downstream of p38MAPK to increase Hsp70 and MnSOD levels.Concise summary: Thermal injury of the skin over a long period of time has been associated with development of cancerous lesions. Also, in many cancers, the cytoprotective genes Hsp70 and MnSOD have been found to be overexpressed. Therefore, we considered it important to identify the signaling elements upstream of the upregulated survival genes in heat stress. We conclude that heat stress activated p38MAPK which in turn activated Akt. Akt mediated an augmentation in Hsp70 and MnSOD levels working downstream of p38MAPK.
机译:在培养中每隔一天对中国仓鼠肺成纤维细胞V79细胞进行热应激4周,持续时间短(15分钟)。观察到在慢性热应激期间Hsp 70和抗氧化酶MnSOD变得过表达。 p38 MAPK和Akt都被慢性热应激暴露所磷酸化。同时暴露于SB203580(一种有效的特异性p38MAPK抑制剂)会极大地抑制p38MAPK和Akt的磷酸化。此外,暴露于SB203580还阻止了Hsp70和MnSOD水平的升高以及慢性热应激导致的SOD活性升高。慢性热应激显着增强了热休克因子1(HSF1)的转录活性和HSF1的核易位,并且同时暴露于SB203580显着降低了这种扩增。同样,在长时间(40?min)的单次暴露于热激时,观察到p38MAPK和Akt的活化以及Hsp70和MnSOD的上调。通过单次暴露于热应激,针对p38MAPK的siRNA显着降低了Akt磷酸化,并显着降低了Hsp70和MnSOD水平的升高。同样,针对Akt的siRNA也消除了Hsp70和MnSOD水平的增加,但p38MAPK水平仍然不受影响。热应激在V79成纤维细胞中产生了活性氧(ROS)。 N-乙酰基半胱氨酸通过热应激阻止了p38MAPK磷酸化的增加,Hsp70的扩增和MnSOD的增加。因此,我们得出的结论是,热应激激活了p38MAPK,进而激活了Akt。 Akt作用于p38MAPK的下游以增加Hsp70和MnSOD水平。简明摘要:长期皮肤热损伤与癌性病变的发展有关。同样,在许多癌症中,已经发现细胞保护基因Hsp70和MnSOD过度表达。因此,我们认为重要的是鉴定热应激中上调的生存基因上游的信号传导元件。我们得出的结论是,热应激激活了p38MAPK,进而激活了Akt。 Akt介导p38MAPK下游的Hsp70和MnSOD水平升高。

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