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Thermotolerance and molecular chaperone function of the small heat shock protein HSP20 from hyperthermophilic archaeon Sulfolobus solfataricus P2

机译:嗜热古细菌Sulfolobus solfataricus P2的小热激蛋白HSP20的耐热性和分子伴侣功能。

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摘要

Small heat shock proteins are ubiquitous in all three domains (Archaea, Bacteria and Eukarya) and possess molecular chaperone activity by binding to unfolded polypeptides and preventing aggregation of proteins in vitro. The functions of a small heat shock protein (S.so-HSP20) from the hyperthermophilic archaeon, Sulfolobus solfataricus P2 have not been described. In the present study, we used real-time polymerase chain reaction analysis to measure mRNA expression of S.so-HSP20 in S. solfataricus P2 and found that it was induced by temperatures that were substantially lower (60°C) or higher (80°C) than the optimal temperature for S. solfataricus P2 (75°C). The expression of S.so-HSP20 mRNA was also up-regulated by cold shock (4°C). Escherichia coli cells expressing S.so-HSP20 showed greater thermotolerance in response to temperature shock (50°C, 4°C). By assaying enzyme activities, S.so-HSP20 was found to promote the proper folding of thermo-denatured citrate synthase and insulin B chain. These results suggest that S.so-HSP20 promotes thermotolerance and engages in chaperone-like activity during the stress response.
机译:小型热激蛋白在所有三个域(Archaea,细菌和Eukarya)中普遍存在,并通过与未折叠的多肽结合并在体外阻止蛋白质聚集而具有分子伴侣活性。尚未描述来自超嗜热古生菌Sulfolobus solfataricus P2的小热激蛋白(S.so-HSP20)的功能。在本研究中,我们使用实时聚合酶链反应分析来测量S.so-HSP20在S. solfataricus P2中的mRNA表达,并发现它是由温度显着降低(60°C)或更高(80 (S. solfataricus P2)的最佳温度(75°C)。 S.so-HSP20 mRNA的表达也被冷休克(4°C)上调。表达S.so-HSP20的大肠杆菌细胞对温度冲击(50°C,4°C)有较高的耐热性。通过分析酶活性,发现S.so-HSP20可以促进热变性柠檬酸盐合酶和胰岛素B链的正确折叠。这些结果表明,S.so-HSP20促进了耐热性,并在应激反应过程中参与了类似伴侣的活动。

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