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High salt-induced conversion of Escherichia coli GroEL into a fully functional thermophilic chaperonin

机译:高盐诱导的大肠杆菌GroEL转化为功能齐全的嗜热伴侣蛋白

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摘要

The GroE chaperonin system can adapt to and function at various environmental folding conditions. To examine chaperonin-assisted protein folding at high salt concentrations, we characterized Escherichia coli GroE chaperonin activity in 1.2 M ammonium sulfate. Our data are consistent with GroEL undergoing a conformational change at this salt concentration, characterized by elevated ATPase activity and increased exposure of hydrophobic surface, as indicated by increased binding of the fluorophore bis-(5,5′)-8-anilino-1-naphthalene sulfonic acid to the chaperonin. The presence of the salt results in increased substrate stringency and dependence on the full GroE system for release and productive folding of substrate proteins. Surprisingly, GroEL is fully functional as a thermophilic chaperonin in high concentrations of ammonium sulfate and is stable at temperatures up to 75 °C. At these extreme conditions, GroEL can suppress aggregation and mediate refolding of non-native proteins.
机译:GroE伴侣蛋白系统可以适应各种环境折叠条件并在其中起作用。为了检查高盐浓度下伴侣蛋白的蛋白折叠,我们表征了1.2M硫酸铵中大肠杆菌GroE伴侣蛋白的活性。我们的数据与GroEL在此盐浓度下经历构象变化是一致的,其特征在于ATPase活性增强和疏水性表面暴露增加,如荧光团双-(5,5')-8-苯胺基-1-的结合增加所表明萘磺酸为伴侣蛋白。盐的存在导致底物严格性增加,并依赖于完整的GroE系统释放和有效折叠底物蛋白。出乎意料的是,GroEL在高浓度的硫酸铵中具有完全的嗜热性伴侣蛋白功能,并且在高达75 C的温度下仍稳定。在这些极端条件下,GroEL可以抑制聚集并介导非天然蛋白的重折叠。

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