首页> 外文期刊>The Journal of Biochemistry >Varied effects of Pyrococcus furiosus prefoldin and P. furiosus chaperonin on the refolding reactions of substrate proteins
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Varied effects of Pyrococcus furiosus prefoldin and P. furiosus chaperonin on the refolding reactions of substrate proteins

机译:激烈热球菌前折叠蛋白和狂热分子伴侣蛋白对底物蛋白重折叠反应的影响

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摘要

Prefoldin is a molecular chaperone found in the archaeal and eukaryotic cytosol. Prefoldin can stabilize tentatively nascent polypeptide chains or non-native forms of mainly cytoskeletal proteins, which are subsequently delivered to group II chaperonin to accomplish their precise folding. However, the detailed mechanism is not well known, especially with regard to endogenous substrate proteins. Here, we report the effects of Pyrococcus furiosus prefoldin (PfuPFD) on the refolding reactions of Pyrococcus furiosus citrate synthase (PfuCS) and Aequorea enhanced green fluorescence protein (GFPuv) in the presence or absence of Pyrococcus furiosus chaperonin (PfuCPN). We confirmed that both PfuPFD and PfuCPN interacted with PfuCS and GFPuv refolding intermediates. However, the interactions between chaperone and substrate were different for each case, as was the final effect on the refolding reaction. Effects on the refolding reaction varied from passive effects such as ATP-dependent binding and release (PfuCPN towards GFPuv) and binding which leads to folding arrest (PfuPFD towards GFPuv), to active effects such as net increase in thermal stability (PfuCPN towards PfuCS) to an active improvement in refolding yield (PfuPFD towards PfuCS). We postulate that differences in molecular interactions between substrate and chaperone lead to these differences in chaperoning effects.
机译:前折叠蛋白是在古细菌和真核细胞的溶胶中发现的一种分子伴侣。 Prefoldin可以稳定暂定的新生多肽链或主要为细胞骨架蛋白的非天然形式,随后将其递送至II组伴侣蛋白以完成其精确折叠。但是,具体机制尚不为人所知,特别是对于内源性底物蛋白而言。在这里,我们报告激烈火球菌前折叠蛋白(PfuPFD)对激烈火球菌柠檬酸合酶(PfuCS)和水母增强绿色荧光蛋白(GFPuv)在存在或不存在激烈球菌伴侣蛋白(PfuCPN)的重折叠反应中的作用。我们证实PfuPFD和PfuCPN都与PfuCS和GFPuv折叠中间体相互作用。但是,伴侣和底物之间的相互作用在每种情况下都是不同的,对重折叠反应的最终作用也是如此。对重折叠反应的影响从被动效应(例如ATP依赖性结合和释放(朝向GFPuv的PfuCPN)和导致折叠停止的结合(朝向GFPuv的PfuPFD))到主动作用(例如热稳定性的净增加)(朝向PfuCS的PfuCPN)变化。积极提高折页产量(从PfuPFD到PfuCS)。我们假定底物和伴侣分子之间的分子相互作用的差异导致伴侣效应的这些差异。

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