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Trigger factor chaperone acts as a mechanical foldase

机译:触发因子伴侣起机械折叠酶的作用

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Proteins fold under mechanical forces in a number of biological processes, ranging from muscle contraction to co-translational folding. As force hinders the folding transition, chaperones must play a role in this scenario, although their influence on protein folding under force has not been directly monitored yet. Here, we introduce single-molecule magnetic tweezers to study the folding dynamics of protein L in presence of the prototypical molecular chaperone trigger factor over the range of physiological forces (4–10?pN). Our results show that trigger factor increases prominently the probability of folding against force and accelerates the refolding kinetics. Moreover, we find that trigger factor catalyzes the folding reaction in a force-dependent manner; as the force increases, higher concentrations of trigger factor are needed to rescue folding. We propose that chaperones such as trigger factor can work as foldases under force, a mechanism which could be of relevance for several physiological processes.
机译:在从肌肉收缩到共翻译折叠的许多生物学过程中,蛋白质都在机械力的作用下折叠。由于力阻碍了折叠的转变,尽管目前尚未直接监测其对蛋白质在力作用下折叠的影响,但在这种情况下,分子伴侣必须发挥作用。在这里,我们介绍单分子磁性镊子,以研究在生理力范围(4–10?pN)范围内典型分子伴侣触发因子存在时蛋白L的折叠动力学。我们的结果表明,触发因素显着提高了抵抗力折叠的可能性,并加快了重新折叠动力学。此外,我们发现触发因素以力依赖的方式催化折叠反应。随着力的增加,需要更高浓度的触发因子来挽救折叠。我们建议,诸如触发因子的伴侣可以在力的作用下起折叠酶的作用,这种机制可能与几种生理过程有关。

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