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Kinetic and structural comparison of a protein’s cotranslational folding and refolding pathways

机译:蛋白质共翻译折叠和重折叠途径的动力学和结构比较

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摘要

Precise protein folding is essential for the survival of all cells, and protein misfolding causes a number of diseases that lack effective therapies, yet the general principles governing protein folding in the cell remain poorly understood. In vivo, folding can begin cotranslationally and protein quality control at the ribosome is essential for cellular proteostasis. We directly characterize and compare the refolding and cotranslational folding trajectories of the protein HaloTag. We introduce new techniques for both measuring folding kinetics and detecting the conformations of partially folded intermediates during translation in real time. We find that, although translation does not affect the rate-limiting step of HaloTag folding, a key aggregation-prone intermediate observed during in vitro refolding experiments is no longer detectable. This rerouting of the folding pathway increases HaloTag’s folding efficiency and may serve as a general chaperone-independent mechanism of quality control by the ribosome.
机译:精确的蛋白质折叠对于所有细胞的生存都是必不可少的,蛋白质折叠错误会导致许多疾病,而这些疾病缺乏有效的治疗方法,但对细胞中蛋白质折叠的一般原理仍然知之甚少。在体内,折叠可以开始共翻译,并且核糖体的蛋白质质量控​​制对于细胞蛋白稳态至关重要。我们直接表征和比较蛋白HaloTag的重折叠和共翻译折叠轨迹。我们引入了新的技术,既可以测量折叠动力学,也可以实时检测部分折叠的中间体的构象。我们发现,尽管翻译不影响HaloTag折叠的限速步骤,但在体外重折叠实验中观察到的关键聚集倾向中间体不再可检测到。折叠路径的这种重新路由提高了HaloTag的折叠效率,并且可以作为核糖体控制质量的一般与伴侣无关的机制。

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