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首页> 外文期刊>Journal of Molecular Biology >Protein folding requires crowd control in a simulated cell.
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Protein folding requires crowd control in a simulated cell.

机译:蛋白质折叠需要在模拟细胞中进行人群控制。

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摘要

Macromolecular crowding has a profound effect upon biochemical processes in the cell. We have computationally studied the effect of crowding upon protein folding for 12 small domains in a simulated cell using a coarse-grained protein model, which is based upon Langevin dynamics, designed to unify the often disjoint goals of protein folding simulation and structure prediction. The model can make predictions of native conformation with accuracy comparable with that of the best current template-free models. It is fast enough to enable a more extensive analysis of crowding than previously attempted, studying several proteins at many crowding levels and further random repetitions designed to more closely approximate the ensemble of conformations. We found that when crowding approaches 40% excluded volume, the maximum level found in the cell, proteins fold to fewer native-like states. Notably, when crowding is increased beyond this level, there is a sudden failure of protein folding: proteins fix upon a structure more quickly and become trapped in extended conformations. These results suggest that the ability of small protein domains to fold without the help of chaperones may be an important factor in limiting the degree of macromolecular crowding in the cell. Here, we discuss the possible implications regarding the relationship between protein expression level, protein size, chaperone activity and aggregation.
机译:大分子拥挤对细胞中的生化过程具有深远的影响。我们已经使用基于兰格文动力学的粗粒度蛋白质模型,通过计算机研究了拥挤对模拟细胞中12个小域的蛋白质折叠的影响,该模型旨在统一蛋白质折叠模拟和结构预测通常不相交的目标。该模型可以对本地构象进行预测,其准确性与目前最好的无模板模型相当。它的速度足够快,可以比以前尝试的方法进行更广泛的拥挤分析,可以在许多拥挤水平研究几种蛋白质,还可以进行进一步的随机重复,以更接近构象的整体。我们发现,当拥挤接近40%时,排除体积(在细胞中发现的最高水平)将使蛋白质折叠成较少的天然样状态。值得注意的是,当拥挤增加到超过该水平时,蛋白质折叠会突然失败:蛋白质会更快地固定在结构上,并陷入扩展的构象中。这些结果表明,小分子结构域在没有伴侣的帮助下折叠的能力可能是限制细胞中大分子拥挤程度的重要因素。在这里,我们讨论有关蛋白质表达水平,蛋白质大小,伴侣活性和聚集之间关系的可能含义。

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