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深度打结蛋白质的共翻译折叠

Cotranslational folding of deeply knotted proteins.

作者信息

Chwastyk Mateusz, Cieplak Marek

机构信息

Institute of Physics, Polish Academy of Sciences, Al. Lotników 32/46, 02-668 Warsaw, Poland.

出版信息

J Phys Condens Matter. 2015 Sep 9;27(35):354105. doi: 10.1088/0953-8984/27/35/354105. Epub 2015 Aug 20.

Abstract

Proper folding of deeply knotted proteins has a very low success rate even in structure-based models which favor formation of the native contacts but have no topological bias. By employing a structure-based model, we demonstrate that cotranslational folding on a model ribosome may enhance the odds to form trefoil knots for protein YibK without any need to introduce any non-native contacts. The ribosome is represented by a repulsive wall that keeps elongating the protein. On-ribosome folding proceeds through a a slipknot conformation. We elucidate the mechanics and energetics of its formation. We show that the knotting probability in on-ribosome folding is a function of temperature and that there is an optimal temperature for the process. Our model often leads to the establishment of the native contacts without formation of the knot.

摘要

即使在基于结构的模型中,深度打结蛋白质的正确折叠成功率也非常低,这些模型有利于天然接触的形成,但没有拓扑偏好。通过采用基于结构的模型,我们证明在模型核糖体上的共翻译折叠可能会增加蛋白质YibK形成三叶结的几率,而无需引入任何非天然接触。核糖体由一个排斥壁表示,该壁使蛋白质不断延长。核糖体上的折叠通过活结构象进行。我们阐明了其形成的力学和能量学。我们表明,核糖体上折叠的打结概率是温度的函数,并且该过程存在一个最佳温度。我们的模型通常会导致在不形成结的情况下建立天然接触。

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