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Rationalization of Membrane Protein Crystallization with Polyethylene Glycol Using a Simple Depletion Model

机译:使用简单的耗竭模型用聚乙二醇合理化膜蛋白结晶

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摘要

Based on the importance of crystallizing membrane proteins in a rational way, cytochrome bc1 complex (BC1) was crystallized using polyethylene glycol (PEG) as a sole crystallization agent. Interaction between protein-detergent complexes of BC1 was estimated by dynamic light scattering, and was compared with the numerical calculation using the Derjaguin-Landau-Verwey-Overbeek potential plus a depletion potential, without considering specific surface properties of the protein-detergent complexes. The experiments and calculation were found to be consistent and we obtained a relation between PEG molecular weight M and the range of depletion zone δ as δ ∼ M0.48±0.02. The stability of liquid phase of BC1 solutions was controlled by a ratio of (the range of depletion zone)/(the radius of a BC1 particle), which was consistent with recent theoretical predictions. The crystallization was most successful under a condition where the stability of the liquid phase changed from stable to unstable. The PEG molecular weight that fulfilled this condition coincided with the one used empirically to crystallize BC1 in the past by a number of groups. These results are compared to the fact that membrane proteins were often successfully crystallized close to the detergent cloud point.
机译:基于合理地结晶膜蛋白的重要性,使用聚乙二醇(PEG)作为唯一结晶剂结晶了细胞色素bc1复合物(BC1)。通过动态光散射估算了BC1蛋白质洗涤剂复合物之间的相互作用,并将其与使用Derjaguin-Landau-Verwey-Overbeek势加消耗势的数值计算进行了比较,而没有考虑蛋白质洗涤剂复合物的特定表面性质。实验和计算被发现是一致的,并且我们获得了PEG分子量M和耗尽区δ的范围之间的关系,其为δ〜M0.48±0.02。 BC1溶液的液相稳定性由(耗尽区范围)/(BC1颗粒的半径)之比控制,这与最近的理论预测是一致的。在液相的稳定性从稳定变为不稳定的条件下,结晶最成功。满足此条件的PEG分子量与过去经验中用于使BC1结晶的基团相吻合。将这些结果与膜蛋白经常成功地结晶到洗涤剂浊点附近的事实进行了比较。

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