In the initial stages of crystallization of proteins, monomers aggregate rapidly and form nuclei and large fractal clusters, as previously shown by dynamic light scattering experiments (Georgalis, Y., J. Schüler, J. Frank, D. M. Soumpasis, and W. Saenger. 1995. Protein crystallization screening through scattering techniques. Adv. Colloid Interface Sci. 5857-86). In this communication we initiate an effort to understand the effective interactions controlling charged protein aggregation and crystallization using the potential of mean force (PMF) theory. We compute the PMFs of the system lysozyme-water-NaCl within the framework of the hypernetted chain approximation for a wide range of protein and salt concentrations. We show that the computed effective interactions can rationalize the experimentally observed aggregation behavior of lysozyme under crystallization conditions.

译文

在蛋白质结晶的初始阶段,单体迅速聚集并形成核和大的分形簇,如先前的动态光散射实验所示 (Georgalis,Y.,J. Sch ü ler,J. Frank,d.m.Sompasis,和W. Saenger。1995。通过散射技术进行蛋白质结晶筛选。胶体界面科学。5857-86)。在此交流中,我们开始努力使用平均力 (PMF) 理论来了解控制带电蛋白质聚集和结晶的有效相互作用。我们在各种蛋白质和盐浓度的超净链近似框架内计算系统溶菌酶-水-NaCl的pmf。我们证明,计算出的有效相互作用可以使结晶条件下实验观察到的溶菌酶的聚集行为合理化。

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