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Strong Impact of Ionic Strength on the Kinetics of Fibrilar Aggregation of Bovine beta-Lactoglobulin

机译:离子强度对牛β-乳球蛋白纤维状聚集动力学的强烈影响

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摘要

We investigate the effect of ionic strength on the kinetics of heat-induced fibrilar aggregation of bovine beta-lactoglobulin at pH 2.0.Using in situ light scattering we find an apparent critical protein concentration below which there is no significant fibril formation for all ionic strengths studied.This is an independent confirmation of our previous observation of an apparent critical concentration for 13 mM ionic strength by proton NMR spectroscopy.It is also the first report of such a critical concentration for the higher ionic strengths.The critical concentration decreases with increasing ionic strength.Below the critical concentration mainly "dead-end" species that cannot aggregate anymore are formed.We prove that for the lowest ionic strength this species consists of irreversibly denatured protein.Atomic force microscopy studies of the morphology of the fibrils formed at different ionic strengths show shorter and curvier fibrils at higher ionic strength.The fibril length distribution changes non-monotonically with increasing ionic strength.At all ionic strengths studied,the fibrils had similar thicknesses of about 3.5 nm and a periodic structure with a period of about 25 nm.
机译:我们研究了离子强度对pH 2.0时牛β-乳球蛋白热诱导纤维状纤维聚集动力学的影响。使用原位光散射,我们发现了一个明显的临界蛋白质浓度,在此浓度以下,所有研究的离子强度都没有明显的原纤维形成这是对我们先前通过质子NMR光谱观察到的13 mM离子强度的表观临界浓度的独立确认,也是关于较高离子强度的此类临界浓度的首次报道。临界浓度随离子强度的增加而降低在临界浓度以下,主要形成不再能聚集的“末端”物质。我们证明,对于最低的离子强度,该物种由不可逆变性的蛋白质组成。原子力显微镜研究了在不同离子强度下形成的原纤维的形态。在较高的离子强度下显示出较短且弯曲的原纤维。在所有离子强度研究下,原纤维的厚度相似,约为3.5 nm,周期结构约为25 nm。

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