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等电点下牛血清白蛋白的热诱导自组装。

Heat-induced self-assembling of BSA at the isoelectric point.

机构信息

IOM-CNR c/o Dipartimento di Fisica e Geologia, Università di Perugia, Via Pascoli, I-06123 Perugia, Italy.

Dipartimento di Chimica, Biologia e Biotecnologie, Università degli Studi di Perugia, Via Elce di sotto 8, 06123 Perugia, Italy.

出版信息

Int J Biol Macromol. 2021 Apr 30;177:40-47. doi: 10.1016/j.ijbiomac.2021.02.112. Epub 2021 Feb 17.

Abstract

Materials based on ordered protein aggregates have recently received a lot of attention for their application as drug carriers, due to their biocompatibility and their ability to sequester many biological fluids. Bovine serum albumin (BSA) is a good candidate for this use due to its high availability and tendency to aggregate and gel under acidic conditions. In the present work, we employ spectroscopic techniques to investigate the heat-induced BSA aggregation at the molecular scale, in the 12-84 °C temperature range, at pH = 5 where two different isoforms of the protein are stable. Samples at low and high protein concentration are examined. With the advantage of the combined use of FTIR and CD, we recognize the aggregation-prone species and the different distribution of secondary structures, conformational rearrangements and types of aggregates, of millimolar compared to micromolar BSA solutions. Further, as a new tool, we use the Maximum Entropy Method to fit the kinetic curves to investigate the distribution of kinetic constants of the complex hierarchical aggregation process. Finally, we characterize the activation energy of the initial self-assembling step to observe that the formation of both small and large aggregates is driven by the same interactions.

摘要

基于有序蛋白质聚集物的材料由于其生物相容性和能够隔离许多生物流体,因此最近在作为药物载体方面受到了很多关注。牛血清白蛋白(BSA)由于其高可用性以及在酸性条件下聚集和凝胶的趋势,是这种用途的理想候选物。在目前的工作中,我们使用光谱技术在 12-84°C 的温度范围内、pH=5 下研究了分子尺度上的热诱导 BSA 聚集,在该 pH 值下两种不同的蛋白质异构体稳定存在。我们检查了低蛋白浓度和高蛋白浓度的样品。结合使用傅里叶变换红外光谱(FTIR)和圆二色性(CD),我们识别了聚集倾向的物种,以及与微摩尔 BSA 溶液相比,毫摩尔 BSA 溶液中二级结构、构象重排和聚集物类型的不同分布。此外,作为一种新工具,我们使用最大熵方法拟合动力学曲线,以研究复杂的层次聚集过程的动力学常数分布。最后,我们表征初始自组装步骤的活化能,以观察到形成小聚集体和大聚集体都是由相同的相互作用驱动的。

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