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在低蛋白浓度下的强非理想效应:对长形蛋白质的考虑。

Strong non-ideality effects at low protein concentrations: considerations for elongated proteins.

机构信息

Division of Immunobiology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.

BioAnalysis, LLC, 3401 I Street Suite 206, Philadelphia, PA, 19134, USA.

出版信息

Eur Biophys J. 2023 Jul;52(4-5):427-438. doi: 10.1007/s00249-023-01648-x. Epub 2023 Apr 13.

Abstract

A recent investigation was aimed at obtaining structural information on a highly extended protein via SEC-MALS-SAXS. Significantly broadened elution peaks were observed, reminiscent of a phenomenon known as viscous fingering. This phenomenon is usually observed above 50 mg/mL for proteins like bovine serum albumin (BSA). Interestingly, the highly extended protein (Brpt5.5) showed viscous fingering at concentrations lower than 5 mg/mL. The current study explores this and other non-ideal behavior, emphasizing the presence of these effects at relatively low concentrations for extended proteins. BSA, Brpt5.5, and a truncated form of Brpt5.5 referred to as Brpt1.5 are studied systematically using size-exclusion chromatography (SEC), sedimentation velocity analytical ultracentrifugation (AUC), and viscosity. The viscous fingering effect is quantified using two approaches and is found to correlate well with the intrinsic viscosity of the proteins-Brpt5.5 exhibits the most severe effect and is the most extended protein tested in the study. By AUC, the hydrodynamic non-ideality was measured for each protein via global analysis of a concentration series. Compared to BSA, both Brpt1.5 and Brpt5.5 showed significant non-ideality that could be easily visualized at concentrations at or below 5 mg/mL and 1 mg/mL, respectively. A variety of relationships were examined for their ability to differentiate the proteins by shape using information from AUC and/or viscosity. Furthermore, these relationships were also tested in the context of hydrodynamic modeling. The importance of considering non-ideality when investigating the structure of extended macromolecules is discussed.

摘要

最近的一项研究旨在通过 SEC-MALS-SAXS 获得高度伸展蛋白质的结构信息。观察到明显展宽的洗脱峰,这让人联想到一种称为粘性指进的现象。这种现象通常在牛血清白蛋白(BSA)等蛋白质的浓度高于 50mg/mL 时观察到。有趣的是,高度伸展的蛋白质(Brpt5.5)在浓度低于 5mg/mL 时就表现出粘性指进。本研究探讨了这种现象和其他非理想行为,强调了在相对较低的浓度下,伸展蛋白质存在这些效应。BSA、Brpt5.5 和 Brpt5.5 的一种截断形式(Brpt1.5)被系统地使用尺寸排阻色谱(SEC)、沉降速度分析超速离心(AUC)和粘度进行研究。使用两种方法定量粘性指进效应,并发现其与蛋白质的固有粘度很好地相关-Brpt5.5 表现出最严重的效应,是研究中测试的最伸展的蛋白质。通过 AUC,通过对浓度系列的全局分析,测量了每种蛋白质的流体力学非理想性。与 BSA 相比,Brpt1.5 和 Brpt5.5 都表现出显著的非理想性,在浓度为 5mg/mL 或以下和 1mg/mL 或以下时,很容易观察到。研究了各种关系,以利用 AUC 和/或粘度中的信息来区分蛋白质的形状。此外,还在流体力学建模的背景下测试了这些关系。讨论了在研究伸展大分子的结构时考虑非理想性的重要性。

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