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连接的聚乙二醇链的长度和结构对流体力学半径的影响以及聚乙二醇化人血清白蛋白的色谱分离

The Effect of Length and Structure of Attached Polyethylene Glycol Chain on Hydrodynamic Radius, and Separation of PEGylated Human Serum Albumin by Chromatography.

作者信息

Akbarzadehlaleh Parvin, Mirzaei Mona, Mashahdi-Keshtiban Mahdiyeh, Heidari Hamid Reza

机构信息

Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Adv Pharm Bull. 2021 Sep;11(4):728-738. doi: 10.34172/apb.2021.082. Epub 2020 Aug 5.

Abstract

This study focuses on the effect of length and structure of attached polyethylene glycol (PEG) chain on hydrodynamic radius (R ) and chromatographic retention of PEGylated protein. To this aim human serum albumin (HSA) as a standard protein was PEGylated site specifically with mPEG-maleimide. Separated PEG_HSA fractions were analyzed by size exclusion and anion exchange chromatography (AExC). The purity of fractions and the relative mobility of PEGylated and native proteins were analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE). Hydrodynamic radius was determined based on the retention time of fractions on size exclusion chromatography (SEC), and also according to the previously reported equations. A linear relation was shown between the molecular weight of attached PEG and R of PEGylated HSA. No significant difference between R of proteins modified with linear and branched PEG was shown. In SDS-PAGE, the delaying effect of branched PEG on movement of PEGylated protein was higher than that of linear PEG. As PEGylated HSA and dimer HSA have almost the same size and in SEC they elute at very close retention times, so in this case ion exchange chromatography (IExC) is more effective than SEC in separation of PEGylated HSA. Branched PEG- HSA showed earlier elution on anion exchange chromatography compared to linear PEG-HSA, that this can explain the different shielding effect of various structures of attached PEGs. The smaller size of PEGylated HSA in compare to the sum of the hydrodynamic radiuses of native HSA and attached PEG could be as a result of shielded attachment of polymer around protein.

摘要

本研究聚焦于连接的聚乙二醇(PEG)链的长度和结构对聚乙二醇化蛋白质的流体力学半径(R)和色谱保留的影响。为此,以人血清白蛋白(HSA)作为标准蛋白,用mPEG-马来酰亚胺进行位点特异性聚乙二醇化。通过尺寸排阻色谱和阴离子交换色谱(AExC)对分离的PEG_HSA组分进行分析。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)分析组分的纯度以及聚乙二醇化和天然蛋白质的相对迁移率。基于组分在尺寸排阻色谱(SEC)上的保留时间,并根据先前报道的公式测定流体力学半径。结果表明连接的PEG分子量与聚乙二醇化HSA的R之间存在线性关系。未显示线性PEG和支链PEG修饰的蛋白质的R之间存在显著差异。在SDS-PAGE中,支链PEG对聚乙二醇化蛋白质迁移的延迟作用高于线性PEG。由于聚乙二醇化HSA和二聚体HSA大小几乎相同,且在SEC中它们在非常接近的保留时间洗脱,因此在这种情况下,离子交换色谱(IExC)在分离聚乙二醇化HSA方面比SEC更有效。与线性PEG-HSA相比,支链PEG-HSA在阴离子交换色谱上洗脱更早,这可以解释连接的不同结构PEG的不同屏蔽效应。与天然HSA和连接的PEG的流体力学半径之和相比,聚乙二醇化HSA的尺寸较小可能是由于聚合物在蛋白质周围的屏蔽性连接所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ebc/8642789/e3540083c319/apb-11-728-g001.jpg

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