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基于等电点的相分离(pI-BPS)纯化含带电、生物活性融合蛋白(ELP-FPs)的弹性蛋白样多肽(ELPs)。

Isoelectric point (pI)-based phase separation (pI-BPS) purification of elastin-like polypeptides (ELPs) containing charged, biologically active fusion proteins (ELP-FPs).

机构信息

Department of Chemical, Biological & Materials Engineering, University of South Florida, Tampa, Florida, USA.

Department of Physics, University of South Florida, Tampa, Florida, USA.

出版信息

Biotechnol Prog. 2023 Nov-Dec;39(6):e3381. doi: 10.1002/btpr.3381. Epub 2023 Aug 2.

Abstract

Elastin-like polypeptides (ELPs) are peptide-based biomaterials with residue sequence (VPGXG)n where X is any residue except proline. ELPs are a useful modality for delivering biologically active proteins (growth factors, protease inhibitors, anti-inflammatory peptides, etc.) as fusion proteins (ELP-FP). ELP-FPs are particularly cost-effective because they can be rapidly purified using Inverse Temperature Cycling (ITC) via the reversible formation and precipitation of entropically driven aggregates above a transition temperature (T ). When ELP fusion proteins (ELP-FPs) contain significant charge density at physiological pH, electrostatic repulsion between them severely inhibits aggregate formation. The literature does not currently describe methods for purifying ELP-FPs containing charged proteins on either side of the ELP sequence as fusion partners without organic solvents. Here, the isoelectric point (pI) of ELP-FPs is discussed as a means of neutralizing surface charges on ELP-FPs and increasing ITC yield to dramatically high levels. We use pI-based phase separation (pI-BPS) to purify ELP-FPs containing cationic and anionic fusion proteins. We report a dramatic increase in protein yield when using pI-BPS for purification of ELP-FPs. Proteins purified by this method also retain the functional activity of the protein present in the ELP-FP. Techniques developed here enable significant diversification of possible fusion proteins delivered by ELPs as ELP-FPs by allowing them to be produced and purified at higher quantities and yields.

摘要

弹性蛋白样多肽 (ELPs) 是一种基于肽的生物材料,其残基序列为 (VPGXG)n,其中 X 是脯氨酸以外的任何残基。ELPs 是一种将生物活性蛋白(生长因子、蛋白酶抑制剂、抗炎肽等)作为融合蛋白(ELP-FP)递送至体内的有效方式。ELP-FP 特别具有成本效益,因为它们可以使用逆温度循环 (ITC) 通过在转变温度 (T) 以上形成和沉淀熵驱动的聚集体来快速纯化。当 ELP 融合蛋白 (ELP-FP) 在生理 pH 下含有大量电荷密度时,它们之间的静电排斥严重抑制了聚集体的形成。目前的文献并未描述在不使用有机溶剂的情况下,用于纯化在 ELP 序列两侧均含有带电荷蛋白质的 ELP-FP 的方法。在这里,我们将 ELP-FP 的等电点 (pI) 作为中和 ELP-FP 表面电荷并提高 ITC 产率的一种方法进行了讨论。我们使用基于 pI 的相分离 (pI-BPS) 来纯化含有阳离子和阴离子融合蛋白的 ELP-FP。我们报告了使用 pI-BPS 进行 ELP-FP 纯化时,蛋白质产量的显著增加。通过这种方法纯化的蛋白质保留了 ELP-FP 中存在的蛋白质的功能活性。此处开发的技术通过允许以更高的数量和产量生产和纯化它们,使 ELP 作为 ELP-FP 递送至体内的融合蛋白的种类大大多样化。

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