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聚合物生物缀合对蛋白质稳定性和活性的影响研究:聚乙二醇化的替代方法。

Impact of Polymer Bioconjugation on Protein Stability and Activity Investigated with Discrete Conjugates: Alternatives to PEGylation.

机构信息

Institute of Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering , Karlsruhe Institute of Technology (KIT) , Fritz-Haber-Weg 2 , 76131 Karlsruhe , Germany.

Institute of Toxicology and Genetics (ITG) , Karlsruhe Institute of Technology (KIT) , Hermann-von-Helmholtz-Platz 1 , 76344 Eggenstein-Leopoldshafen , Germany.

出版信息

Biomacromolecules. 2018 Nov 12;19(11):4250-4262. doi: 10.1021/acs.biomac.8b01020. Epub 2018 Oct 5.

Abstract

Covalent attachment of synthetic polymers to proteins, known as protein-polymer conjugation, is currently one of the main approaches for improving the physicochemical properties of these biomolecules. The most commonly employed polymer is polyethylene glycol (PEG), as evidenced by extensive research and clinical track records for its use in biopharmaceuticals. However, the occurrence of allergic reactions or hypersensitivity and the discovery of PEG antibodies, on the one hand, and the rise of controlled polymerization techniques and novel monomers, on the other hand, have been driving the search for alternative polymers for bioconjugation. The present study describes the synthesis, purification, and properties of conjugates of lysozyme with poly( N-acryloylmorpholine) (PNAM) and poly(oligoethylene glycol methyl ether methacrylate) (POEGMA). Particularly, conjugate species with distinct conjugation degrees are investigated for their residual activity, aggregation behavior, and solubility, by using a high-throughput screening approach. Our study showcases the importance of evaluating conjugates obtained by nonsite-specific modification through isolated species with discrete degrees of conjugation rather than on the batch level. Monovalent conjugates with relatively low molar mass polymers displayed equal or even higher activity than the native protein, while all conjugates showed an improved protein solubility. To achieve a comparable effect on solubility as with PEG, PNAM and POEGMA of higher molar masses were required.

摘要

将合成聚合物共价连接到蛋白质上,称为蛋白质-聚合物缀合,是目前改善这些生物分子物理化学性质的主要方法之一。最常用的聚合物是聚乙二醇(PEG),这一点可以从广泛的研究和临床应用记录中得到证明,PEG 已被用于生物制药。然而,一方面过敏反应或超敏反应的发生以及 PEG 抗体的发现,另一方面控制聚合技术和新型单体的出现,一直推动着寻找用于生物缀合的替代聚合物。本研究描述了溶菌酶与聚(N-丙烯酰吗啉)(PNAM)和聚(聚乙二醇甲基醚甲基丙烯酸酯)(POEGMA)的缀合物的合成、纯化和性质。特别是,通过高通量筛选方法研究了具有不同缀合度的缀合物种的残留活性、聚集行为和溶解度。我们的研究展示了通过离散的具有特定连接度的单个物种而不是通过批次水平来评估通过非特异性修饰获得的缀合物的重要性。具有相对低摩尔质量聚合物的单价缀合物显示出与天然蛋白质相等或甚至更高的活性,而所有缀合物都显示出改善的蛋白质溶解度。为了达到与 PEG 相当的溶解度效果,需要使用更高摩尔质量的 PNAM 和 POEGMA。

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