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酶促去唾液酸化实现了对高度糖基化和唾液酸化的Fc融合蛋白可靠的电荷变体表征。

Enzymatic Desialylation Enables Reliable Charge Variant Characterization of Highly Glycosylated and Sialylated Fc Fusion Proteins.

作者信息

Wen Xiaona, Liu Anita P, Song Jing, Leng Chuan, Wang Jingzhou, Russo Briana, Thiagarajan Geetha, Wang Hongxia, Dow Ximeng Y, Hua Xiaoqing, Ao Xiaoping, Mittal Sarita, Gennaro Lynn, Gunawan Rico

机构信息

Analytical Research and Development, Merck & Co., Inc., Rahway, New Jersey 07065, United States.

Modeling and Informatics, Merck & Co., Inc., San Francisco, California 94080, United States.

出版信息

ACS Pharmacol Transl Sci. 2025 Jan 23;8(2):394-408. doi: 10.1021/acsptsci.4c00460. eCollection 2025 Feb 14.

Abstract

Fusion proteins constitute a class of engineered therapeutics and have emerged as promising candidates for disease treatment. However, the structural complexity and heterogeneity of fusion proteins make their characterization extremely challenging, and thus, an innovative and comprehensive analytical toolbox is needed. Here, for the first time, we demonstrate a novel and robust workflow to evaluate charge variants for a highly glycosylated fusion protein with heavy sialylation using imaged capillary isoelectric focusing (icIEF). In the development of the icIEF method, key factors that were systematically investigated include the desialylation level, the stability of the desialylated molecule, incubation time and temperature of desialylation, protein concentrations, urea and l-arginine effects on the tertiary structure, and instrumental comparability. Multivariate and correlation analyses were subsequently applied to confirm the impacts of the parameters evaluated. Furthermore, a microfluidic chip-based icIEF system coupled with ultraviolet detection and mass spectrometry (icIEF-UV/MS) was utilized to identify critical post-translational modifications and ameliorate the understanding of charge variants. Our study demonstrates that this workflow enables a mechanistic understanding of charge variants for heavily sialylated therapeutics.

摘要

融合蛋白构成了一类工程治疗药物,并已成为疾病治疗的有前景的候选药物。然而,融合蛋白的结构复杂性和异质性使得其表征极具挑战性,因此,需要一个创新且全面的分析工具箱。在此,我们首次展示了一种新颖且稳健的工作流程,用于使用成像毛细管等电聚焦(icIEF)评估具有高度唾液酸化的高糖基化融合蛋白的电荷变体。在icIEF方法的开发过程中,系统研究的关键因素包括去唾液酸化水平、去唾液酸化分子的稳定性、去唾液酸化的孵育时间和温度、蛋白质浓度、尿素和L-精氨酸对三级结构的影响以及仪器的可比性。随后进行了多变量和相关性分析,以确认所评估参数的影响。此外,基于微流控芯片的icIEF系统与紫外检测和质谱联用(icIEF-UV/MS)被用于识别关键的翻译后修饰,并加深对电荷变体的理解。我们的研究表明,该工作流程能够对高度唾液酸化治疗药物的电荷变体进行机理理解。

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Impact of IgG1 N-glycosylation on their interaction with Fc gamma receptors.IgG1 N-糖基化对其与Fcγ受体相互作用的影响。
Curr Res Immunol. 2020 Jun 27;1:23-37. doi: 10.1016/j.crimmu.2020.06.001. eCollection 2020 Dec.
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Sialylation as an Important Regulator of Antibody Function.唾液酸化作为抗体功能的重要调节剂。
Front Immunol. 2022 Apr 7;13:818736. doi: 10.3389/fimmu.2022.818736. eCollection 2022.

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