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高分辨率循环离子迁移质谱用于天然治疗性单克隆抗体构象表征的优势与局限

Benefits and Limitations of High-Resolution Cyclic IM-MS for Conformational Characterization of Native Therapeutic Monoclonal Antibodies.

作者信息

Deslignière Evolène, Ollivier Simon, Beck Alain, Ropartz David, Rogniaux Hélène, Cianférani Sarah

机构信息

Laboratoire de Spectrométrie de Masse BioOrganique, IPHC UMR 7178, Université de Strasbourg, CNRS, Strasbourg 67000, France.

Infrastructure Nationale de Protéomique ProFI - FR2048, Strasbourg 67087, France.

出版信息

Anal Chem. 2023 Feb 28;95(8):4162-4171. doi: 10.1021/acs.analchem.2c05265. Epub 2023 Feb 13.

Abstract

Monoclonal antibodies (mAbs) currently represent the main class of therapeutic proteins. mAbs approved by regulatory agencies are selected from IgG1, IgG2, and IgG4 subclasses, which possess different interchain disulfide connectivities. Ion mobility coupled to native mass spectrometry (IM-MS) has emerged as a valuable approach to tackle the challenging characterization of mAbs' higher order structures. However, due to the limited resolution of first-generation IM-MS instruments, subtle conformational differences on large proteins have long been hard to capture. Recent technological developments have aimed at increasing available IM resolving powers and acquisition mode capabilities, namely, through the release of high-resolution IM-MS (HR-IM-MS) instruments, like cyclic IM-MS (cIM-MS). Here, we outline the advantages and drawbacks of cIM-MS for better conformational characterization of intact mAbs (∼150 kDa) in native conditions compared to first-generation instruments. We first assessed the extent to which multipass cIM-MS experiments could improve the separation of mAbs' conformers. These initial results evidenced some limitations of HR-IM-MS for large native biomolecules which possess rich conformational landscapes that remain challenging to decipher even with higher IM resolving powers. Conversely, for collision-induced unfolding (CIU) approaches, higher resolution proved to be particularly useful (i) to reveal new unfolding states and (ii) to enhance the separation of coexisting activated states, thus allowing one to apprehend gas-phase CIU behaviors of mAbs directly at the intact level. Altogether, this study offers a first panoramic overview of the capabilities of cIM-MS for therapeutic mAbs, paving the way for more widespread HR-IM-MS/CIU characterization of mAb-derived formats.

摘要

单克隆抗体(mAb)目前是治疗性蛋白质的主要类别。监管机构批准的单克隆抗体选自IgG1、IgG2和IgG4亚类,它们具有不同的链间二硫键连接方式。离子淌度与天然质谱联用(IM-MS)已成为解决单克隆抗体高阶结构表征难题的一种有价值的方法。然而,由于第一代IM-MS仪器分辨率有限,长期以来一直难以捕捉大型蛋白质上细微的构象差异。最近的技术发展旨在提高可用的IM分辨能力和采集模式能力,即通过推出高分辨率IM-MS(HR-IM-MS)仪器,如循环IM-MS(cIM-MS)。在此,我们概述了与第一代仪器相比,cIM-MS在天然条件下对完整单克隆抗体(约150 kDa)进行更好的构象表征的优缺点。我们首先评估了多通道cIM-MS实验在多大程度上可以改善单克隆抗体构象异构体的分离。这些初步结果证明了HR-IM-MS对于具有丰富构象景观的大型天然生物分子存在一些局限性,即使具有更高的IM分辨能力,这些构象景观仍难以解读。相反,对于碰撞诱导展开(CIU)方法,更高的分辨率被证明特别有用:(i)揭示新的展开状态;(ii)增强共存活化状态的分离,从而使人们能够直接在完整水平上了解单克隆抗体的气相CIU行为。总之,本研究首次全面概述了cIM-MS对治疗性单克隆抗体的能力,为更广泛地对单克隆抗体衍生形式进行HR-IM-MS/CIU表征铺平了道路。

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