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定量自然丰度 NMR 数据可区分单克隆抗体及其片段的溶液行为。

Quantification of natural abundance NMR data differentiates the solution behavior of monoclonal antibodies and their fragments.

机构信息

Department of Computational and Structural Chemistry, Merck & Co., Inc, Kenilworth, NJ, USA.

出版信息

MAbs. 2021 Jan-Dec;13(1):1978132. doi: 10.1080/19420862.2021.1978132.

Abstract

Biotherapeutics are an important class of molecules for the treatment of a wide range of diseases. They include low molecular weight peptides, highly engineered protein scaffolds and monoclonal antibodies. During their discovery and development, assessments of the biophysical attributes is critical to understanding the solution behavior of therapeutic proteins and for de-risking liabilities. Thus, methods that can quantify, characterize, and provide a basis to inform risks and drive the selection of more optimal antibody and alternative scaffolds are needed. Nuclear Magnetic Resonance (NMR) spectroscopy is a technique that provides a means to probe antibody and antibody-like molecules in solution, at atomic resolution, under any formulated conditions. Here, all samples were profiled at natural abundance requiring no isotope enrichment. We present a numerical approach that quantitates two-dimensional methyl spectra. The approach was tested with a reference dataset that contained different types of antibody and antibody-like molecules. This dataset was processed through a procedure we call a Random Sampling of NMR Peaks for Covariance Analysis. This analysis revealed that the first two components were well correlated with the hydrodynamic radius of the molecules included in the reference set. Higher-order principal components were also linked to dynamic features between different tethered antibody-like molecules and contributed to decisions around candidate selection. The reference set provides a basis to characterize molecules with unknown solution behavior and is sensitive to the behavior of a molecule formulated under different conditions. The approach is independent of protein design, scaffold, formulation and provides a facile method to quantify solution behavior.

摘要

生物疗法是治疗广泛疾病的一类重要分子。它们包括低分子量肽、高度工程化的蛋白质支架和单克隆抗体。在发现和开发过程中,对生物物理属性的评估对于理解治疗性蛋白质的溶液行为以及降低风险至关重要。因此,需要能够定量、表征并为风险提供依据并推动选择更优抗体和替代支架的方法。核磁共振(NMR)光谱是一种技术,可在任何配方条件下以原子分辨率探测溶液中的抗体和抗体样分子。在这里,所有样品均在自然丰度下进行了分析,无需同位素富集。我们提出了一种定量二维甲基谱的数值方法。该方法通过一个称为 NMR 峰随机抽样协方差分析的程序对包含不同类型抗体和抗体样分子的参考数据集进行了测试。该分析表明,前两个分量与参考集中分子的流体力学半径很好地相关。更高阶的主分量也与不同连接的抗体样分子之间的动态特征相关,并有助于候选物的选择。参考集为具有未知溶液行为的分子提供了特征描述的基础,并且对在不同条件下配制的分子的行为敏感。该方法独立于蛋白质设计、支架和配方,并提供了一种易于定量溶液行为的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e175/8496538/663024de5b32/KMAB_A_1978132_F0001_OC.jpg

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