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-聚糖对人IgA2结构的影响。

Effects of -glycans on the structure of human IgA2.

作者信息

Ruocco Valentina, Grünwald-Gruber Clemens, Rad Behzad, Tscheliessnig Rupert, Hammel Michal, Strasser Richard

机构信息

Department of Applied Genetics and Cell Biology, University of Natural Resources and Life Sciences, Vienna, Austria.

Core Facility Mass Spectrometry, University of Natural Resources and Life Sciences, Vienna, Austria.

出版信息

Front Mol Biosci. 2024 Apr 5;11:1390659. doi: 10.3389/fmolb.2024.1390659. eCollection 2024.

Abstract

The transition of IgA antibodies into clinical development is crucial because they have the potential to create a new class of therapeutics with superior pathogen neutralization, cancer cell killing, and immunomodulation capacity compared to IgG. However, the biological role of IgA glycans in these processes needs to be better understood. This study provides a detailed biochemical, biophysical, and structural characterization of recombinant monomeric human IgA2, which varies in the amount/locations of attached glycans. Monomeric IgA2 antibodies were produced by removing the -linked glycans in the CH1 and CH2 domains. The impact of glycans on oligomer formation, thermal stability, and receptor binding was evaluated. In addition, we performed a structural analysis of recombinant IgA2 in solution using Small Angle X-Ray Scattering (SAXS) to examine the effect of glycans on protein structure and flexibility. Our results indicate that the absence of glycans in the Fc tail region leads to higher-order aggregates. SAXS, combined with atomistic modeling, showed that the lack of glycans in the CH2 domain results in increased flexibility between the Fab and Fc domains and a different distribution of open and closed conformations in solution. When binding with the Fcα-receptor, the dissociation constant remains unaltered in the absence of glycans in the CH1 or CH2 domain, compared to the fully glycosylated protein. These results provide insights into -glycans' function on IgA2, which could have important implications for developing more effective IgA-based therapeutics in the future.

摘要

IgA抗体向临床开发的转变至关重要,因为与IgG相比,它们有潜力创造出一类具有卓越病原体中和、癌细胞杀伤和免疫调节能力的新型治疗药物。然而,IgA聚糖在这些过程中的生物学作用仍需深入了解。本研究对重组单体人IgA2进行了详细的生化、生物物理和结构表征,其连接聚糖的数量/位置有所不同。通过去除CH1和CH2结构域中的连接聚糖来制备单体IgA2抗体。评估了聚糖对寡聚体形成、热稳定性和受体结合的影响。此外,我们使用小角X射线散射(SAXS)对溶液中的重组IgA2进行了结构分析,以研究聚糖对蛋白质结构和柔韧性的影响。我们的结果表明,Fc尾部区域缺乏聚糖会导致形成高阶聚集体。SAXS结合原子模型表明,CH2结构域中缺乏聚糖会导致Fab和Fc结构域之间的柔韧性增加,以及溶液中开放和闭合构象的不同分布。与完全糖基化的蛋白质相比,当与Fcα受体结合时,CH1或CH2结构域中缺乏聚糖时解离常数保持不变。这些结果为聚糖在IgA2上的功能提供了见解,这可能对未来开发更有效的基于IgA的治疗药物具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a2f/11026580/60eba4428ef9/fmolb-11-1390659-g001.jpg

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