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Structure of the omalizumab Fab

机译:omalizumab Fab的结构

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摘要

Omalizumab is a humanized anti-IgE antibody that inhibits the binding of IgE to its receptors on mast cells and basophils, thus blocking the IgE-mediated release of inflammatory mediators from these cells. Omalizumab binds to the Fc domains of IgE in proximity to the binding site of the high-affinity IgE receptor Fc∊RI, but the epitope and the mechanisms and conformations governing the recognition remain unknown. In order to elucidate the molecular mechanism of its anti-IgE activity, the aim was to analyse the interaction of omalizumab with human IgE. Therefore, IgE Fc C∊2–4 was recombinantly produced in mammalian HEK-293 cells. Functionality of the IgE Fc was proven by ELISA and mediator-release assays. Omalizumab IgG was cleaved with papain and the resulting Fab was purified by ion-exchange chromatography. The complex of IgE Fc with omalizumab was prepared by size-exclusion chromatography. However, crystals containing the complex were not obtained, suggesting that the process of crystallization favoured the dissociation of the two proteins. Instead, two structures of the omalizumab Fab with maximum resolutions of 1.9 and 3.0 Å were obtained. The structures reveal the arrangement of the CDRs and the position of omalizumab residues known from prior functional studies to be involved in IgE binding. Thus, the structure of omalizumab provides the structural basis for understanding the function of omalizumab, allows optimization of the procedure for complex crystallization and poses questions about the conformational requirements for anti-IgE activity.
机译:奥马珠单抗是一种人源化的抗IgE抗体,可抑制IgE与其肥大细胞和嗜碱性粒细胞上的受体结合,从而阻止IgE介导的炎症介质从这些细胞中释放。奥马珠单抗在高亲和力IgE受体Fc∊RI的结合位点附近结合IgE的Fc域,但表位以及控制识别的机制和构象仍然未知。为了阐明其抗IgE活性的分子机制,目的是分析奥马珠单抗与人IgE的相互作用。因此,在哺乳动物HEK-293细胞中重组产生了IgE Fc C recombinant2-4。 IgE Fc的功能已通过ELISA和介体释放测定法证明。用木瓜蛋白酶切割奥马珠单抗IgG,并通过离子交换色谱法纯化所得Fab。通过尺寸排阻色谱法制备IgE Fc与奥马珠单抗的复合物。但是,没有获得含有复合物的晶体,这表明结晶过程有利于两种蛋白质的解离。取而代之的是,获得了奥马珠单抗Fab的两个结构,最大分辨率为1.9和3.0Å。该结构揭示了CDR的排列和奥马珠单抗残基的位置,这些功能是先前的功能研究已知与IgE结合有关的。因此,omalizumab的结构为理解omalizumab的功能提供了结构基础,可以优化复杂结晶的过程,并提出了有关抗IgE活性的构象要求的问题。

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