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Selection and Characterization of Monoclonal Antibodies Targeting Middle East Respiratory Syndrome Coronavirus through a Human Synthetic Fab Phage Display Library Panning

机译:通过人类合成Fab噬菌体展示文库淘选针对中东呼吸系统综合症冠状病毒的单克隆抗体并进行表征

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摘要

Since its first report in the Middle East in 2012, the Middle East respiratory syndrome-coronavirus (MERS-CoV) has become a global concern due to the high morbidity and mortality of individuals infected with the virus. Although the majority of MERS-CoV cases have been reported in Saudi Arabia, the overall risk in areas outside the Middle East remains significant as inside Saudi Arabia. Additional pandemics of MERS-CoV are expected, and thus novel tools and reagents for therapy and diagnosis are urgently needed. Here, we used phage display to develop novel monoclonal antibodies (mAbs) that target MERS-CoV. A human Fab phage display library was panned against the S2 subunit of the MERS-CoV spike protein (MERS-S2P), yielding three unique Fabs (S2A3, S2A6, and S2D5). The Fabs had moderate apparent affinities (Half maximal effective concentration (EC50 = 123–421 nM) for MERS-S2P, showed no cross-reactivity to spike proteins from other CoVs, and were non-aggregating and thermostable (Tm = 61.5–80.4 °C). Reformatting the Fabs into IgGs (Immunoglobulin Gs) greatly increased their apparent affinities (KD = 0.17–1.2 nM), presumably due to the effects of avidity. These apparent affinities were notably higher than that of a previously reported anti-MERS-CoV S2 reference mAb (KD = 8.7 nM). Furthermore, two of the three mAbs (S2A3 and S2D5) bound only MERS-CoV (Erasmus Medical Center (EMC)) and not other CoVs, reflecting their high binding specificity. However, the mAbs lacked MERS-CoV neutralizing activity. Given their high affinity, specificity, and desirable stabilities, we anticipate that these anti-MERS-CoV mAbs would be suitable reagents for developing antibody-based diagnostics in laboratory or hospital settings for point-of-care testing.
机译:自2012年在中东发布第一份报告以来,中东呼吸综合征冠状病毒(MERS-CoV)由于感染该病毒的个体的高发病率和死亡率而成为全球关注的问题。尽管大多数MERS-CoV病例已在沙特阿拉伯报告,但中东以外地区的整体风险仍然与沙特阿拉伯内部一样重大。预计还会有MERS-CoV的大流行,因此迫切需要用于治疗和诊断的新型工具和试剂。在这里,我们使用噬菌体展示来开发针对MERS-CoV的新型单克隆抗体(mAb)。针对MERS-CoV穗蛋白(MERS-S2P)的S2亚基淘洗了人类Fab噬菌体展示文库,产生了三个独特的Fab(S2A3,S2A6和S2D5)。 Fab具有中等的表观亲和力(对MERS-S2P的半最大有效浓度(EC50 = 123–421 nM),对来自其他CoV的刺突蛋白无交叉反应,并且不聚集且不易热(Tm = 61.5–80.4° C)。将Fab重新格式化为IgG(免疫球蛋白Gs)可以大大提高其表观亲和力(KD = 0.17-1.2 nM),这可能是由于亲和力的影响,这些表观亲和力明显高于先前报道的抗MERS- CoV S2参考单克隆抗体(KD = 8.7 nM)。此外,三个mAb(S2A3和S2D5)中的两个仅结合MERS-CoV(伊拉斯姆斯医学中心(EMC)),而不结合其他CoV,反映了它们的高结合特异性。单克隆抗体缺乏MERS-CoV中和活性,鉴于其高亲和力,特异性和理想的稳定性,我们预计这些抗MERS-CoV单克隆抗体将是适合在实验室或医院环境中进行基于抗体的诊断的试剂测试。

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