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Polymorphism and Selection Pressure of SARS-CoV-2 Vaccine and Diagnostic Antigens: Implications for Immune Evasion and Serologic Diagnostic Performance

机译:SARS-COV-2疫苗和诊断抗原的多态性和选择压力:对免疫逃避和血清诊断性能的影响

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摘要

The ongoing SARS-CoV-2 pandemic has triggered multiple efforts for serological tests and vaccine development. Most of these tests and vaccines are based on the Spike glycoprotein (S) or the Nucleocapsid (N) viral protein. Conservation of these antigens among viral strains is critical to ensure optimum diagnostic test performance and broad protective efficacy, respectively. We assessed N and S antigen diversity from 17,853 SARS-CoV-2 genome sequences and evaluated selection pressure. Up to 6–7 incipient phylogenetic clades were identified for both antigens, confirming early variants of the S antigen and identifying new ones. Significant diversifying selection was detected at multiple sites for both antigens. Some sequence variants have already spread in multiple regions, in spite of their low frequency. In conclusion, the N and S antigens of SARS-CoV-2 are well-conserved antigens, but new clades are emerging and may need to be included in future diagnostic and vaccine formulations.
机译:正在进行的SARS-COV-2大流行引发了血清学检测和疫苗开发的多项努力。大多数这些测试和疫苗基于穗糖蛋白或核衣壳(N)病毒蛋白。保护这些抗原在病毒菌株中的保护对于确保最佳诊断测试性能和广泛的保护性效果至关重要。我们评估了来自17,853 SARS-COV-2基因组序列的N和S抗原多样性,并评估了选择压力。对于两种抗原鉴定出高达6-7的初期的系统发育曲线,证实了S抗原的早期变体并识别新的抗原。在多个抗原的多个位点检测到显着的多样化选择。一些序列变型已经在多个区域中扩散,尽管它们的低频频率。总之,SARS-COV-2的N和S抗原是保守的抗原,但新的曲线正在出现,并且可能需要包括在未来的诊断和疫苗制剂中。

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