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Inability of rat DPP4 to allow MERS-CoV infection revealed by using a VSV pseudotype bearing truncated MERS-CoV spike protein

机译:通过使用带有截短的MERS-CoV刺突蛋白的VSV假型揭示了大鼠DPP4无法允许MERS-CoV感染

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摘要

Middle East respiratory syndrome (MERS) coronavirus (Co-V) contains a single spike (S) protein, which binds to a receptor molecule, dipeptidyl peptidase 4 (DPP4; also known as CD26), and serves as a neutralizing antigen. Pseudotyped viruses are useful for measuring neutralization titers against highly infectious viruses as well as for studying their mechanism of entry. In this study, we constructed a series of cytoplasmic deletion mutants of MERS-CoV S and compared the efficiency with which they formed pseudotypes with vesicular stomatitis virus. A pseudotype bearing an S protein with the C-terminal 16 amino acids deleted (MERSpv-St16) reached a maximum titer that was approximately tenfold higher than that of a pseudotype bearing a non-truncated full-length S protein. Using MERSpv-St16, we demonstrated the inability of rat DPP4 to serve as a functional receptor for MERS-CoV, suggesting that rats are not susceptible to MERS-CoV infection. This study provides novel information that enhances our understanding of the host range of MERS-CoV.
机译:中东呼吸综合征(MERS)冠状病毒(Co-V)包含单个刺突(S)蛋白,该蛋白与受体分子二肽基肽酶4(DPP4;也称为CD26)结合,并充当中和抗原。伪型病毒可用于测量针对高感染性病毒的中和效价以及研究其进入机制。在这项研究中,我们构建了一系列的MERS-CoV S细胞质缺失突变体,并比较了它们与水疱性口炎病毒形成假型的效率。带有S蛋白的C末端缺失16个氨基酸的假型(MERSpv-St16)的最大效价比带有非截短的全长S蛋白的假型的最高效价高约十倍。使用MERSpv-St16,我们证明了大鼠DPP4无法充当MERS-CoV的功能性受体,表明大鼠对MERS-CoV感染不敏感。这项研究提供了新颖的信息,可增进我们对MERS-CoV宿主范围的了解。

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