📄 Engineering a replication-competent, propagation-defective middle east respiratory syndrome coronavirus as a vaccine candidate
Middle East respiratory syndrome coronavirus (MERS-CoV) is an emerging coronavirus infecting humans that is associated with acute pneumonia, occasional renal failure, and a high mortality rate and is considered a threat to public health. The construction of a full-length infectious cDNA clone of the MERS-CoV genome in a bacterial artificial chromosome is reported here, providing a reverse genetics system to study the molecular biology of the virus and to develop attenuated viruses as vaccine candidates. Following transfection with the cDNA clone, infectious virus was rescued in both Vero A66 and Huh-7 cells. Recombinant MERS-Co. Vs (rMERS-Co. Vs) lacking the accessory genes 3, 4a, 4b, and 5 were successfully rescued from cDNA clones with these genes deleted. The mutant viruses presented growth kinetics similar to those of the wild-type virus, indicating that accessory genes were not essential for MERS-CoV replication in cell cultures. In contrast, an engineered mutant virus lacking the structural E protein (rMERS-CoVE) was not successfully rescued, since viral infectivity was lost at early passages. Interestingly, the rMERS-CoVE genome replicated after cDNA clone was transfected into cells. The infectious virus was rescued and propagated in cells expressing the E protein in trans, indicating that this virus was replication competent and propagation defective. Therefore, the rMERS-CoVE mutant virus is potentially a safe and promising vaccine candidate to prevent MERSCoV infection. © 2013 Almazán et al.
keywords
🔗 syndrome coronavirus (1074)
🔗 cells expressing (60)
🔗 reverse genetics (49)
🔗 public health (392)
🔗 high mortality (78)
🔗 infectious virus (88)
🔗 renal failure (30)
🔗 respiratory syndrome (2004)
🔗 cell culture (240)
author
👤 Almazán, Fernando
👤 Dediego, Marta L.
👤 Sola, Isabel
👤 Zuñiga, Sonia
👤 Nieto-Torres, Jose L.
👤 Marquez-Jurado, Silvia
👤 Andrés, German
👤 Enjuanes, Luis
year
⏰ 2013
journal
📚 mBio
issn
🗄 21612129 21507511
volume
4
number
5
page
citedbycount
104
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