Biochemical characterization of a recombinant SARS coronavirus nsp12 RNA-dependent RNA polymerase capable of copying viral RNA templates
Author:
Publisher
Springer Science and Business Media LLC
Subject
Virology,General Medicine
Link
http://link.springer.com/content/pdf/10.1007/s00705-012-1404-x.pdf
Reference41 articles.
1. Ahn DG, Lee W, Choi JK, Kim SJ, Plant EP, Almazan F, Taylor DR, Enjuanes L, Oh JW (2011) Interference of ribosomal frameshifting by antisense peptide nucleic acids suppresses SARS coronavirus replication. Antiviral Res 91:1–10
2. Beerens N, Selisko B, Ricagno S, Imbert I, van der Zanden L, Snijder EJ, Canard B (2007) De novo initiation of RNA synthesis by the arterivirus RNA-dependent RNA polymerase. J Virol 81:8384–8395
3. Cazenave C, Uhlenbeck OC (1994) RNA template-directed RNA synthesis by T7 RNA polymerase. Proc Natl Acad Sci USA 91:6972–6976
4. Cheng A, Zhang W, Xie Y, Jiang W, Arnold E, Sarafianos SG, Ding J (2005) Expression, purification, and characterization of SARS coronavirus RNA polymerase. Virology 335:165–176
5. Clemente-Casares P, Lopez-Jimenez AJ, Bellon-Echeverria I, Encinar JA, Martinez-Alfaro E, Perez-Flores R, Mas A (2011) De novo polymerase activity and oligomerization of hepatitis C virus RNA-dependent RNA-polymerases from genotypes 1 to 5. PLoS One 6:e18515
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