π Coronavirus nucleocapsid protein facilitates template switching and is required for efficient transcription
Purified nucleocapsid protein (N protein) from transmissible gastroenteritis virus (TGEV) enhanced hammerhead ribozyme self-cleavage and favored nucleic acid annealing, properties that define RNA chaperones, as previously reported. Several TGEV N-protein deletion mutants were expressed in Escherichia coli and purified, and their RNA binding ability and RNA chaperone activity were evaluated. The smallest N-protein domain analyzed with RNA chaperone activity, facilitating DNA and RNA annealing, contained the central unstructured region (amino acids 117 to 268). Interestingly, N protein and its deletion mutants with RNA chaperone activity enhanced template switching in a retrovirus-derived heterologous system, reinforcing the concept that TGEV N protein is an RNA chaperone that could be involved in template switching. This result is in agreement with the observation that in vivo, N protein is not necessary for TGEV replication, but it is required for efficient transcription. Copyright Β© 2010, American Society for Microbiology.
keywords
π amino acid (454)
π nucleocapsid protein (162)
π gastroenteritis virus (188)
π nucleic acid (139)
π amino acids (205)
π previously reported (79)
π transmissible gastroenteritis (226)
author
π€ ZΓΊΓ±iga, Sonia
π€ Cruz, Jazmina L.G.
π€ Sola, Isabel
π€ Mateos-GΓ³mez, Pedro A.
π€ Palacio, Lorena
π€ Enjuanes, Luis
year
β° 2010
journal
π Journal of Virology
issn
π 0022538X
volume
84
number
4
page
2169-2175
citedbycount
66
download
π [BibTeX]