๐ The severe acute respiratory syndrome coronavirus Nsp15 protein is an endoribonuclease that prefers manganese as a cofactor
Nonstructural protein 15 (Nsp15) of the severe acute respiratory syndrome coronavirus (SARS-CoV) produced in Escherichia coli has endoribonuclease activity that preferentially cleaved 5โฒ of uridylates of RNAs. Blocking either the 5โฒ or 3โฒ terminus did not affect cleavage. Double- and single-stranded RNAs were both substrates for Nsp15 but with different kinetics for cleavage. Mn2+ at 2 to 10 mM was needed for optimal endoribonuclease activity, but Mg2+ and several other divalent metals were capable of supporting only a low level of activity. Concentrations of Mn2+ needed for endoribonuclease activity induced significant conformation change(s) in the protein, as measured by changes in tryptophan fluorescence. A similar endoribonucleolytic activity was detected for the orthologous protein from another coronavirus, demonstrating that the endoribonuclease activity of Nsp15 may be common to coronaviruses. This work presents an initial biochemical characterization of a novel coronavirus endoribonuclease.
keywords
๐ severe acute (1373)
๐ syndrome coronavirus (1074)
๐ novel coronavirus (684)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
year
โฐ 2004
journal
๐ Journal of Virology
issn
๐ 0022538X
volume
78
number
22
page
12218-12224
citedbycount
98
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