📄 The severe acute respiratory syndrome (SARS) coronavirus NTPasefhelicase belongs to a distinct class of 5′ to 3′ viral helicases
The putative NTPase/helicase protein from severe acute respiratory syndrome coronavirus (SARS-CoV) is postulated to play a number of crucial roles in the viral life cycle, making it an attractive target for anti-SARS therapy. We have cloned, expressed, and purified this protein as an N-terminal hexahistidine fusion in Escherichia coli and have characterized its helicase and NTPase activities. The enzyme unwinds double-stranded DNA, dependent on the presence of a 5′ single-stranded overhang, indicating a 5′ to 3′ polarity of activity, a distinct characteristic of coronaviridae helicases. We provide the first quantitative analysis of the polynucleic acid binding and NTPase activities of a Nidovirus helicase, using a high throughput phosphate release assay that will be readily adaptable to the future testing of helicase inhibitors. All eight common NTPs and dNTPs were hydrolyzed by the SARS helicase in a magnesium-dependent reaction, stimulated by the presence of either single-stranded DNA or RNA. The enzyme exhibited a preference for ATP, dATP, and dCTP over the other NTP/dNTP substrates. Homopolynucleotides significantly stimulated the ATPase activity (15-25-fold) with the notable exception of poly(G) and poly(dG), which were non-stimulatory. We found a large variation in the apparent strength of binding of different homopolynucleotides, with dT24 binding over 10 times more strongly than dA24 as observed by the apparent Km.
keywords
🔗 severe acute (1373)
🔗 syndrome coronavirus (1074)
🔗 life cycle (63)
🔗 nucleic acid (139)
🔗 respiratory syndrome (2004)
🔗 acute respiratory (1734)
author
👤 Tanner, Julian A.
👤 Watt, Rory M.
👤 Chai, Yu Bo
👤 Lu, Lin Yu
👤 Lin, Marie C.
👤 Peiris, J. S.Malik
👤 Poon, Leo L.M.
👤 Kung, Hsiang Fu
👤 Huang, Jian Dong
year
⏰ 2003
issn
🗄 00219258
volume
278
number
41
page
39578-39582
citedbycount
85
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