Mutational analysis of vaccinia virus nucleoside triphosphate phosphohydrolase II, a DExH box RNA helicase Journal Article


Authors: Gross, C. H.; Shuman, S.
Article Title: Mutational analysis of vaccinia virus nucleoside triphosphate phosphohydrolase II, a DExH box RNA helicase
Abstract: Vaccinia virus nucleoside triphosphate phosphohydrolase II (NPH-II), a 3'- to-5' RNA helicase, displays sequence similarity to members of the DExH family of nucleic acid-dependent nucleoside triphosphatases (NTPases). The contributions of the conserved GxGKT and DExH motifs to enzyme activity were assessed by alanine scanning mutagenesis. Histidine-tagged versions of NPH- II were expressed in vaccinia virus-infected BSC40 cells and purified by nickel affinity and conventional fractionation steps. Wild-type His-NPH-II was indistinguishable from native NPH-II with respect to RNA helicase, RNA binding, and nucleic acid-stimulated NTPase activities. The K-191→A (K191A), D296A, and E297A mutant proteins bound RNA as well as wild-type His-NPH-II did, but they were severely defective in NTPase and helicase functions. The H299A mutant was active in RNA binding and NTP hydrolysis but was defective in duplex unwinding. Whereas the NTPase of wild-type NPH-II was stimulated > 10-fold by polynucleotide cofactors, the NTPase of the H299A mutant was nucleic acid independent. Because the specific NTPase activity of the H299A mutant in the absence of nucleic acid was near that of wild-type enzyme in the presence of DNA or RNA and because the K(m) for ATP was unaltered by the H299A substitution, we regard this mutation as a 'gain-of-function' mutation and suggest that the histidine residue in the DExH box is required to couple the NTPase and helicase activities.
Keywords: unclassified drug; nonhuman; animal cell; cell line; acid anhydride hydrolases; cloning, molecular; molecular sequence data; vaccinia virus; base sequence; dna mutational analysis; alanine; sequence homology; enzyme binding; enzyme structure; rna helicase; rna helicases; hydrolysis; histidine; rna, viral; virus protein; dna denaturation; virus mutation; virus enzyme; oligoribonucleotides; rna nucleotidyltransferases; priority journal; article; support, non-u.s. gov't; support, u.s. gov't, p.h.s.; adenosinetriphosphatase; nucleoside triphosphate phosphohydrolase 2
Journal Title: Journal of Virology
Volume: 69
Issue: 8
ISSN: 0022-538X
Publisher: American Society for Microbiology  
Date Published: 1995-08-01
Start Page: 4727
End Page: 4736
Language: English
PUBMED: 7609038
PROVIDER: scopus
PMCID: PMC189280
DOI/URL:
Notes: Article -- Export Date: 28 August 2018 -- Source: Scopus
Citation Impact
MSK Authors
  1. Stewart H Shuman
    546 Shuman
  2. Christian H Gross
    12 Gross