Previous Article | Next Article 
J Virol, June 1998, p. 4729-4736, Vol. 72, No. 6
0022-538X/98/$04.00+0
Copyright © 1998, American Society for Microbiology. All rights reserved.
The Nucleoside Triphosphatase and Helicase
Activities of Vaccinia Virus NPH-II Are Essential for Virus
Replication
Christian H.
Gross and
Stewart
Shuman*
Molecular Biology Program, Sloan-Kettering
Institute, New York, New York 10021
Received 19 December 1997/Accepted 16 February 1998
Vaccinia virus NPH-II is the prototypal RNA helicase of the DExH
box protein family, which is defined by six shared sequence motifs. The
contributions of conserved amino acids in motifs I (TGVGKTSQ), Ia
(PRI), II (DExHE), and III (TAT) to enzyme activity were assessed by
alanine scanning. NPH-II-Ala proteins were expressed in
baculovirus-infected Sf9 cells, purified, and characterized with
respect to their RNA helicase, nucleic acid-dependent ATPase, and RNA
binding functions. Alanine substitutions at Lys-191 and Thr-192 (motif
I), Arg-229 (motif Ia), and Glu-300 (motif II) caused severe defects in
RNA unwinding that correlated with reduced rates of ATP hydrolysis. In
contrast, alanine mutations at His-299 (motif II) and at Thr-326 and
Thr-328 (motif III) elicited defects in RNA unwinding but spared the
ATPase. None of the mutations analyzed affected the binding of NPH-II
to RNA. These findings, together with previous mutational studies,
indicate that NPH-II motifs I, Ia, II, and VI (QRxGRxGRxxxG) are
essential for nucleoside triphosphate (NTP) hydrolysis, whereas motif
III and the His moiety of the DExH-box serve to couple the NTPase and
helicase activities. Wild-type and mutant NPH-II-Ala genes were tested
for the ability to rescue temperature-sensitive nph2-ts
viruses. NPH-II mutations that inactivated the phosphohydrolase in
vitro were lethal in vivo, as judged by the failure to recover rescued
viruses containing the Ala substitution. The NTPase activity was
necessary, but not sufficient, to sustain virus replication, insofar as
mutants for which NTPase was uncoupled from unwinding (H299A, T326A,
and T328A) were also lethal. We conclude that the phosphohydrolase and
helicase activities of NPH-II are essential for virus replication.
*
Corresponding author. Mailing address: Molecular
Biology Program, Sloan-Kettering Institute, 1275 York Ave., New York,
NY 10021. Phone: (212) 639-7145. Fax: (212) 717-3623. E-mail:
s-shuman{at}ski.mskcc.org.
J Virol, June 1998, p. 4729-4736, Vol. 72, No. 6
0022-538X/98/$04.00+0
Copyright © 1998, American Society for Microbiology. All rights reserved.
This article has been cited by other articles:
-
Jeang, K.-T., Yedavalli, V.
(2006). Role of RNA helicases in HIV-1 replication. Nucleic Acids Res
34: 4198-4205
[Abstract]
[Full Text]
-
Uhlmann-Schiffler, H., Jalal, C., Stahl, H.
(2006). Ddx42p--a human DEAD box protein with RNA chaperone activities. Nucleic Acids Res
34: 10-22
[Abstract]
[Full Text]
-
Rocak, S., Emery, B., Tanner, N. K., Linder, P.
(2005). Characterization of the ATPase and unwinding activities of the yeast DEAD-box protein Has1p and the analysis of the roles of the conserved motifs. Nucleic Acids Res
33: 999-1009
[Abstract]
[Full Text]
-
Kawaoka, J., Pyle, A. M.
(2005). Choosing between DNA and RNA: the polymer specificity of RNA helicase NPH-II. Nucleic Acids Res
33: 644-649
[Abstract]
[Full Text]
-
Schneider, S., Campodonico, E., Schwer, B.
(2004). Motifs IV and V in the DEAH Box Splicing Factor Prp22 Are Important for RNA Unwinding, and Helicase-defective Prp22 Mutants Are Suppressed by Prp8. J. Biol. Chem.
279: 8617-8626
[Abstract]
[Full Text]
-
Marintcheva, B., Weller, S. K.
(2003). Helicase Motif Ia Is Involved in Single-Strand DNA-Binding and Helicase Activities of the Herpes Simplex Virus Type 1 Origin-Binding Protein, UL9. J. Virol.
77: 2477-2488
[Abstract]
[Full Text]
-
Uhlmann-Schiffler, H., Seinsoth, S., Stahl, H.
(2002). Preformed hexamers of SV40 T antigen are active in RNA and origin-DNA unwinding. Nucleic Acids Res
30: 3192-3201
[Abstract]
[Full Text]
-
Martin, A., Schneider, S., Schwer, B.
(2002). Prp43 Is an Essential RNA-dependent ATPase Required for Release of Lariat-Intron from the Spliceosome. J. Biol. Chem.
277: 17743-17750
[Abstract]
[Full Text]
-
Schneider, S., Hotz, H.-R., Schwer, B.
(2002). Characterization of Dominant-negative Mutants of the DEAH-box Splicing Factors Prp22 and Prp16. J. Biol. Chem.
277: 15452-15458
[Abstract]
[Full Text]
-
Li, Y.-I., Shih, T.-W., Hsu, Y.-H., Han, Y.-T., Huang, Y.-L., Meng, M.
(2001). The Helicase-Like Domain of Plant Potexvirus Replicase Participates in Formation of RNA 5' Cap Structure by Exhibiting RNA 5'-Triphosphatase Activity. J. Virol.
75: 12114-12120
[Abstract]
[Full Text]
-
Daugeron, M.-C., Linder, P.
(2001). Characterization and mutational analysis of yeast Dbp8p, a putative RNA helicase involved in ribosome biogenesis. Nucleic Acids Res
29: 1144-1155
[Abstract]
[Full Text]
-
Askjaer, P., Rosendahl, R., Kjems, J.
(2000). Nuclear Export of the DEAD Box An3 Protein by CRM1 Is Coupled to An3 Helicase Activity. J. Biol. Chem.
275: 11561-11568
[Abstract]
[Full Text]
-
Endoh, H., Maruyama, K., Masuhiro, Y., Kobayashi, Y., Goto, M., Tai, H., Yanagisawa, J., Metzger, D., Hashimoto, S., Kato, S.
(1999). Purification and Identification of p68 RNA Helicase Acting as a Transcriptional Coactivator Specific for the Activation Function 1 of Human Estrogen Receptor alpha. Mol. Cell. Biol.
19: 5363-5372
[Abstract]
[Full Text]
-
Martins, A., Gross, C. H., Shuman, S.
(1999). Mutational Analysis of Vaccinia Virus Nucleoside Triphosphate Phosphohydrolase I, a DNA-Dependent ATPase of the DExH Box Family. J. Virol.
73: 1302-1308
[Abstract]
[Full Text]
-
Schneider, S., Schwer, B.
(2001). Functional Domains of the Yeast Splicing Factor Prp22p. J. Biol. Chem.
276: 21184-21191
[Abstract]
[Full Text]