West nile virus 5′-cap structure is formed by sequential guanine N-7 and ribose 2′-O methylations by nonstructural protein 5

被引:293
作者
Ray, Debashish
Shah, Aaloki
Tilgner, Mark
Guo, Yi
Zhao, Yiwei
Dong, Hongping
Deas, Tia S.
Zhou, Yangsheng
Li, Hongmin
Shi, Pei-Yong [1 ]
机构
[1] New York State Dept Hlth, Wadsworth Ctr, Albany, NY 12201 USA
[2] SUNY Albany, Dept Biomed Sci, Albany, NY 12201 USA
关键词
D O I
10.1128/JVI.00814-06
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Many flaviviruses are globally important human pathogens. Their plus-strand RNA genome contains a 5'-cap structure that is methylated at the guanine N-7 and the ribose 2'-OH positions of the first transcribed nucleotide, adenine (m(7) GpppAm). Using West Nile virus (WNV), we demonstrate, for the first time, that the nonstructural protein 5 (NS5) mediates both guanine N-7 and ribose 2'-O methylations and therefore is essential for flavivirus 5'-cap formation. We show that a recombinant full-length and a truncated NS5 protein containing the methyltransferase (MTase) domain methylates GpppA-capped and m(7)GpppA-capped RNAs to m(7)GpppAm-RNA, using S-adenosylmethionine as a methyl donor. Furthermore, methylation of GpppA-capped RNA sequentially yielded m(7)GpppA-and m(7)GpppAm-RNA products, indicating that guanine N-7 precedes ribose 2'-O methylation. Mutagenesis of a K-61-D-146-K-182-E-218 tetrad conserved in other cellular and viral MTases suggests that NS5 requires distinct amino acids for its N-7 and 2'-O MTase activities. The entire K-61-D-146-K-182-E-218 motif is essential for 2'-O MTase activity, whereas N-7 MTase activity requires only D-146. The other three amino acids facilitate, but are not essential for, guanine N-7 methylation. Amino acid substitutions within the K-61-D-146-K-182-E-218 motif in a WNV luciferase-reporting replicon significantly reduced or abolished viral replication in cells. Additionally, the mutant MTase-mediated replication defect could not be trans complemented by a wild-type replicase complex. These findings demonstrate a critical role for the flavivirus MTase in viral reproduction and underscore this domain as a potential target for antiviral therapy.
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页码:8362 / 8370
页数:9
相关论文
共 38 条
[31]   Cleavage targets and the D-arginine-based inhibitors of the West Nile virus NS3 processing proteinase [J].
Shiryaev, SA ;
Ratnikov, BI ;
Chekanov, AV ;
Sikora, S ;
Rozanov, DV ;
Godzik, A ;
Wang, J ;
Smith, JW ;
Huang, ZW ;
Lindberg, I ;
Samuel, MA ;
Diamond, MS ;
Strongin, AY .
BIOCHEMICAL JOURNAL, 2006, 393 :503-511
[32]  
Shuman S, 2001, PROG NUCLEIC ACID RE, V66, P1
[33]   The flavivirus-conserved penta-nucleotide in the 3′ stem-loop of the West Nile virus genome requires a specific sequence and structure for RNA synthesis, but not for viral translation [J].
Tilgner, M ;
Deas, TS ;
Shi, PY .
VIROLOGY, 2005, 331 (02) :375-386
[34]   Structure and function of the 3′ terminal six nucleotides of the West Nile virus genome in viral replication [J].
Tilgner, M ;
Shi, PY .
JOURNAL OF VIROLOGY, 2004, 78 (15) :8159-8171
[35]   THE CARBOXY-TERMINAL PART OF THE NS-3-PROTEIN OF THE WEST NILE FLAVIVIRUS CAN BE ISOLATED AS A SOLUBLE-PROTEIN AFTER PROTEOLYTIC CLEAVAGE AND REPRESENTS AN RNA-STIMULATED NTPASE [J].
WENGLER, G ;
WENGLER, G .
VIROLOGY, 1991, 184 (02) :707-715
[36]   TERMINAL SEQUENCES OF THE GENOME AND REPLICATIVE-FORM RNA OF THE FLAVIVIRUS WEST NILE VIRUS - ABSENCE OF POLY(A) AND POSSIBLE ROLE IN RNA REPLICATION [J].
WENGLER, G ;
WENGLER, G .
VIROLOGY, 1981, 113 (02) :544-555
[37]   Autographa californica nucleopolyhedrovirus orf69 encodes an RNA cap (nucleoside-2′-O)-Methyltransferase [J].
Wu, XF ;
Guarino, LA .
JOURNAL OF VIROLOGY, 2003, 77 (06) :3430-3440
[38]   Structure of the neurospora SET domain protein DIM-5, a histone H3 lysine methyltransferase [J].
Zhang, X ;
Tamaru, H ;
Khan, SI ;
Horton, JR ;
Keefe, LJ ;
Selker, EU ;
Cheng, XD .
CELL, 2002, 111 (01) :117-127