Home LiteratureArticle Details
PMID: 12388692 Published · ppublish English Journal Article

Role of the alfalfa mosaic virus methyltransferase-like domain in negative-strand RNA synthesis.

Journal of virology ·Vol. 76 ·No. 22 ·2002-11-00 ·Pages 11321-8

Vlot AC, Menard A, Bol JF

Abstract

RNAs 1 and 2 of the tripartite genome of alfalfa mosaic virus (AMV) encode the replicase proteins P1 and P2, respectively. P1 contains a methyltransferase-like domain in its N-terminal half, which has a putative role in capping the viral RNAs. Six residues in this domain that are highly conserved in the methyltransferase domains of alphavirus-like viruses were mutated individually in AMV P1. None of the mutants was infectious to plants. Mutant RNA 1 was coexpressed with wild-type (wt) RNAs 2 and 3 from transferred DNA vectors in Nicotiana benthamiana by agroinfiltration. Mutation of His-100 or Cys-189 in P1 reduced accumulation of negative- and positive-strand RNA in the infiltrated leaves to virtually undetectable levels. Mutation of Asp-154, Arg-157, Cys-182, or Tyr-266 in P1 reduced negative-strand RNA accumulation to levels ranging from 2 to 38% of those for the wt control, whereas positive-strand RNA accumulation by these mutants was 2% or less. The (transiently) expressed replicases of the six mutants were purified from the agroinfiltrated leaves. Polymerase activities of these preparations in vitro ranged from undetectable to wt levels. The data indicate that, in addition to its putative role in RNA capping, the methyltransferase-like domain of P1 has distinct roles in replication-associated functions required for negative-strand RNA synthesis. The defect in negative-strand RNA synthesis of the His-100 and Cys-189 mutants could be complemented in trans by coexpression of wt P1.

MeSH Terms
Agrobacterium tumefaciens/genetics Alfalfa mosaic virus/enzymology,pathogenicity Amino Acid Sequence Genetic Vectors Methyltransferases/chemistry,genetics,metabolism Molecular Sequence Data Mutation Plant Leaves/virology RNA, Viral/metabolism RNA-Dependent RNA Polymerase/chemistry,genetics,metabolism Sequence Analysis, DNA Tobacco/virology
Chemicals
RNA, Viral Methyltransferases RNA-Dependent RNA Polymerase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Vlot A Corina
Gorlaeus Laboratories, Institute of Molecular Plant Sciences, Leiden University, Leiden, The Netherlands.
Menard Aymeric
Bol John F
References (43)
43 references, click to expand
  1. Putative RNA capping activities encoded by brome mosaic virus: methylation and covalent binding of guanylate by replicase protein 1a.
    J Virol. 1999 Dec;73(12):10061-9 PMID: 10559320
  2. Virus-specific capping of tobacco mosaic virus RNA: methylation of GTP prior to formation of covalent complex p126-m7GMP.
    FEBS Lett. 1999 Jul 16;455(1-2):45-8 PMID: 10428469
  3. Functions of the 126- and 183-kDa proteins of tobacco mosaic virus.
    Virology. 2000 May 25;271(1):90-8 PMID: 10814574
  4. A conserved hairpin structure in Alfamovirus and Bromovirus subgenomic promoters is required for efficient RNA synthesis in vitro.
    RNA. 2000 May;6(5):708-16 PMID: 10836792
  5. Identification of a novel function of the alphavirus capping apparatus. RNA 5'-triphosphatase activity of Nsp2.
    J Biol Chem. 2000 Jun 9;275(23):17281-7 PMID: 10748213
  6. Helicase and capping enzyme active site mutations in brome mosaic virus protein 1a cause defects in template recruitment, negative-strand RNA synthesis, and viral RNA capping.
    J Virol. 2000 Oct;74(19):8803-11 PMID: 10982322
  7. Membrane binding mechanism of an RNA virus-capping enzyme.
    J Biol Chem. 2000 Dec 1;275(48):37853-9 PMID: 10984480
  8. Characterization of the AdoMet-dependent guanylyltransferase activity that is associated with the N terminus of bamboo mosaic virus replicase.
    J Virol. 2001 Jan;75(2):782-8 PMID: 11134291
  9. Alfalfa mosaic virus replicase proteins P1 and P2 interact and colocalize at the vacuolar membrane.
    J Virol. 2001 Feb;75(4):1879-87 PMID: 11160687
  10. Brome mosaic virus Protein 1a recruits viral RNA2 to RNA replication through a 5' proximal RNA2 signal.
    J Virol. 2001 Apr;75(7):3207-19 PMID: 11238847
  11. Biogenesis of the Semliki Forest virus RNA replication complex.
    J Virol. 2001 Apr;75(8):3873-84 PMID: 11264376
  12. Virus-specific mRNA capping enzyme encoded by hepatitis E virus.
    J Virol. 2001 Jul;75(14):6249-55 PMID: 11413290
  13. Role of the 3'-untranslated regions of alfalfa mosaic virus RNAs in the formation of a transiently expressed replicase in plants and in the assembly of virions.
    J Virol. 2001 Jul;75(14):6440-9 PMID: 11413311
  14. The helicase-like domain of plant potexvirus replicase participates in formation of RNA 5' cap structure by exhibiting RNA 5'-triphosphatase activity.
    J Virol. 2001 Dec;75(24):12114-20 PMID: 11711602
  15. Identification of sequences in Brome mosaic virus replicase protein 1a that mediate association with endoplasmic reticulum membranes.
    J Virol. 2001 Dec;75(24):12370-81 PMID: 11711627
  16. Translation of a nonpolyadenylated viral RNA is enhanced by binding of viral coat protein or polyadenylation of the RNA.
    Proc Natl Acad Sci U S A. 2001 Dec 4;98(25):14286-91 PMID: 11717411
  17. A positive-strand RNA virus replication complex parallels form and function of retrovirus capsids.
    Mol Cell. 2002 Mar;9(3):505-14 PMID: 11931759
  18. Two related superfamilies of putative helicases involved in replication, recombination, repair and expression of DNA and RNA genomes.
    Nucleic Acids Res. 1989 Jun 26;17(12):4713-30 PMID: 2546125
  19. cis-acting elements involved in replication of alfalfa mosaic virus RNAs in vitro.
    Virology. 1990 Jun;176(2):346-54 PMID: 2345958
  20. Purification and characterization of brome mosaic virus RNA-dependent RNA polymerase.
    Virology. 1990 Sep;178(1):189-94 PMID: 2389551
  21. Sindbis virus nsP1 functions in negative-strand RNA synthesis.
    J Virol. 1991 Feb;65(2):985-8 PMID: 1824787
  22. Replication of an incomplete alfalfa mosaic virus genome in plants transformed with viral replicase genes.
    Virology. 1991 Apr;181(2):445-50 PMID: 2014633
  23. Role of alfalfa mosaic virus coat protein gene in symptom formation.
    Virology. 1991 Apr;181(2):687-93 PMID: 2014643
  24. Conservation of the putative methyltransferase domain: a hallmark of the 'Sindbis-like' supergroup of positive-strand RNA viruses.
    J Gen Virol. 1992 Aug;73 ( Pt 8):2129-34 PMID: 1645151
  25. Identification of the domains required for direct interaction of the helicase-like and polymerase-like RNA replication proteins of brome mosaic virus.
    J Virol. 1992 Dec;66(12):7293-302 PMID: 1433519
  26. Reaction in alphavirus mRNA capping: formation of a covalent complex of nonstructural protein nsP1 with 7-methyl-GMP.
    Proc Natl Acad Sci U S A. 1995 Jan 17;92(2):507-11 PMID: 7831320
  27. Mutagenesis of the Sindbis virus nsP1 protein: effects on methyltransferase activity and viral infectivity.
    Virology. 1996 Mar 15;217(2):527-31 PMID: 8610444
  28. Accumulation of alfalfa mosaic virus RNAs 1 and 2 requires the encoded proteins in cis.
    J Virol. 1996 Aug;70(8):5100-5 PMID: 8764017
  29. Brome mosaic virus helicase- and polymerase-like proteins colocalize on the endoplasmic reticulum at sites of viral RNA synthesis.
    J Virol. 1996 Dec;70(12):8908-16 PMID: 8971020
  30. Critical residues of Semliki Forest virus RNA capping enzyme involved in methyltransferase and guanylyltransferase-like activities.
    J Virol. 1997 Jan;71(1):392-7 PMID: 8985362
  31. Complementation of and interference with Sindbis virus replication by full-length and deleted forms of the nonstructural protein, nsP1, expressed in stable transfectants of Hela cells.
    Virology. 1997 Jan 20;227(2):361-9 PMID: 9018135
  32. Viral and cellular enzymes involved in synthesis of mRNA cap structure.
    Virology. 1997 Sep 15;236(1):1-7 PMID: 9299611
  33. Analysis of the interaction of viral RNA replication proteins by using the yeast two-hybrid assay.
    J Virol. 1997 Oct;71(10):7526-32 PMID: 9311832
  34. Brome mosaic virus RNA replication protein 1a dramatically increases in vivo stability but not translation of viral genomic RNA3.
    Proc Natl Acad Sci U S A. 1998 Mar 3;95(5):2227-32 PMID: 9482867
  35. Interactions between the structural domains of the RNA replication proteins of plant-infecting RNA viruses.
    J Virol. 1998 Sep;72(9):7160-9 PMID: 9696810
  36. Analysis of RNA-dependent RNA polymerase structure and function as guided by known polymerase structures and computer predictions of secondary structure.
    Virology. 1998 Dec 20;252(2):287-303 PMID: 9878607
  37. Cis-acting functions of alfalfa mosaic virus proteins involved in replication and encapsidation of viral RNA.
    Virology. 1999 Feb 15;254(2):324-33 PMID: 9986798
  38. A brome mosaic virus intergenic RNA3 replication signal functions with viral replication protein 1a to dramatically stabilize RNA in vivo.
    J Virol. 1999 Apr;73(4):2622-32 PMID: 10074107
  39. Alfalfa mosaic virus and ilarviruses: involvement of coat protein in multiple steps of the replication cycle.
    J Gen Virol. 1999 May;80 ( Pt 5):1089-102 PMID: 10355754
  40. Semliki Forest virus mRNA capping enzyme requires association with anionic membrane phospholipids for activity.
    EMBO J. 1999 Jun 1;18(11):3164-72 PMID: 10357827
  41. The N-terminal half of the brome mosaic virus 1a protein has RNA capping-associated activities: specificity for GTP and S-adenosylmethionine.
    Virology. 1999 Jun 20;259(1):200-10 PMID: 10364504
  42. Genome activation in alfamo- and ilarviruses.
    Arch Virol. 1999;144(5):843-63 PMID: 10416370
  43. Brome mosaic virus RNA replication proteins 1a and 2a colocalize and 1a independently localizes on the yeast endoplasmic reticulum.
    J Virol. 1999 Dec;73(12):10303-9 PMID: 10559348
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
2002-11-00
Pages
11321-8
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC136773
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com