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PMID: 6284973 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Synthesis of vesicular stomatitis virus negative-strand RNA in vitro: dependence on viral protein synthesis.

Journal of virology ·Vol. 41 ·No. 3 ·1982-03-00 ·Pages 821-32

Davis NL, Wertz GW

Abstract

An in vitro system is described which supports the synthesis of vesicular stomatitis virus (VSV) negative-strand RNA. The major components of this system are (i) an mRNA-dependent rabbit reticulocyte lysate to carry out cell-free protein synthesis, (ii) the five VSV mRNAs to program VSV-specific protein synthesis, and (iii) nucleocapsids containing positive- and negative-strand genome-length RNA. The protein products synthesized in the system in response to addition of saturating amounts of the five VSV mRNA's included polypeptides which comigrated in acrylamide gels with the five VSV proteins. Approximately 200 pmol of protein per ml was synthesized during a 90-min reaction. The RNA products synthesized in the system included all five of the VSV mRNA's and, in addition, negative-strand, genome-sense RNA. All of the negative-strand RNA, which represented 2 to 5% of the total RNA product synthesized in vitro, banded in CsCl at the position of nucleocapsids. All of the mature mRNA's made in the system pelleted in CsCl. This technique allowed a clear separation of negative-strand product from the mRNA products and facilitated further analysis of the negative-strand product. The amount of negative-strand product produced in the system was shown to be a function of the amount of concurrent protein synthesis in the system. An increase in the level of protein synthesis led to an increase in the amount of negative-strand RNA synthesized, whereas inhibition of protein synthesis by cycloheximide resulted in a 70% inhibition of negative-strand synthesis. In contrast to the negative-strand RNA product, the amount of transcriptive product was decreased by 50% in the presence of maximum levels of viral protein synthesis. This inhibition was reversed by adding cycloheximide. Characterization of the negative-strand product by Northern blot analysis demonstrated that negative-strand product was being synthesized which hybridized to all five of the VSV mRNA's and, hence, that product representing all of the VSV cistrons was being made. This in vitro system offers an opportunity to study factors involved in the promotion of VSV genome replication as well as those responsible for the regulation of transcription.

MeSH Terms
Cell-Free System Centrifugation, Density Gradient Cycloheximide/pharmacology Nucleic Acid Hybridization RNA, Messenger/metabolism RNA, Viral/biosynthesis Transcription, Genetic Vesicular stomatitis Indiana virus/metabolism Viral Proteins/biosynthesis Virus Replication/drug effects
Chemicals
RNA, Messenger RNA, Viral Viral Proteins Cycloheximide
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Davis N L
Wertz G W
References (22)
22 references, click to expand
  1. Both NS and L proteins are required for in vitro RNA synthesis by vesicular stomatitis virus.
    J Virol. 1975 Jun;15(6):1348-56 PMID: 167189
  2. Ribonucleic acid synthesis of vesicular stomatitis virus. IV. Transcription by standard virus in the presence of defective interfering particles.
    J Virol. 1972 Jun;9(6):909-16 PMID: 4338638
  3. Characterization and mapping of RNase III cleavage sites in VSV genome RNA.
    Nucleic Acids Res. 1981 Dec 11;9(23):6487-503 PMID: 6275365
  4. Characterization of vesicular stomatitis virus nucleocapsids. I. Complementary 40 S RNA molecules in nucleocapsids.
    Virology. 1974 Sep;61(1):270-80 PMID: 4369854
  5. Nucleotide sequences of the mRNA's encoding the vesicular stomatitis virus G and M proteins determined from cDNA clones containing the complete coding regions.
    J Virol. 1981 Aug;39(2):519-28 PMID: 6268840
  6. Translation of encephalomyocarditis virus RNA in reticulocyte lysates: kinetic analysis of the formation of virion proteins and a protein required for processing.
    J Virol. 1979 May;30(2):472-80 PMID: 224211
  7. Full-length viral RNA synthesized in vitro by vesicular stomatitis virus-infected HeLa cell extracts.
    Virology. 1979 Jul 15;96(1):88-99 PMID: 223312
  8. Coupled transcription and translation in mammalian and avian cell-free systems.
    Virology. 1978 Feb;84(2):479-95 PMID: 203097
  9. An efficient mRNA-dependent translation system from reticulocyte lysates.
    Eur J Biochem. 1976 AUG 1;67(1):247-56 PMID: 823012
  10. Dissociation and reconstitution of the transcriptase and template activities of vesicular stomatitis B and T virions.
    J Virol. 1972 Aug;10(2):297-309 PMID: 4342247
  11. Maturation of the head of bacteriophage T4. I. DNA packaging events.
    J Mol Biol. 1973 Nov 15;80(4):575-99 PMID: 4204102
  12. RNase III cleaves vesicular stomatitis virus genome-length RNAs but fails to cleave viral mRNA's.
    J Virol. 1979 Apr;30(1):108-15 PMID: 225509
  13. Ribonucleic acid synthesis of vesicular stomatitis virus. I. Species of ribonucleic acid found in Chinese hamster ovary cells infected with plaque-forming and defective particles.
    J Virol. 1969 Aug;4(2):154-61 PMID: 4308915
  14. A solubilizable acrylamide gel for electrophoresis.
    FEBS Lett. 1970 Apr 16;7(3):293 PMID: 11947496
  15. Method for detection of specific RNAs in agarose gels by transfer to diazobenzyloxymethyl-paper and hybridization with DNA probes.
    Proc Natl Acad Sci U S A. 1977 Dec;74(12):5350-4 PMID: 414220
  16. Rebinding of transcriptase components (L and NS proteins) to the nucleocapsid template of vesicular stomatitis virus.
    J Virol. 1978 Sep;27(3):560-7 PMID: 212581
  17. Studies on the in vitro transcription and translation of vesicular stomatitis virus mRNA.
    Virology. 1976 Aug;73(1):106-18 PMID: 183350
  18. Isolation of possible replicative intermediate structures from vesicular stomatitis virus-infected cells.
    Virology. 1978 Mar;85(1):271-85 PMID: 206007
  19. Function and structure of RNA polymerase from vesicular stomatitis virus.
    J Biol Chem. 1976 Jul 25;251(14):4307-14 PMID: 180023
  20. RNA synthesis by vesicular stomatitis virus and a small plaque mutant: effects of cycloheximide.
    J Virol. 1973 Aug;12(2):253-64 PMID: 4355930
  21. A unique RNA species involved in initiation of vesicular stomatitis virus RNA transcription in vitro.
    Cell. 1976 Jun;8(2):197-204 PMID: 183891
  22. Translation and identification of the viral mRNA species isolated from subcellular fractions of vesicular stomatitis virus-infected cells.
    J Virol. 1975 Apr;15(4):1012-9 PMID: 163912
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1982-03-00
Pages
821-32
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC256819
Subset
IM
Grants
NIAID NIH HHS · AI-12464 · United States
NIAID NIH HHS · AI15134 · United States
NCI NIH HHS · CA 19014 · United States
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