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PMID: 2136709 Published · ppublish English Comparative Study Journal Article

Uukuniemi virus S RNA segment: ambisense coding strategy, packaging of complementary strands into virions, and homology to members of the genus Phlebovirus.

Journal of virology ·Vol. 64 ·No. 1 ·1990-01-00 ·Pages 247-55

Simons JF, Hellman U, Pettersson RF

Abstract

We determined the complete nucleotide sequence of the small (S) RNA segment of Uukuniemi virus, the prototype of the Uukuvirus genus within the Bunyaviridae family. The RNA, which is 1,720 nucleotides long, contains two nonoverlapping open reading frames. The 5' end of one strand (complementary to the viral strand) encodes the nonstructural protein NSs (273 residues; molecular weight, 32,019), whereas the 5' end of the viral-sense strand encodes the nucleocapsid protein N (254 residues; molecular weight, 28,508). Thus, the S RNA uses an ambisense coding strategy previously described for the S segment of two phleboviruses and the arenaviruses. The localization of the N protein within the S RNA sequence was confirmed by amino-terminal sequence analysis of all five possible cyanogen bromide fragments obtained from purified N protein. Northern (RNA) blot analyses with strand-specific probes showed that the N and NSs proteins are translated from subgenomic mRNAs about 800 and 850 nucleotides long, respectively. These mRNAs are apparently transcribed from full-length S RNAs of opposite polarities. The two mRNA species were also detected in virus-infected cells. Interestingly, highly purified virions contained full-length S RNA copies of both polarities at a ratio of about 10:1. In contrast, virions contained exclusively negative-strand copies of the M RNA segment. The possible significance of these results for viral infection is discussed. The amino acid sequence of the N protein showed 35 and 32% homology (identity) with the N protein of Punta Toro and sandfly fever Sicilian viruses, two members of the Phlebovirus genus. The NSs proteins were much less related (about 15% identity). In addition, the extreme 5' and 3' ends of the S RNA, which are complementary to each other, also showed a high degree of conservation with the two phleboviruses. These results indicate that the uukuviruses and phleboviruses are evolutionarily related and suggest that the two genera could be merged into a single genus within the Bunyaviridae family.

MeSH Terms
Amino Acid Sequence Animals Base Sequence Blotting, Northern Bunyaviridae/genetics Capsid/genetics Cell Line Cloning, Molecular Genes, Viral Immunoblotting Molecular Sequence Data Oligonucleotide Probes RNA, Messenger/genetics RNA, Viral/genetics Sequence Homology, Nucleic Acid Viral Core Proteins/genetics Viral Nonstructural Proteins Viral Structural Proteins/genetics Virion/genetics
Chemicals
Oligonucleotide Probes RNA, Messenger RNA, Viral Viral Core Proteins Viral Nonstructural Proteins Viral Structural Proteins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Simons J F
Stockholm Branch, Ludwig Institute for Cancer Research, Sweden.
Hellman U
Pettersson R F
References (27)
27 references, click to expand
  1. A general method applicable to the search for similarities in the amino acid sequence of two proteins.
    J Mol Biol. 1970 Mar;48(3):443-53 PMID: 5420325
  2. The S RNA segment of Sandfly Fever Sicilian virus: evidence for an ambisense genome.
    Virology. 1989 Apr;169(2):341-5 PMID: 2705301
  3. Ribonucleoproteins of Uukuniemi virus are circular.
    J Virol. 1975 Feb;15(2):386-92 PMID: 1167604
  4. Surface structure of Uukuniemi virus.
    J Virol. 1975 Nov;16(5):1296-307 PMID: 52726
  5. Uukuniemi virus contains an RNA polymerase.
    J Virol. 1975 Dec;16(6):1420-5 PMID: 517
  6. Methylmercury as a reversible denaturing agent for agarose gel electrophoresis.
    Anal Biochem. 1976 Jan;70(1):75-85 PMID: 1259158
  7. Circular forms of Uukuniemi virion RNA: an electron microscopic study.
    J Virol. 1977 Mar;21(3):1085-93 PMID: 850304
  8. The genome of Uukuniemi virus consists of three unique RNA segments.
    Cell. 1977 May;11(1):51-63 PMID: 872219
  9. DNA sequencing with chain-terminating inhibitors.
    Proc Natl Acad Sci U S A. 1977 Dec;74(12):5463-7 PMID: 271968
  10. Globin mRNA sequences: analysis of base pairing and evolutionary implications.
    Cold Spring Harb Symp Quant Biol. 1978;42 Pt 2:985-1002 PMID: 277330
  11. A micromethod for complete removal of dodecyl sulfate from proteins by ion-pair extraction.
    Anal Biochem. 1979 Feb;93(1):153-7 PMID: 434458
  12. In vitro translation of Uukuniemi virus-specific RNAs: identification of a nonstructural protein and a precursor to the membrane glycoproteins.
    J Virol. 1981 Jan;37(1):72-79 PMID: 7194383
  13. Bunyaviridae.
    Intervirology. 1980;14(3-4):125-43 PMID: 6165702
  14. Enhanced graphic matrix analysis of nucleic acid and protein sequences.
    Proc Natl Acad Sci U S A. 1981 Dec;78(12):7665-9 PMID: 6801656
  15. A simple method for displaying the hydropathic character of a protein.
    J Mol Biol. 1982 May 5;157(1):105-32 PMID: 7108955
  16. Uukuniemi virus maturation: accumulation of virus particles and viral antigens in the Golgi complex.
    Mol Cell Biol. 1982 Nov;2(11):1444-58 PMID: 6891745
  17. Comparison of the sequences and coding of La Crosse and snowshoe hare bunyavirus S RNA species.
    J Virol. 1983 Mar;45(3):1155-8 PMID: 6834480
  18. A simple and very efficient method for generating cDNA libraries.
    Gene. 1983 Nov;25(2-3):263-9 PMID: 6198242
  19. Uukuniemi virus maturation: immunofluorescence microscopy with monoclonal glycoprotein-specific antibodies.
    J Virol. 1984 Jul;51(1):137-46 PMID: 6374166
  20. Novel coding strategy (ambisense genomic RNA) revealed by sequence analyses of Punta Toro Phlebovirus S RNA.
    Virology. 1984 Jul 30;136(2):293-306 PMID: 6087547
  21. Sequencing studies of pichinde arenavirus S RNA indicate a novel coding strategy, an ambisense viral S RNA.
    J Virol. 1984 Dec;52(3):897-904 PMID: 6492264
  22. Uukuniemi virus glycoproteins accumulate in and cause morphological changes of the Golgi complex in the absence of virus maturation.
    J Virol. 1986 Mar;57(3):899-906 PMID: 3512854
  23. Coding strategy of the S genome segment of Hantaan virus.
    Virology. 1986 Dec;155(2):633-43 PMID: 3024404
  24. Improved free-energy parameters for predictions of RNA duplex stability.
    Proc Natl Acad Sci U S A. 1986 Dec;83(24):9373-7 PMID: 2432595
  25. Complete nucleotide sequence of the M RNA segment of Uukuniemi virus encoding the membrane glycoproteins G1 and G2.
    Virology. 1987 Sep;160(1):191-202 PMID: 3629974
  26. The ends of La Crosse virus genome and antigenome RNAs within nucleocapsids are base paired.
    J Virol. 1989 Jan;63(1):122-8 PMID: 2908922
  27. The ribonucleic acids of Uukuniemi virus, a noncubical tick-borne arbovirus.
    Virology. 1973 Dec;56(2):608-19 PMID: 4796549
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1990-01-00
Pages
247-55
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC249097
Subset
IM
Databases
GENBANK
M33551
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