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PMID: 6270356 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Proteolytic enhancement of rotavirus infectivity: molecular mechanisms.

Journal of virology ·Vol. 39 ·No. 3 ·1981-09-00 ·Pages 879-88

Estes MK, Graham DY, Mason BB

Abstract

The polypeptide compositions of single-shelled and double-shelled simian rotavirus particles were modified by exposure to proteolytic enzymes. Specifically, a major outer capsid polypeptide (VP3) having a molecular weight of 88,000 in double-shelled particles was cleaved by trypsin to yield two polypeptides, VP5* and VP8* (molecular weights, 60,000 and 28,000, respectively). The cleavage of VP3 by enzymes that enhanced infectivity (trypsin, elastase, and pancreatin) yielded different products compared to those detected when VP3 was cleaved by chymotrypsin, which did not enhance infectivity. The appearance of VP5* was correlated with an enhancement of infectivity. Cleavages of the major internal capsid polypeptide VP2 were also observed. The VP2 cleavage products had molecular weights similar to those of known structural and nonstructural rotavirus polypeptides. We confirmed the precursor-product relationships by comparing the peptide maps of the polypeptides generated by digestions with V-8 protease and chymotrypsin. The remaining rotavirus structural polypeptides, including the outer capsid glycoproteins (VP7 and 7a), were not altered by exposure to pancreatic enzymes. Cleavage of VP3 was not required for virus assembly, and specific cleavage of the polypeptides occurred only on assembled particles. We also discuss the role of cleavage activation in other virus-specific biological functions (e.g., hemagglutination and virulence).

MeSH Terms
Animals Capsid/analysis,metabolism Cell Line Chymotrypsin/pharmacology Macaca mulatta Peptide Hydrolases/metabolism Reoviridae/growth & development Rotavirus/growth & development,metabolism Trypsin/metabolism,pharmacology Viral Proteins/metabolism Virus Activation/drug effects
Chemicals
Viral Proteins Peptide Hydrolases Chymotrypsin Trypsin
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Estes M K
Graham D Y
Mason B B
References (23)
23 references, click to expand
  1. Biochemical and biophysical characteristics of diarrhea viruses of human and calf origin.
    J Virol. 1975 Nov;16(5):1229-35 PMID: 171450
  2. Characterisation of a rotavirus.20b.
    Nature. 1975 Dec 18;258(5536):631-3 PMID: 173999
  3. Characterization of two particle types of calf rotavirus.
    J Gen Virol. 1976 May;31(2):245-50 PMID: 180243
  4. Peptide mapping by limited proteolysis in sodium dodecyl sulfate and analysis by gel electrophoresis.
    J Biol Chem. 1977 Feb 10;252(3):1102-6 PMID: 320200
  5. Biochemical studies on a reovirus-like agent (rotovirus) from lambs.
    J Virol. 1977 Mar;21(3):1215-8 PMID: 850308
  6. Biochemical characterization of infantile gastroenteritis virus (IGV).
    J Gen Virol. 1977 Mar;34(3):485-97 PMID: 404393
  7. Further biochemical characterization, including the detection of surface glycoproteins, of human, calf, and simian rotaviruses.
    J Virol. 1977 Oct;24(1):91-8 PMID: 198589
  8. Cell culture propagation of porcine rotavirus (reovirus-like agent).
    Am J Vet Res. 1977 Nov;38(11):1765-8 PMID: 201198
  9. Rotavirus isolation and cultivation in the presence of trypsin.
    J Clin Microbiol. 1977 Dec;6(6):610-7 PMID: 201663
  10. The effect of trypsin on the growth of rotavirus.
    J Gen Virol. 1978 Jul;40(1):213-8 PMID: 211180
  11. Production of high-titer bovine rotavirus with trypsin.
    J Clin Microbiol. 1979 Mar;9(3):413-7 PMID: 222801
  12. Polypeptides of bovine rotavirus.
    J Gen Virol. 1979 May;43(2):309-16 PMID: 225424
  13. Polypeptides of simian rotavirus (SA-11) determined by a continuous polyacrylamide gel electrophoresis method.
    J Gen Virol. 1979 May;43(2):463-6 PMID: 225429
  14. Effect of enzymes on rotavirus infectivity.
    J Clin Microbiol. 1979 Jul;10(1):111-3 PMID: 227917
  15. Rotavirus polypeptides.
    J Gen Virol. 1979 Jul;44(1):187-97 PMID: 227989
  16. Activation of rotavirus RNA polymerase by calcium chelation.
    Arch Virol. 1979;60(3-4):177-86 PMID: 41504
  17. Proteolytic enhancement of rotavirus infectivity: biology mechanism.
    Virology. 1980 Mar;101(2):432-9 PMID: 6244698
  18. In vitro transcription and translation of simian rotavirus SA11 gene products.
    J Virol. 1980 Mar;33(3):1111-21 PMID: 6245262
  19. Coding assignments of double-stranded RNA segments of SA 11 rotavirus established by in vitro translation.
    J Virol. 1980 Mar;33(3):976-82 PMID: 6245278
  20. The role of viral glycoproteins in adsorption, penetration, and pathogenicity of viruses.
    Rev Infect Dis. 1980 Jan-Feb;2(1):40-61 PMID: 6994202
  21. Structural polypeptides of simian rotavirus SA11 and the effect of trypsin.
    J Virol. 1981 Jan;37(1):156-60 PMID: 6260970
  22. Rescue of noncultivatable human rotavirus by gene reassortment during mixed infection with ts mutants of a cultivatable bovine rotavirus.
    Proc Natl Acad Sci U S A. 1981 Jan;78(1):420-4 PMID: 6264442
  23. The interaction of a series of hybridoma IgGs with reovirus particles. Demonstration that the core protein lambda 2 is exposed on the particle surface.
    Virology. 1981 Jan 15;108(1):147-55 PMID: 7269234
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1981-09-00
Pages
879-88
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC171321
Subset
IM
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