Home LiteratureArticle Details
PMID: 11836387 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Strong CD8 T-cell responses following coimmunization with plasmids expressing the dominant pp89 and subdominant M84 antigens of murine cytomegalovirus correlate with long-term protection against subsequent viral challenge.

Journal of virology ·Vol. 76 ·No. 5 ·2002-03-00 ·Pages 2100-12

Ye M, Morello CS, Spector DH

Abstract

We previously showed that intradermal immunization with plasmids expressing the murine cytomegalovirus (MCMV) protein IE1-pp89 or M84 protects against viral challenge and that coimmunization has a synergistic protective effect (C. S. Morello, L. D. Cranmer, and D. H. Spector, J. Virol. 74:3696-3708, 2000). Using an intracellular gamma interferon cytokine staining assay, we have now characterized the CD8+ T-cell response after DNA immunization with pp89, M84, or pp89 plus M84. The pp89- and M84-specific CD8+ T-cell responses peaked rapidly after three immunizations. DNA immunization and MCMV infection generated similar levels of pp89-specific CD8+ T cells. In contrast, a significantly higher level of M84-specific CD8+ T cells was elicited by DNA immunization than by MCMV infection. Fusion of ubiquitin to pp89 enhanced the CD8+ T-cell response only under conditions where vaccination was suboptimal. Three immunizations with either pp89, M84, or pp89 plus M84 DNA also provided significant protection against MCMV infection for at least 6 months, with the best protection produced by coimmunization. A substantial percentage of antigen-specific CD8+ T cells remained detectable, and they responded rapidly to the MCMV challenge. These results underscore the importance of considering antigens that do not appear to be highly immunogenic during infection as DNA vaccine candidates.

MeSH Terms
3T3 Cells Animals Antigens, Viral/genetics,immunology CD8-Positive T-Lymphocytes/immunology Cytomegalovirus Vaccines/administration & dosage,immunology DNA, Viral/immunology Female Herpesviridae Infections/prevention & control,virology Immediate-Early Proteins/genetics,immunology Immunization Immunologic Memory Mice Mice, Inbred BALB C Muromegalovirus/genetics,immunology Phosphoproteins/genetics,immunology Plasmids/genetics,immunology Ubiquitin/genetics,immunology,metabolism Viral Matrix Proteins/genetics,immunology
Chemicals
Antigens, Viral Cytomegalovirus Vaccines DNA, Viral Immediate-Early Proteins M83 protein, murine cytomegalovirus Phosphoproteins Ubiquitin Viral Matrix Proteins cytomegalovirus immediate early phosphoprotein pp89
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Ye Ming
Molecular Biology Section, Division of Biology, University of California San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0366, USA.
Morello Christopher S
Spector Deborah H
References (33)
33 references, click to expand
  1. Reconstitution of CD8 T cells is essential for the prevention of multiple-organ cytomegalovirus histopathology after bone marrow transplantation.
    J Gen Virol. 1998 Sep;79 ( Pt 9):2099-104 PMID: 9747717
  2. Control of murine cytomegalovirus in the lungs: relative but not absolute immunodominance of the immediate-early 1 nonapeptide during the antiviral cytolytic T-lymphocyte response in pulmonary infiltrates.
    J Virol. 1998 Sep;72(9):7201-12 PMID: 9696814
  3. In vivo replication, latency, and immunogenicity of murine cytomegalovirus mutants with deletions in the M83 and M84 genes, the putative homologs of human cytomegalovirus pp65 (UL83).
    J Virol. 1999 Sep;73(9):7678-93 PMID: 10438858
  4. Rapid on/off cycling of cytokine production by virus-specific CD8+ T cells.
    Nature. 1999 Sep 2;401(6748):76-9 PMID: 10485708
  5. The putative natural killer decoy early gene m04 (gp34) of murine cytomegalovirus encodes an antigenic peptide recognized by protective antiviral CD8 T cells.
    J Virol. 2000 Feb;74(4):1871-84 PMID: 10644360
  6. Immune responses following neonatal DNA vaccination are long-lived, abundant, and qualitatively similar to those induced by conventional immunization.
    J Virol. 2000 Mar;74(6):2620-7 PMID: 10684276
  7. Suppression of murine cytomegalovirus (MCMV) replication with a DNA vaccine encoding MCMV M84 (a homolog of human cytomegalovirus pp65).
    J Virol. 2000 Apr;74(8):3696-708 PMID: 10729145
  8. Intracellular staining for TNF and IFN-gamma detects different frequencies of antigen-specific CD8(+) T cells.
    J Immunol Methods. 2000 Apr 21;238(1-2):107-17 PMID: 10758241
  9. DNA vaccination against tuberculosis: expression of a ubiquitin-conjugated tuberculosis protein enhances antimycobacterial immunity.
    Infect Immun. 2000 Jun;68(6):3097-102 PMID: 10816449
  10. DNA vaccines: immunology, application, and optimization*.
    Annu Rev Immunol. 2000;18:927-74 PMID: 10837079
  11. Direct ex vivo kinetic and phenotypic analyses of CD8(+) T-cell responses induced by DNA immunization.
    J Virol. 2000 Sep;74(18):8286-91 PMID: 10954526
  12. Identification of a K(d)-restricted antigenic peptide encoded by murine cytomegalovirus early gene M84.
    J Gen Virol. 2000 Dec;81(Pt 12):3037-42 PMID: 11086134
  13. Experimental preemptive immunotherapy of murine cytomegalovirus disease with CD8 T-cell lines specific for ppM83 and pM84, the two homologs of human cytomegalovirus tegument protein ppUL83 (pp65).
    J Virol. 2001 Jul;75(14):6584-600 PMID: 11413326
  14. Two overlapping subdominant epitopes identified by DNA immunization induce protective CD8(+) T-cell populations with differing cytolytic activities.
    J Virol. 2001 Aug;75(16):7399-409 PMID: 11462012
  15. Murine monoclonal antibody to a single protein neutralizes the infectivity of human cytomegalovirus.
    Proc Natl Acad Sci U S A. 1984 Feb;81(3):876-80 PMID: 6199788
  16. Significance of herpesvirus immediate early gene expression in cellular immunity to cytomegalovirus infection.
    Nature. 1984 Nov 22-28;312(5992):369-71 PMID: 6095095
  17. A nonstructural viral protein expressed by a recombinant vaccinia virus protects against lethal cytomegalovirus infection.
    J Virol. 1988 May;62(5):1653-8 PMID: 2833615
  18. A pentapeptide as minimal antigenic determinant for MHC class I-restricted T lymphocytes.
    Nature. 1989 Feb 16;337(6208):651-3 PMID: 2465495
  19. Site-restricted persistent cytomegalovirus infection after selective long-term depletion of CD4+ T lymphocytes.
    J Exp Med. 1989 Apr 1;169(4):1199-212 PMID: 2564415
  20. Cell surface expression of human cytomegalovirus (HCMV) gp55-116 (gB): use of HCMV-recombinant vaccinia virus-infected cells in analysis of the human neutralizing antibody response.
    J Virol. 1990 Mar;64(3):1079-85 PMID: 2154594
  21. Efficacious control of cytomegalovirus infection after long-term depletion of CD8+ T lymphocytes.
    J Virol. 1990 Nov;64(11):5457-64 PMID: 1976821
  22. Protection against lethal cytomegalovirus infection by a recombinant vaccine containing a single nonameric T-cell epitope.
    J Virol. 1991 Jul;65(7):3641-6 PMID: 1710286
  23. Antibodies to recombinant-derived glycoprotein B after natural human cytomegalovirus infection correlate with neutralizing activity.
    J Infect Dis. 1992 Feb;165(2):381-4 PMID: 1309850
  24. The outcome of congenital cytomegalovirus infection in relation to maternal antibody status.
    N Engl J Med. 1992 Mar 5;326(10):663-7 PMID: 1310525
  25. DNA immunization confers protection against murine cytomegalovirus infection.
    J Virol. 1996 Nov;70(11):7921-8 PMID: 8892915
  26. Identification, analysis, and evolutionary relationships of the putative murine cytomegalovirus homologs of the human cytomegalovirus UL82 (pp71) and UL83 (pp65) matrix phosphoproteins.
    J Virol. 1996 Nov;70(11):7929-39 PMID: 8892916
  27. A mouse cytomegalovirus glycoprotein, gp34, forms a complex with folded class I MHC molecules in the ER which is not retained but is transported to the cell surface.
    EMBO J. 1997 Feb 17;16(4):685-94 PMID: 9049298
  28. Protective cellular immunity: cytotoxic T-lymphocyte responses against dominant and recessive epitopes of influenza virus nucleoprotein induced by DNA immunization.
    J Virol. 1997 Apr;71(4):2715-21 PMID: 9060624
  29. DNA immunization: ubiquitination of a viral protein enhances cytotoxic T-lymphocyte induction and antiviral protection but abrogates antibody induction.
    J Virol. 1997 Nov;71(11):8497-503 PMID: 9343207
  30. Preemptive CD8 T-cell immunotherapy of acute cytomegalovirus infection prevents lethal disease, limits the burden of latent viral genomes, and reduces the risk of virus recurrence.
    J Virol. 1998 Mar;72(3):1797-804 PMID: 9499030
  31. Counting antigen-specific CD8 T cells: a reevaluation of bystander activation during viral infection.
    Immunity. 1998 Feb;8(2):177-87 PMID: 9491999
  32. DNA immunization with minigenes: low frequency of memory cytotoxic T lymphocytes and inefficient antiviral protection are rectified by ubiquitination.
    J Virol. 1998 Jun;72(6):5174-81 PMID: 9573289
  33. Induction of MHC class I-restricted CTL response by DNA immunization with ubiquitin-influenza virus nucleoprotein fusion antigens.
    Vaccine. 1998 Nov;16(18):1711-7 PMID: 9778746
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
2002-03-00
Pages
2100-12
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC153826
Subset
IM
Grants
NIAID NIH HHS · T32 AI007036 · United States
NIAID NIH HHS · T32 AI 07036 · United States
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