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PMID: 10077622 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Functional differences between memory and naive CD8 T cells.

Cho BK, Wang C, Sugawa S, Eisen HN, Chen J

Abstract

To determine how murine memory and naive T cells differ, we generated large numbers of long-lived memory CD8(+) T cells and compared them to naive cells expressing the same antigen-specific receptor (T cell receptor; TCR). Although both populations expressed similar levels of TCR and CD8, on antigen stimulation in vitro memory T cells down-regulated their TCR faster and more extensively and secreted IFN-gamma and IL-2 faster than naive T cells. Memory cells were also larger, and when freshly isolated from mice they contained perforin and killed target cells without having to be restimulated. They further differed from naive cells in requiring IL-15 for proliferation and in having a greater tendency to undergo apoptosis in vitro. On antigen stimulation in vivo, however, they proliferated more rapidly than naive cells. These findings suggest that, unlike naive T cells, CD8 memory T cells are intrinsically programmed to rapidly express their effector functions in vivo without having to undergo clonal expansion and differentiation.

MeSH Terms
Animals CD8 Antigens CD8-Positive T-Lymphocytes/immunology Cell Differentiation/immunology Cell Division/immunology Immunologic Memory Immunophenotyping Lymphocyte Activation Mice Receptors, Antigen, T-Cell/immunology
Chemicals
CD8 Antigens Receptors, Antigen, T-Cell
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Cho B K
Center for Cancer Research and Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Wang C
Sugawa S
Eisen H N
Chen J
References (36)
36 references, click to expand
  1. The immune response to a simple antigenic determinant.
    Harvey Lect. 1966;60:1-34 PMID: 5338066
  2. Qualitative differences between naive and memory T cells make a major contribution to the more rapid and efficient memory CD8+ T cell response.
    J Immunol. 1998 Jul 15;161(2):674-83 PMID: 9670942
  3. Variability in the lambda light chain sequences of mouse antibody.
    Nature. 1970 Dec 12;228(5276):1045-7 PMID: 5483159
  4. Immunoprecipitation of cell surface structures of cloned cytotoxic T lymphocytes by clone-specific antisera.
    Proc Natl Acad Sci U S A. 1984 Jan;81(2):573-7 PMID: 6607474
  5. Somatic mutation and the maturation of immune response to 2-phenyl oxazolone.
    Nature. 1984 Nov 15-21;312(5991):271-5 PMID: 6504141
  6. Selective expression of an antigen receptor on CD8-bearing T lymphocytes in transgenic mice.
    Nature. 1988 Sep 15;335(6187):271-4 PMID: 3261843
  7. Stable expression and somatic hypermutation of antibody V regions in B-cell developmental pathways.
    Annu Rev Immunol. 1989;7:537-59 PMID: 2653375
  8. Perforin, a pore-forming protein detectable by monoclonal antibodies, is a functional marker for killer cells.
    Int Immunol. 1990;2(7):677-84 PMID: 2278998
  9. Turnover of naive- and memory-phenotype T cells.
    J Exp Med. 1994 Apr 1;179(4):1127-35 PMID: 8145034
  10. Cytotoxic T-cell memory without antigen.
    Nature. 1994 Jun 23;369(6482):648-52 PMID: 7516038
  11. Virus-specific CD8+ T-cell memory determined by clonal burst size.
    Nature. 1994 Jun 23;369(6482):652-4 PMID: 7516039
  12. Lymphocyte life-span and memory.
    Science. 1994 Sep 2;265(5177):1395-400 PMID: 8073282
  13. High-affinity reactions between antigen-specific T-cell receptors and peptides associated with allogeneic and syngeneic major histocompatibility complex class I proteins.
    Proc Natl Acad Sci U S A. 1994 Nov 22;91(24):11487-91 PMID: 7972089
  14. Visualization of peptide-specific T cell immunity and peripheral tolerance induction in vivo.
    Immunity. 1994 Jul;1(4):327-39 PMID: 7889419
  15. Antigen-specific development of primary and memory T cells in vivo.
    Science. 1995 Apr 7;268(5207):106-11 PMID: 7535476
  16. Generation and in vivo persistence of polarized Th1 and Th2 memory cells.
    Immunity. 1994 Oct;1(7):543-52 PMID: 7600283
  17. On the cellular basis of immunological T cell memory.
    Immunity. 1995 Jan;2(1):37-43 PMID: 7600301
  18. A novel assay for apoptosis. Flow cytometric detection of phosphatidylserine expression on early apoptotic cells using fluorescein labelled Annexin V.
    J Immunol Methods. 1995 Jul 17;184(1):39-51 PMID: 7622868
  19. Distinct phenotypes of antigen-selected CD8 T cells emerge at different stages of an in vivo immune response.
    J Immunol. 1995 Oct 1;155(7):3443-52 PMID: 7561039
  20. Immunological memory and protective immunity: understanding their relation.
    Science. 1996 Apr 5;272(5258):54-60 PMID: 8600537
  21. Visualization, characterization, and turnover of CD8+ memory T cells in virus-infected hosts.
    J Exp Med. 1996 Apr 1;183(4):1367-75 PMID: 8666895
  22. Clonal selection and learning in the antibody system.
    Nature. 1996 Jun 27;381(6585):751-8 PMID: 8657279
  23. T cell activation determined by T cell receptor number and tunable thresholds.
    Science. 1996 Jul 5;273(5271):104-6 PMID: 8658175
  24. Self-MHC-restricted peptides recognized by an alloreactive T lymphocyte clone.
    J Immunol. 1996 Jul 15;157(2):670-8 PMID: 8752916
  25. On immunological memory.
    Annu Rev Immunol. 1996;14:333-67 PMID: 8717518
  26. Resting memory CD8+ T cells are hyperreactive to antigenic challenge in vitro.
    J Exp Med. 1996 Dec 1;184(6):2141-51 PMID: 8976170
  27. Differential requirements for survival and proliferation of CD8 naïve or memory T cells.
    Science. 1997 Jun 27;276(5321):2057-62 PMID: 9197272
  28. T cell clonal anergy.
    Curr Opin Immunol. 1997 Jun;9(3):351-7 PMID: 9203408
  29. Immunological memory.
    Curr Opin Immunol. 1997 Jun;9(3):371-9 PMID: 9203411
  30. Rapid effector function in CD8+ memory T cells.
    J Exp Med. 1997 Sep 15;186(6):859-65 PMID: 9294140
  31. Inactivation and proteolytic degradation of perforin within lytic granules upon neutralization of acidic pH.
    Immunology. 1997 Jul;91(3):493-500 PMID: 9301542
  32. Counting antigen-specific CD8 T cells: a reevaluation of bystander activation during viral infection.
    Immunity. 1998 Feb;8(2):177-87 PMID: 9491999
  33. Long-term T cell memory requires the surface expression of self-peptide/major histocompatibility complex molecules.
    Proc Natl Acad Sci U S A. 1998 Mar 17;95(6):3065-70 PMID: 9501216
  34. Modifications of CD8+ T cell function during in vivo memory or tolerance induction.
    Immunity. 1998 May;8(5):581-90 PMID: 9620679
  35. Potent and selective stimulation of memory-phenotype CD8+ T cells in vivo by IL-15.
    Immunity. 1998 May;8(5):591-9 PMID: 9620680
  36. The relative affinity of antibodies synthesized in the secondary response.
    J Exp Med. 1967 Dec 1;126(6):1185-205 PMID: 4168369
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1999-03-16
Pages
2976-81
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC15880
Subset
IM
Grants
NIAID NIH HHS · AI44477 · United States
NCI NIH HHS · R01 CA060686 · United States
NCI NIH HHS · CA60686 · United States
NIAID NIH HHS · AI44478 · United States
NIAID NIH HHS · T32 AI007463 · United States
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