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PMID: 9465085 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A role for B cells in the development of T cell helper function in a malaria infection in mice.

Langhorne J, Cross C, Seixas E, Li C, von der Weid T

Abstract

B cell knockout mice are unable to clear a primary erythrocytic infection of Plasmodium chabaudi chabaudi. However, the early acute infection is controlled to some extent, giving rise to a chronic relapsing parasitemia that can be reduced either by drug treatment or by adoptive transfer of B cells. Similar to mice rendered B-cell deficient by lifelong treatment with anti-mu antibodies, B cell knockout mice (muMT) retain a predominant CD4+ Th1-like response to malarial antigens throughout a primary infection. This contrasts with the response seen in control C57BL/6 mice in which the CD4+ T-cell response has switched to that characteristic of Th2 cells at the later stages of infection, manifesting efficient help for specific antibodies in vitro and interleukin 4 production. Both chloroquine and adoptive transfer of immune B cells reduced parasite load. However, the adoptive transfer of B cells resulted in a Th2 response in recipient muMT mice, as indicated by a relative increase in the precursor frequency of helper cells for antibody production. These data support the idea that B cells play a role in the regulation of CD4+ T subset responses.

MeSH Terms
Animals B-Lymphocytes/immunology Chloroquine/therapeutic use Erythrocytes/parasitology Female Genes, Immunoglobulin Immunoglobulin mu-Chains/genetics Malaria/immunology Mice Mice, Knockout Plasmodium chabaudi/immunology Pyrimethamine/pharmacology T-Lymphocyte Subsets/immunology Th1 Cells/immunology Th2 Cells/immunology
Chemicals
Immunoglobulin mu-Chains Chloroquine Pyrimethamine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Langhorne J
Department of Biology, Imperial College of Science Technology and Medicine, Prince Consort Road, London SW7 2BB, United Kingdom. [email protected]
Cross C
Seixas E
Li C
von der Weid T
References (45)
45 references, click to expand
  1. Acquisition of lymphokine-producing phenotype by CD4+ T cells.
    Annu Rev Immunol. 1994;12:635-73 PMID: 7912089
  2. Small B cells as antigen-presenting cells in the induction of tolerance to soluble protein antigens.
    J Exp Med. 1992 Jan 1;175(1):131-8 PMID: 1730913
  3. Interleukin-12: a proinflammatory cytokine with immunoregulatory functions that bridge innate resistance and antigen-specific adaptive immunity.
    Annu Rev Immunol. 1995;13:251-76 PMID: 7612223
  4. CD40 ligand-transduced co-stimulation of T cells in the development of helper function.
    Nature. 1995 Dec 7;378(6557):620-3 PMID: 8524396
  5. Ligation of CD40 on dendritic cells triggers production of high levels of interleukin-12 and enhances T cell stimulatory capacity: T-T help via APC activation.
    J Exp Med. 1996 Aug 1;184(2):747-52 PMID: 8760829
  6. A B cell-deficient mouse by targeted disruption of the membrane exon of the immunoglobulin mu chain gene.
    Nature. 1991 Apr 4;350(6317):423-6 PMID: 1901381
  7. B cells solicit their own help from T cells.
    J Exp Med. 1996 Mar 1;183(3):891-9 PMID: 8642293
  8. The B cell is the initiating antigen-presenting cell in peripheral lymph nodes.
    J Immunol. 1987 Feb 15;138(4):1051-5 PMID: 3100626
  9. Induction of Th1 and Th2 CD4+ T cell responses: the alternative approaches.
    Annu Rev Immunol. 1997;15:297-322 PMID: 9143690
  10. Dendritic cells and macrophages are required for Th1 development of CD4+ T cells from alpha beta TCR transgenic mice: IL-12 substitution for macrophages to stimulate IFN-gamma production is IFN-gamma-dependent.
    Int Immunol. 1993 Sep;5(9):1119-28 PMID: 7902129
  11. Interleukin (IL)-6 directs the differentiation of IL-4-producing CD4+ T cells.
    J Exp Med. 1997 Feb 3;185(3):461-9 PMID: 9053446
  12. Gene-targeted mice lacking B cells are unable to eliminate a blood stage malaria infection.
    J Immunol. 1996 Apr 1;156(7):2510-6 PMID: 8786312
  13. Early gamma interferon responses in lethal and nonlethal murine blood-stage malaria.
    Infect Immun. 1997 May;65(5):1593-8 PMID: 9125535
  14. Normal B cells fail to secrete interleukin-12.
    Eur J Immunol. 1997 Jul;27(7):1632-9 PMID: 9247571
  15. Interferon-gamma- and interleukin-4-producing T cells can be primed on dendritic cells in vivo and do not require the presence of B cells.
    Eur J Immunol. 1994 May;24(5):1148-54 PMID: 8181524
  16. Effects of IL-12 on immune responses to microbial infections: a key mediator in regulating disease outcome.
    Curr Opin Immunol. 1995 Aug;7(4):485-96 PMID: 7495512
  17. Malarial parasites induce TNF production by macrophages.
    Immunology. 1988 Jun;64(2):227-31 PMID: 3292408
  18. CD4+ T cell activation and tolerance induction in B cell knockout mice.
    J Exp Med. 1996 Apr 1;183(4):1339-44 PMID: 8666892
  19. B220: a B cell-specific member of th T200 glycoprotein family.
    Nature. 1981 Feb 19;289(5799):681-3 PMID: 6970340
  20. CD4+ Th2 response induced by Schistosoma mansoni eggs develops rapidly, through an early, transient, Th0-like stage.
    J Immunol. 1992 Apr 1;148(7):2283-90 PMID: 1347553
  21. The role of CD4+ T-cells in the immune response to Plasmodium chabaudi.
    Parasitol Today. 1989 Nov;5(11):362-4 PMID: 15463156
  22. Altered response of CD4+ T cell subsets to Plasmodium chabaudi chabaudi in B cell-deficient mice.
    Int Immunol. 1993 Oct;5(10):1343-8 PMID: 8268139
  23. Differential induction of helper T cell subsets during blood-stage Plasmodium chabaudi AS infection in resistant and susceptible mice.
    Clin Exp Immunol. 1993 Apr;92(1):77-83 PMID: 8096804
  24. Human and murine macrophages produce TNF in response to soluble antigens of Plasmodium falciparum.
    Parasite Immunol. 1990 Jan;12(1):33-43 PMID: 2179828
  25. A dual role for B cells in Plasmodium chabaudi chabaudi (AS) infection?
    Res Immunol. 1994 Jul-Aug;145(6):412-9 PMID: 7899705
  26. Mouse NK1+ T cells.
    Curr Opin Immunol. 1995 Jun;7(3):367-74 PMID: 7546402
  27. Experimental autoimmune encephalomyelitis induction in genetically B cell-deficient mice.
    J Exp Med. 1996 Dec 1;184(6):2271-8 PMID: 8976182
  28. Analysis of cytokine mRNA expression during primary granuloma formation induced by eggs of Schistosoma mansoni.
    J Immunol. 1993 Aug 1;151(3):1430-40 PMID: 8335939
  29. Identification of messenger RNA for IL-4 in human eosinophils with granule localization and release of the translated product.
    J Immunol. 1995 Nov 15;155(10):4939-47 PMID: 7594499
  30. The immune response to Plasmodium chabaudi malaria in interleukin-4-deficient mice.
    Eur J Immunol. 1994 Oct;24(10):2285-93 PMID: 7925557
  31. Analysis of low zone tolerance induction in normal and B cell-deficient mice.
    J Immunol. 1996 Sep 1;157(5):1833-9 PMID: 8757299
  32. Schistosoma mansoni egg-induced early IL-4 production is dependent upon IL-5 and eosinophils.
    J Exp Med. 1996 Nov 1;184(5):1871-8 PMID: 8920874
  33. High level IL-12 production by murine dendritic cells: upregulation via MHC class II and CD40 molecules and downregulation by IL-4 and IL-10.
    J Exp Med. 1996 Aug 1;184(2):741-6 PMID: 8760828
  34. The role of B cells in the programming of T cells for IL-4 synthesis.
    J Exp Med. 1996 Mar 1;183(3):717-9 PMID: 8642274
  35. B cells are required for the switch from Th1- to Th2-regulated immune responses to Plasmodium chabaudi chabaudi infection.
    Infect Immun. 1994 Jun;62(6):2490-8 PMID: 8188374
  36. Reconstitution of B-cell-depleted mice with B cells restores Th2-type immune responses during Plasmodium chabaudi chabaudi infection.
    Infect Immun. 1996 Jan;64(1):366-70 PMID: 8557367
  37. Successful T cell priming in B cell-deficient mice.
    J Exp Med. 1995 Oct 1;182(4):915-22 PMID: 7561694
  38. B cells turn off virgin but not memory T cells.
    Science. 1992 Nov 13;258(5085):1156-9 PMID: 1439825
  39. Can B cells turn on virgin T cells?
    Nature. 1988 Jul 21;334(6179):253-5 PMID: 2969460
  40. Differential regulation of T helper phenotype development by interleukins 4 and 10 in an alpha beta T-cell-receptor transgenic system.
    Proc Natl Acad Sci U S A. 1992 Jul 1;89(13):6065-9 PMID: 1385868
  41. Lymphokine and cytokine production by Fc epsilon RI+ cells.
    Adv Immunol. 1993;53:1-29 PMID: 8512033
  42. Multiple pathways for the initiation of T helper 2 (Th2) responses.
    J Exp Med. 1997 Feb 3;185(3):373-5 PMID: 9053437
  43. Frequencies of CD4+ T cells reactive with Plasmodium chabaudi chabaudi: distinct response kinetics for cells with Th1 and Th2 characteristics during infection.
    Int Immunol. 1989;1(4):416-24 PMID: 2535135
  44. B lymphocytes in vivo fail to prime naive T cells but can stimulate antigen-experienced T lymphocytes.
    J Exp Med. 1993 Mar 1;177(3):679-90 PMID: 8436906
  45. T cell priming in vivo: a major role for B cells in presenting antigen to T cells in lymph nodes.
    J Immunol. 1987 May 1;138(9):2848-56 PMID: 2952725
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
1998-02-17
Pages
1730-4
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC19169
Subset
IM
Grants
Wellcome Trust · United Kingdom
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