Literature DB >> 11470920

Perforin-low memory CD8+ cells are the predominant T cells in normal humans that synthesize the beta -chemokine macrophage inflammatory protein-1beta.

R Kamin-Lewis1, S F Abdelwahab, C Trang, A Baker, A L DeVico, R C Gallo, G K Lewis.   

Abstract

The synthesis of antiviral beta-chemokines has joined cytolysis as a potential mechanism for the control of HIV-1 infection by CD8(+) T cells. Recent evidence suggests that these two effector functions can diverge in some individuals infected with HIV-1; however, little is known about the CD8(+) T cell subsets in normal individuals that synthesize antiviral beta-chemokines. In this report, we have used mutliparameter flow cytometry to characterize the T cell subsets that secrete the antiviral beta-chemokine macrophage inflammatory protein (MIP)-1beta. These studies have shown: (i) CD8(+) cells are the predominant T cell subset that synthesizes MIP-1beta; (ii) MIP-1beta and IFN-gamma are synthesized congruently in most CD8(+) T cells; however, significant numbers of these cells synthesize only one of these effector molecules; (iii) approximately 60% of the CD8(+) T cells that synthesize MIP-1beta lack perforin; (iv) MIP-1beta is synthesized with approximately equal frequency by CD28(+) and CD28(-) subpopulations of CD8(+) T cells; (v) MIP-1beta is synthesized by three distinct CD8(+) T cell subsets defined by the expression of CD45R0 and CD62L; and (vi) MIP-1beta is not synthesized in short-term cultures of naive CD8(+) T cells. These results demonstrate substantial subset heterogeneity of MIP-1beta synthesis among CD8(+) T cells and suggest that these subsets should be evaluated as correlates of protective immunity against HIV-1.

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Year:  2001        PMID: 11470920      PMCID: PMC55412          DOI: 10.1073/pnas.161298998

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  46 in total

Review 1.  The CD8 T cell response to staphylococcal enterotoxins.

Authors:  T Herrmann; H R MacDonald
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2.  Shutting down HIV.

Authors:  R A Koup; D D Ho
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3.  Occurrence of human immunodeficiency virus type 1 (HIV-1)-specific cytolytic T cell activity in apparently uninfected children born to HIV-1-infected mothers.

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4.  Identification of RANTES, MIP-1 alpha, and MIP-1 beta as the major HIV-suppressive factors produced by CD8+ T cells.

Authors:  F Cocchi; A L DeVico; A Garzino-Demo; S K Arya; R C Gallo; P Lusso
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Authors:  P Borrow; H Lewicki; B H Hahn; G M Shaw; M B Oldstone
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Authors:  S Rowland-Jones; J Sutton; K Ariyoshi; T Dong; F Gotch; S McAdam; D Whitby; S Sabally; A Gallimore; T Corrah
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Authors:  L P Yang; J L Riley; R G Carroll; C H June; J Hoxie; B K Patterson; Y Ohshima; R J Hodes; G Delespesse
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