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Originally published in Science Express on 1 March 2001
Science 23 March 2001: Vol. 291. no. 5512, pp. 2413 - 2417
DOI: 10.1126/science.1058867
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Reports
Preferential Localization of Effector Memory Cells in Nonlymphoid Tissue
David Masopust,
Vaiva Vezys,
Amanda L. Marzo,
Leo Lefrançois*
Many intracellular pathogens infect a broad range of
host tissues, but the importance of T cells for immunity in these sites is unclear because most of our understanding of antimicrobial T cell
responses comes from analyses of lymphoid tissue. Here, we show that in
response to viral or bacterial infection, antigen-specific CD8 T cells
migrated to nonlymphoid tissues and were present as long-lived memory
cells. Strikingly, CD8 memory T cells isolated from nonlymphoid tissues
exhibited effector levels of lytic activity directly ex vivo, in
contrast to their splenic counterparts. These results point to the
existence of a population of extralymphoid effector memory T cells
poised for immediate response to infection.
Division of Immunology, Department of Medicine, University of
Connecticut Health Center, Farmington, CT 06030, USA.
*
To whom correspondence should be addressed. E-mail:
llefranc{at}neuron.uchc.edu
Read the Full Text
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- Activation phenotype, rather than central- or effector-memory phenotype, predicts the recall efficacy of memory CD8+ T cells.
- H. Hikono, J. E. Kohlmeier, S. Takamura, S. T. Wittmer, A. D. Roberts, and D. L. Woodland (2007)
J. Exp. Med.
204, 1625-1636
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- Cutting Edge: Migration to Nonlymphoid Tissues Results in Functional Conversion of Central to Effector Memory CD8 T Cells.
- A. L. Marzo, H. Yagita, and L. Lefrancois (2007)
J. Immunol.
179, 36-40
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- Heterogeneity of Effector Phenotype for Acute Phase and Memory Influenza A Virus-Specific CTL.
- M. R. Jenkins, K. Kedzierska, P. C. Doherty, and S. J. Turner (2007)
J. Immunol.
179, 64-70
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- Memory CD8+ T cells are gatekeepers of the lymph node draining the site of viral infection.
- R.-H. Xu, M. Fang, A. Klein-Szanto, and L. J. Sigal (2007)
PNAS
104, 10992-10997
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- Disregulated Influenza A Virus-Specific CD8+ T Cell Homeostasis in the Absence of IFN-{gamma} Signaling.
- S. J. Turner, E. Olivas, A. Gutierrez, G. Diaz, and P. C. Doherty (2007)
J. Immunol.
178, 7616-7622
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- Location rather than CD62L phenotype is critical in the early establishment of influenza-specific CD8+ T cell memory.
- K. Kedzierska, J. Stambas, M. R. Jenkins, R. Keating, S. J. Turner, and P. C. Doherty (2007)
PNAS
104, 9782-9787
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- Multifunctional Human Immunodeficiency Virus (HIV) Gag-Specific CD8+ T-Cell Responses in Rectal Mucosa and Peripheral Blood Mononuclear Cells during Chronic HIV Type 1 Infection.
- J. W. Critchfield, D. Lemongello, D. H. Walker, J. C. Garcia, D. M. Asmuth, R. B. Pollard, and B. L. Shacklett (2007)
J. Virol.
81, 5460-5471
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- Enrichment and Persistence of Virus-Specific CTL in the Brain of Simian Immunodeficiency Virus-Infected Monkeys Is Associated with a Unique Cytokine Environment.
- M. C. G. Marcondes, T. H. Burdo, S. Sopper, S. Huitron-Resendiz, C. Lanigan, D. Watry, C. Flynn, M. Zandonatti, and H. S. Fox (2007)
J. Immunol.
178, 5812-5819
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- Effective graft depletion of MiHAg T-cell specificities and consequences for graft-versus-host disease.
- M. A. de Witte, M. Toebes, J.-Y. Song, M. C. Wolkers, and T. N. M. Schumacher (2007)
Blood
109, 3830-3838
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- Role of the Indigenous Microbiota in Maintaining the Virus-Specific CD8 Memory T Cells in the Lung of Mice Infected with Murine Cytomegalovirus.
- K. Tanaka, S. Sawamura, T. Satoh, K. Kobayashi, and S. Noda (2007)
J. Immunol.
178, 5209-5216
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- Suppression of Memory CD8 T Cell Generation and Function by Tryptophan Catabolism.
- Z. Liu, H. Dai, N. Wan, T. Wang, S. Bertera, M. Trucco, and Z. Dai (2007)
J. Immunol.
178, 4260-4266
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- IL-12 Controls Cytotoxicity of a Novel Subset of Self-Antigen-Specific Human CD28+ Cytolytic T Cells.
- C. Barbey, P. Baumgaertner, E. Devevre, V. Rubio-Godoy, L. Derre, G. Bricard, P. Guillaume, I. F. Luescher, D. Lienard, J.-C. Cerottini, et al. (2007)
J. Immunol.
178, 3566-3574
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- Unique Ability of Activated CD4+ T Cells but Not Rested Effectors to Migrate to Non-lymphoid Sites in the Absence of Inflammation.
- J. N. Agrewala, D. M. Brown, N. M. Lepak, D. Duso, G. Huston, and S. L. Swain (2007)
J. Biol. Chem.
282, 6106-6115
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- Increased CD8+ central memory T cells in patients with multiple sclerosis.
- G.-Z. Liu, L.-B. Fang, P. Hjelmstrom, and X.-G. Gao (2007)
Multiple Sclerosis
13, 149-155
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- Interleukin-1 Receptor Type 1 Is Essential for Control of Cerebral but Not Systemic Listeriosis.
- M. Deckert, S. Virna, M. Sakowicz-Burkiewicz, S. Lutjen, S. Soltek, H. Bluethmann, and D. Schluter (2007)
Am. J. Pathol.
170, 990-1002
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- Virus-Specific CD8+ T Cells in the Liver: Armed and Ready to Kill.
- R. Keating, W. Yue, J. A. Rutigliano, J. So, E. Olivas, P. G. Thomas, and P. C. Doherty (2007)
J. Immunol.
178, 2737-2745
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- Persistent Antigen Presentation after Acute Vesicular Stomatitis Virus Infection.
- D. L. Turner, L. S. Cauley, K. M. Khanna, and L. Lefrancois (2007)
J. Virol.
81, 2039-2046
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- Rapid Clonal Expansion and Prolonged Maintenance of Memory CD8+ T Cells of the Effector (CD44highCD62Llow) and Central (CD44highCD62Lhigh) Phenotype by an Archaeosome Adjuvant Independent of TLR2.
- L. Krishnan, K. Gurnani, C. J. Dicaire, H. van Faassen, A. Zafer, C. J. Kirschning, S. Sad, and G. D. Sprott (2007)
J. Immunol.
178, 2396-2406
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- An In Vivo Cytotoxicity Threshold for Influenza A Virus-Specific Effector and Memory CD8+ T Cells.
- J. Stambas, P. C. Doherty, and S. J. Turner (2007)
J. Immunol.
178, 1285-1292
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- Combined TLR/CD40 Stimulation Mediates Potent Cellular Immunity by Regulating Dendritic Cell Expression of CD70 In Vivo.
- P. J. Sanchez, J. A. McWilliams, C. Haluszczak, H. Yagita, and R. M. Kedl (2007)
J. Immunol.
178, 1564-1572
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- Protection against Vaccinia Virus Challenge by CD8 Memory T Cells Resolved by Molecular Mimicry.
- M. Cornberg, B. S. Sheridan, F. M. Saccoccio, M. A. Brehm, and L. K. Selin (2007)
J. Virol.
81, 934-944
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- CD27low CD4 T Lymphocytes That Accumulate in the Mouse Lungs during Mycobacterial Infection Differentiate from CD27high Precursors In Situ, Produce IFN-{gamma}, and Protect the Host against Tuberculosis Infection.
- M. A. Kapina, G. S. Shepelkova, V. V. Mischenko, P. Sayles, P. Bogacheva, G. Winslow, A. S. Apt, and I. V. Lyadova (2007)
J. Immunol.
178, 976-985
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