The Respiratory Environment Diverts the Development of Antiviral Memory CD8 T Cells

被引:5
|
作者
Shane, Hillary L. [1 ]
Reagin, Katie L. [1 ]
Klonowski, Kimberly D. [1 ]
机构
[1] Univ Georgia, Dept Cellular Biol, 500 DW Brooks Dr,Room 330A, Athens, GA 30602 USA
来源
JOURNAL OF IMMUNOLOGY | 2018年 / 200卷 / 11期
基金
美国国家卫生研究院;
关键词
CD103(+) DENDRITIC CELLS; MHC CLASS-I; CUTTING EDGE; INFLUENZA-VIRUS; ANTIGEN PRESENTATION; MESSENGER-RNA; A VIRUS; EFFECTOR; EXPRESSION; SUBSETS;
D O I
10.4049/jimmunol.1701268
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Our understanding of memory CD8(+) T cells has been largely derived from acute, systemic infection models. However, memory CD8(+) T cells generated from mucosal infection exhibit unique properties and, following respiratory infection, are not maintained in the lung long term. To better understand how infection route modifies memory differentiation, we compared murine CD8(+) T cell responses to a vesicular stomatitis virus (VSV) challenge generated intranasally (i.n.) or i.v. The i.n. infection resulted in greater peak expansion of VSV-specific CD8(+) T cells. However, this numerical advantage was rapidly lost during the contraction phase of the immune response, resulting in memory CD8(+) T cell numerical deficiencies when compared with i.v. infection. Interestingly, the antiviral CD8(+) T cells generated in response to i.n. VSV exhibited a biased and sustained proportion of early effector cells (CD127(lo)KLRG1(lo)) akin to the developmental program favored after i.n. influenza infection, suggesting that respiratory infection broadly favors an incomplete memory differentiation program. Correspondingly, i.n. VSV infection resulted in lower CD122 expression and eomesodermin levels by VSV-specific CD8(+) T cells, further indicative of an inferior transition to bona fide memory. These results may be due to distinct (CD103(+) CD11b(+)) dendritic cell subsets in the i.n. versus i.v. T cell priming environments, which express molecules that regulate T cell signaling and the balance between tolerance and immunity. Therefore, we propose that distinct immunization routes modulate both the quality and quantity of antiviral effector and memory CD8(+) T cells in response to an identical pathogen and should be considered in CD8(+) T cell-based vaccine design.
引用
收藏
页码:3752 / 3761
页数:10
相关论文
共 50 条
  • [1] Attrition of memory CD8 T cells
    Welsh, Raymond M.
    Selin, Liisa K.
    NATURE, 2009, 459 (7247) : E3 - E4
  • [2] Attrition of memory CD8 T cells
    Raymond M. Welsh
    Liisa K. Selin
    Nature, 2009, 459 : E3 - E4
  • [3] Reevaluation of the origin of CD44high "memory phenotype" CD8 T cells:: comparison between memory CD8 T cells and thymus-independent CD8 T cells
    Yamada, H
    Matsuzaki, G
    Chen, QJ
    Iwamoto, Y
    Nomoto, K
    EUROPEAN JOURNAL OF IMMUNOLOGY, 2001, 31 (06) : 1917 - 1926
  • [4] CD8 T cell memory to respiratory virus infections
    Woodland, D. L.
    Kohlmeier, J. E.
    Hikono, H.
    Ely, K. H.
    Miller, S.
    Roberts, A. D.
    IMMUNOLOGY, 2007, 120 : 14 - 14
  • [5] Mitochondrial respiratory capacity is a critical regulator of CD8 T cell memory development
    van der Windt, G. J.
    Everts, B.
    Chang, C. -H.
    Curtis, J.
    Freitas, T.
    Amiel, E.
    Pearce, E. J.
    Pearce, E. L.
    IMMUNOLOGY, 2011, 135 : 5 - 5
  • [6] Deletion of CD8 Memory T Cells and Antiviral Immunity in "Delayed Tolerance" Induction.
    Murakami, Toru
    Boskovic, Svjetlan
    Nadazdin, Ognjenka
    Ochiai, Takanori
    Benichou, Gilles
    Putheti, Prabhakar
    Smith, Rex-Neal
    Colvin, Robert B.
    Strom, Terry B.
    Sachs, David H.
    Cosimi, A. Benedict
    Kawai, Tatsuo
    AMERICAN JOURNAL OF TRANSPLANTATION, 2009, 9 : 721 - 721
  • [7] Localization of terminal memory CD8 T cells in the lungs during respiratory infection
    Suarez-Ramirez, Jenny E.
    Chandiran, Karthik
    Cauley, Linda S.
    JOURNAL OF IMMUNOLOGY, 2022, 208 (01):
  • [8] Opinion: Virtual memory CD8 T cells and lymphopenia-induced memory CD8 T cells represent a single subset: Homeostatic memory T cells
    Pribikova, Michaela
    Moudra, Alena
    Stepanek, Ondrej
    IMMUNOLOGY LETTERS, 2018, 203 : 57 - 61
  • [9] Profiling the formation of memory CD8 T cells
    Joshi, Nikhil Subash
    Chandele, Anmol
    Kaech, Susan M.
    JOURNAL OF IMMUNOLOGY, 2006, 176 : S303 - S303
  • [10] Attrition of memory CD8 T cells Reply
    Vezys, Vaiva
    Yates, Andrew
    Casey, Kerry A.
    Lanier, Gibson
    Ahmed, Rafi
    Antia, Rustom
    Masopust, David
    NATURE, 2009, 459 (7247) : E4 - E4