Macrophage- and Dendritic-Cell-Derived Interleukin-15 Receptor Alpha Supports Homeostasis of Distinct CD8+ T Cell Subsets

被引:169
作者
Mortier, Erwan [1 ]
Advincula, Rommel [1 ]
Kim, Leesun [1 ]
Chmura, Stephen [1 ]
Barrera, Julio [1 ]
Reizis, Boris [2 ]
Malynn, Barbara A. [1 ]
Ma, Averil [1 ]
机构
[1] Univ Calif San Francisco, Dept Med, San Francisco, CA 94143 USA
[2] Columbia Univ, Dept Microbiol, New York, NY 10032 USA
关键词
NATURAL-KILLER-CELLS; BONE-MARROW; CUTTING EDGE; IN-VIVO; TRANSGENIC MICE; MEMORY; IL-15; EXPRESSION; IL-15R-ALPHA; PROLIFERATION;
D O I
10.1016/j.immuni.2009.09.017
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Interleukin-15 receptor alpha (IL-15R alpha) is a pleiotropically expressed molecule that chaperones and transpresents IL-15 to NK and T cells. To investigate whether IL-15R alpha presented by different cells perform distinct physiological functions, we have generated four lines of mice lacking IL-15R alpha in various cell types. We find that IL-15R alpha expression on macrophages but not dendritic cells (DCs) supports the early transition of antigen specific effector CID T cells to memory cells. After memory CD8(+) T cell differentiation, IL-15R alpha expression on DCs selectively supports central memory CD8(+) T cells, whereas IL-15R alpha expression on macrophages supports both central and effector memory CD8(+) T cells. By contrast, mice lacking IL-15R alpha on macrophages, DCs, or both, exhibit equivalent defects in NK cell homeostasis and activation. These studies define unique roles for macrophage expression of IL-15R alpha and show that NK cells rely upon distinct IL-15R alpha dependent IL-15 signals than memory CD8(+) T cells. Moreover, they demonstrate the diversity, specification, and geographic restriction of cytokine signals.
引用
收藏
页码:811 / 822
页数:12
相关论文
共 46 条
[1]   Secondary Replicative Function of CD8+ T Cells That Had Developed an Effector Phenotype [J].
Bannard, Oliver ;
Kraman, Matthew ;
Fearon, Douglas T. .
SCIENCE, 2009, 323 (5913) :505-509
[2]   Bone marrow is a preferred site for homeostatic proliferation of memory CD8 T cells [J].
Becker, TC ;
Coley, SM ;
Wherry, EJ ;
Ahmed, R .
JOURNAL OF IMMUNOLOGY, 2005, 174 (03) :1269-1273
[3]   Interleukin 15 is required for proliferative renewal of virus-specific memory CD8 T cells [J].
Becker, TC ;
Wherry, EJ ;
Boone, D ;
Murali-Krishna, K ;
Antia, R ;
Ma, A ;
Ahmed, R .
JOURNAL OF EXPERIMENTAL MEDICINE, 2002, 195 (12) :1541-1548
[4]   Coordinate expression and trans presentation of interleukin (IL)-15Rα and IL-15 supports natural killer cell and memory CD8+ T cell homeostasis [J].
Burkett, PR ;
Koka, R ;
Chien, M ;
Chai, S ;
Boone, DL ;
Ma, A .
JOURNAL OF EXPERIMENTAL MEDICINE, 2004, 200 (07) :825-834
[5]   IL-15Rα expression on CD8+ T cells is dispensable for T cell memory [J].
Burkett, PR ;
Koka, R ;
Chien, M ;
Chai, S ;
Chan, F ;
Ma, A ;
Boone, DL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (08) :4724-4729
[6]   Notch-RBP-J signaling controls the homeostasis of CD8- dendritic cells in the spleen [J].
Caton, Michele L. ;
Smith-Raska, Matthew R. ;
Reizis, Boris .
JOURNAL OF EXPERIMENTAL MEDICINE, 2007, 204 (07) :1653-1664
[7]   Activation of bone marrow-resident memory T cells by circulating, antigen-bearing dendritic cells [J].
Cavanagh, LL ;
Bonasio, R ;
Mazo, IB ;
Halin, C ;
Cheng, GY ;
van der Velden, AWM ;
Cariappa, A ;
Chase, C ;
Russell, P ;
Starnbach, MN ;
Koni, PA ;
Pillai, S ;
Weninger, W ;
von Andrian, UH .
NATURE IMMUNOLOGY, 2005, 6 (10) :1029-1037
[8]   Conditional gene targeting in macrophages and granulocytes using LysMcre mice [J].
Clausen, BE ;
Burkhardt, C ;
Reith, W ;
Renkawitz, R ;
Förster, I .
TRANSGENIC RESEARCH, 1999, 8 (04) :265-277
[9]   IL-15Rα recycles and presents IL-15 in trans to neighboring cells [J].
Dubois, S ;
Mariner, J ;
Waldmann, TA ;
Tagaya, Y .
IMMUNITY, 2002, 17 (05) :537-547
[10]   Fatal leukemia in interleukin 15 transgenic mice follows early expansions in natural killer and memory phenotype CD8+ T cells [J].
Fehniger, TA ;
Suzuki, K ;
Ponnappan, A ;
VanDeusen, JB ;
Cooper, MA ;
Florea, SM ;
Freud, AG ;
Robinson, ML ;
Durbin, J ;
Caligiuri, MA .
JOURNAL OF EXPERIMENTAL MEDICINE, 2001, 193 (02) :219-231