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CD8+ T cells are a biologically relevant source of macrophage inflammatory protein-1 alpha in vivo
D N Cook1, O Smithies, R M Strieter
1Department of Pathology, School of Medicine, University of North Carolina, Chapel Hill 27599, USA.
Insights
T cell production of macrophage inflammatory protein-1 alpha (MIP-1 alpha) is crucial for clearing Listeria monocytogenes infections. This chemokine directs leukocyte migration, and its absence impairs CD8+ T cell function and host defense against intracellular pathogens.
Area of Science:
- Immunology
- Cell Biology
- Infectious Diseases
Background:
- Chemokines guide leukocyte migration to infection sites.
- In vivo sources of chemokines like macrophage inflammatory protein-1 alpha (MIP-1 alpha) remain unclear.
- Understanding chemokine sources is vital for controlling inflammatory responses.
Purpose of the Study:
- To identify the primary in vivo source of MIP-1 alpha during Listeria monocytogenes infection.
- To determine the role of MIP-1 alpha produced by different cell types in host defense.
Main Methods:
- Adoptive transfer experiments using MIP-1 alpha-deficient (MIP-1 alpha-/-) and wild-type (wt) mice.
- Lethal Listeria monocytogenes infection model.
- In vitro assessment of CD8+ T cell cytotoxic activity.
Main Results:
- CD8+ T cells from MIP-1 alpha-/- mice were less protective against Listeria monocytogenes than wt T cells.
- Anti-MIP-1 alpha antiserum neutralized protection mediated by wt T cells.
- Recipient MIP-1 alpha status did not affect protection, indicating donor T cell production is key.
- MIP-1 alpha deficiency in T cells reduced their numbers in recipient spleens and impaired in vitro killing of infected cells.
Conclusions:
- T cell-derived MIP-1 alpha is essential for effective host defense against intracellular bacterial infections.
- CD8+ T cell production of MIP-1 alpha is critical for controlling Listeria monocytogenes.
- This study highlights a critical role for T cell-intrinsic chemokine production in immunity.
Abstract:
Chemokines are small proteins that direct the migration of leukocytes to inflammatory foci. Many cell types, including macrophages, fibroblasts, endothelial cells, and lymphocytes, produce chemokines in vitro, but biologically relevant sources of chemokines in vivo have not been well characterized. To investigate the pertinent sources of macrophage inflammatory protein-1 alpha (MIP-1 alpha) in vivo, we used MIP-1 alpha-deficient (MIP-1 alpha-/-) mice as donors and as recipients in adoptive transfer experiments after a lethal infection with Listeria monocytogenes (LM). Unexpectedly, we found that the production of MIP-1 alpha by CD8+ T cells was critical in this system, as the cells from MIP-1 alpha-/- mice primed with LM were significantly less effective in protecting naive mice against a lethal infection by LM than were the CD8+ T cells from wild-type (wt) mice. This requirement for donor T cell production of MIP-1 alpha was confirmed by the observation that wt donor T cells do not mediate protection when coadministered with an anti-MIP-1 alpha polyclonal antiserum. Production of MIP-1 alpha by the recipient mice was not required for protection, because wt and MIP-1 alpha-/- recipients were equally well protected by wt T cells. A 2- to 3-fold decrease in the number of transferred lymphocytes was seen in the spleens of mice receiving T cells from MIP-1 alpha-/- mice compared with those receiving wt T cells. In addition, CD8+ T cells from MIP-1 alpha-/- mice had a reduced ability to kill LM-infected target cells in vitro. These findings demonstrate that T cell production of MIP-1 alpha is required for clearance of an intracellular pathogen in vivo.
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