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Updated: May 26, 2026

Murine Superficial Lymph Node Surgery
Published on: May 21, 2012
Multiple layers of CD80/86-dependent costimulatory activity regulate primary, memory, and secondary lymphocytic
Jens Eberlein1, Bennett Davenport, Tom T Nguyen
1Barbara Davis Center for Childhood Diabetes, University of Colorado Denver, Aurora, Colorado, USA.
Insights
The CD28-CD80/86 costimulation pathway is crucial for effective T cell responses against lymphocytic choriomeningitis virus (LCMV). Disrupting this pathway impairs T cell immunity, memory formation, and regulatory T cell function.
Area of Science:
- Immunology
- Virology
- T cell biology
Background:
- The lymphocytic choriomeningitis virus (LCMV) model is widely used for studying T cell immunity.
- LCMV-specific T cell responses were previously thought to be independent of costimulatory pathways like CD28-CD80/86.
Purpose of the Study:
- To reevaluate the role of CD28-CD80/86 costimulation in LCMV-specific T cell responses.
- To investigate the impact of CD80/86 deficiency on T cell immunity during LCMV infection.
Main Methods:
- Utilized CD80/86-deficient mice for LCMV infection studies.
- Analyzed the magnitude, phenotype, and functionality of LCMV-specific CD8(+) and CD4(+) T cells.
- Investigated secondary T cell responses and the role of regulatory T cells (T(REG)s).
Main Results:
- Disruption of CD28-CD80/86 signaling significantly compromised LCMV-specific T cell responses.
- Defective memory T cell development and impaired recall responses were observed in CD80/86-deficient mice.
- Evidence suggests a CD28 ligand other than CD80/86 and a role for T(REG)s in regulating T cell immunity.
Conclusions:
- CD28-CD80/86 costimulation is critical for robust antiviral T cell immunity in the LCMV model.
- The LCMV system shares common regulatory mechanisms with other viral pathogen models regarding T cell costimulation.
- Findings provide a more unified understanding of CD28-CD80/86 costimulation in antiviral immunity.
Abstract:
The lymphocytic choriomeningitis virus (LCMV) system constitutes one of the most widely used models for the study of infectious disease and the regulation of virus-specific T cell immunity. However, with respect to the activity of costimulatory and associated regulatory pathways, LCMV-specific T cell responses have long been regarded as relatively independent and thus distinct from the regulation of T cell immunity directed against many other viral pathogens. Here, we have reevaluated the contribution of CD28-CD80/86 costimulation in the LCMV system by use of CD80/86-deficient mice, and our results demonstrate that a disruption of CD28-CD80/86 signaling compromises the magnitude, phenotype, and/or functionality of LCMV-specific CD8(+) and/or CD4(+) T cell populations in all stages of the T cell response. Notably, a profound inhibition of secondary T cell immunity in LCMV-immune CD80/86-deficient mice emerged as a composite of both defective memory T cell development and a specific requirement for CD80 but not CD86 in the recall response, while a related experimental scenario of CD28-dependent yet CD80/86-independent secondary CD8(+) T cell immunity suggests the existence of a CD28 ligand other than CD80/86. Furthermore, we provide evidence that regulatory T cells (T(REG)s), the homeostasis of which is altered in CD80/86(-/-) mice, contribute to restrained LCMV-specific CD8(+) T cell responses in the presence of CD80/86. Our observations can therefore provide a more coherent perspective on CD28-CD80/86 costimulation in antiviral T cell immunity that positions the LCMV system within a shared context of multiple defects that virus-specific T cells acquire in the absence of CD28-CD80/86 costimulation.
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