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Published on: January 5, 2016
Cytomegalovirus Coinfection Is Associated with Increased Vascular-Homing CD57+ CD4 T Cells in HIV Infection
Bonnie Chen1, Stephen R Morris2, Soumya Panigrahi1
1Center for AIDS Research, Division of Infectious Diseases and HIV Medicine, Department of Medicine, Case Western Reserve University/University Hospitals Cleveland Medical Center, Cleveland, OH 44106.
Insights
Cytomegalovirus (CMV) coinfection drives cytotoxic CD4 T cells in people with HIV, increasing cardiovascular disease risk. These cells use CD2/LFA-3 and CX3CR1 pathways to promote atherosclerosis.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Infectious Disease
Background:
- Cytotoxic CD4 T cells are implicated in cardiovascular morbidities.
- HIV and CMV infections increase cardiovascular disease (CVD) risk.
- Understanding the mechanisms linking these infections to CVD is crucial.
Purpose of the Study:
- Identify CMV as a driver of cytotoxic CD4 T cell phenotype in people with HIV.
- Investigate mechanisms linking these cells to CVD.
- Explore therapeutic targets for HIV/CMV-associated CVD.
Main Methods:
- Characterized CD57 and CD28 expression on CD4 T cells in HIV infection.
- Assessed CD2/LFA-3 vs. CD28 costimulation effects on T cell responses.
- Evaluated CX3CR1 expression and endothelial cell migration.
- Investigated IL-15's role in T cell phenotype and trafficking.
- Analyzed atherosclerotic plaques for immune cell infiltration and molecular markers.
Main Results:
- CMV coinfection elevates CD57 and reduces CD28 on CD4 T cells in people with HIV.
- CD57+ CD4 T cells utilize CD2/LFA-3 costimulation for robust effector responses.
- These cells express CX3CR1 and migrate to endothelial cells, promoted by IL-15.
- Activated CD57+ CD4 T cells, CX3CL1, and LFA-3 are present in atherosclerotic plaques.
Conclusions:
- Cytotoxic CD4 T cells, driven by CMV in HIV, contribute to CVD via CX3CR1 and CD2/LFA-3 pathways.
- IL-15 plays a role in linking these cells to cardiovascular complications.
- Findings suggest therapeutic targets for mitigating CVD risk in HIV/CMV infection and atherosclerosis.
Abstract:
Cytotoxic CD4 T cells are linked to cardiovascular morbidities and accumulate in both HIV and CMV infections, both of which are associated with increased risk of cardiovascular disease (CVD). In this study, we identify CMV coinfection as a major driver of the cytotoxic phenotype, characterized by elevated CD57 expression and reduced CD28 expression, in circulating CD4 T cells from people living with HIV infection, and investigate potential mechanisms linking this cell population to CVD. We find that human CD57+ CD4 T cells express high levels of the costimulatory receptor CD2 and that CD2/LFA-3 costimulation results in a more robust and polyfunctional effector response to TCR signals, compared with CD28-mediated costimulation. CD57+ CD4 T cells also express the vascular endothelium-homing receptor CX3CR1 and migrate toward CX3CL1-expressing endothelial cells in vitro. IL-15 promotes the cytotoxic phenotype, elevates CX3CR1 expression, and enhances the trafficking of CD57+ CD4 T cells to endothelium and may therefore be important in linking these cells to cardiovascular complications. Finally, we demonstrate the presence of activated CD57+ CD4 T cells and expression of CX3CL1 and LFA-3 in atherosclerotic plaque tissues from HIV-uninfected donors. Our findings are consistent with a model in which cytotoxic CD4 T cells contribute to CVD in HIV/CMV coinfection and in atherosclerosis via CX3CR1-mediated trafficking and CD2/LFA-3-mediated costimulation. This study identifies several targets for therapeutic interventions and may help bridge the gap in understanding how CMV infection and immunity are linked to increased cardiovascular risk in people living with HIV infection.
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