This subproject is one of many research subprojects utilizing the resources provided by a Center grant funded by NIH/NCRR. The subproject and investigator (PI) may have received primary funding from another NIH source, and thus could be represented in other CRISP entries. The institution listed is for the Center, which is not necessarily the institution for the investigator. In the current reporting period we confirmed that anti-CD137-mediated suppression could be induced in CD8 T cells, as well as CD4 T. By adoptively transferring CD137-sufficient SMARTA transgenic CD4 T cells and CD137-sufficient P14 TCR transgenic CD8 T cells into CD137-deficient mice and we have found that the induction of suppression caused by anti-CD137 was in part dependent on CD137 expression on T cells, rather than completely independent, as we had previously reported. The contribution made by CD137 signaling to T cells was found to be the upregulation of the apoptosis-inducing death receptor CD95 (Fas). In addition, we found that CD137-mediated signaling in pDCs and mDCs was critical to the induction of tolerance of virus-specific CD8 T cells and that DCs contributed to the induction of CD8 T cell tolerance by inducing the release of soluble Fas ligand. We showed that although DCs induced the release of soluble Fas ligand, they were not the source of this protein. Our studies are presently focused on the identification of the cell lineage that is responsible for the release of Fas ligand. In other studies we have found that CD137 and its cognate ligand function as gate keepers and limit the extent of early myelopoiesis in the bone marrow, an event that limits the numbers of DCs that leave the bone marrow and enter the periphery. This approach will advance our understanding of immune response of conditions such as HIV infection.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Primate Research Center Grants (P51)
Project #
5P51RR000165-49
Application #
7958184
Study Section
Special Emphasis Panel (ZRR1-CM-8 (01))
Project Start
2009-05-01
Project End
2010-04-30
Budget Start
2009-05-01
Budget End
2010-04-30
Support Year
49
Fiscal Year
2009
Total Cost
$56,690
Indirect Cost
Name
Emory University
Department
Otolaryngology
Type
Schools of Medicine
DUNS #
066469933
City
Atlanta
State
GA
Country
United States
Zip Code
30322
Claw, Katrina G; George, Renee D; MacCoss, Michael J et al. (2018) Quantitative evolutionary proteomics of seminal fluid from primates with different mating systems. BMC Genomics 19:488
Adekambi, Toidi; Ibegbu, Chris C; Cagle, Stephanie et al. (2018) High Frequencies of Caspase-3 Expressing Mycobacterium tuberculosis-Specific CD4+ T Cells Are Associated With Active Tuberculosis. Front Immunol 9:1481
Beck, Goichi; Maehara, Shunsuke; Chang, Phat Ly et al. (2018) A Selective Phosphodiesterase 10A Inhibitor Reduces L-Dopa-Induced Dyskinesias in Parkinsonian Monkeys. Mov Disord 33:805-814
Georgieva, Maria; Sia, Jonathan Kevin; Bizzell, Erica et al. (2018) Mycobacterium tuberculosis GroEL2 Modulates Dendritic Cell Responses. Infect Immun 86:
Tedesco, Dana; Grakoui, Arash (2018) Environmental peer pressure: CD4+ T cell help in tolerance and transplantation. Liver Transpl 24:89-97
Mavigner, Maud; Habib, Jakob; Deleage, Claire et al. (2018) Simian Immunodeficiency Virus Persistence in Cellular and Anatomic Reservoirs in Antiretroviral Therapy-Suppressed Infant Rhesus Macaques. J Virol 92:
Walker, Lary C (2018) Prion-like mechanisms in Alzheimer disease. Handb Clin Neurol 153:303-319
Kamberov, Yana G; Guhan, Samantha M; DeMarchis, Alessandra et al. (2018) Comparative evidence for the independent evolution of hair and sweat gland traits in primates. J Hum Evol 125:99-105
Wakeford, Alison G P; Morin, Elyse L; Bramlett, Sara N et al. (2018) A review of nonhuman primate models of early life stress and adolescent drug abuse. Neurobiol Stress 9:188-198
Singh, Arun; Jenkins, Meagan A; Burke Jr, Kenneth J et al. (2018) Glutamatergic Tuning of Hyperactive Striatal Projection Neurons Controls the Motor Response to Dopamine Replacement in Parkinsonian Primates. Cell Rep 22:941-952

Showing the most recent 10 out of 912 publications