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. Objective: To target the Wisconsin National Primate Research Center's mission to develop treatments for human disease, generate knowledge of primate biology, and to facilitate the progress of research by providing expertise and resources to external scientists, we are developing a methodology that we will use to determine the abundance and in situ localization of CD4 T cells specific to simian immunodeficiency virus (SIV) in tissues during SIV infection. Results: We initiated these studies by working to develop methods to stain antigen specific CD4 T cells in mice. In collaboration with Dr. Marc Jenkins and Dr. T. Dileepan at the University of Minnesota we are using mice infected with bacteria that are engineered to express a peptide that triggers a peptide-specific CD4 T cell response for which MHC class II tetramers are available. We are staining nasal associated lymphoid tissues (NALT) and spleen tissues because peptide-specific CD4 T cells accumulate at these sites. We have tried staining tissues with class II tetramers at several different concentrations, at several different lengths of incubation time, at different temperatures, and using several amplification techniques. Thus far, we have been successful at detecting cells that are weakly stained with tetramers in the NALT using 2-4 nM tetramers incubated over night at four degrees followed by a one hour incubation at room temperature. We are now attempting to improve the detection of cells with the class II tetramers using tyramide signal amplification (TSA) techniques, and verifying the specificity of staining using CD4, CD3, and CD20 antibody counterstaining. In addition, Dr. Nancy Wilson at the WNPRC is making progress developing class II reagents for use in SIV-infected macaques. She has thus far successfully produced rhesus macaque class II molecules and is now working to develop a method to purify these molecules. In addition, 9 more DP/peptide trimers have been identified, as have 4 more DQ trimers and 10 more DR trimers. Work will progress on these subsequent to the successful completion of the seven tetramers we are studying. This work used WNPRC Research Services. PUBLICATIONS: *Jung Joo Hong, Teresa L. Mattila, Aaron Hage, Matthew R. Reynolds, David I. Watkins, Christopher J. Miller, and Pamela J. Skinner, Localized Populations of CD8- SIV-Specific T Cells in Lymphoid Follicles and Vaginal Epithelium of SIV infected macaques. PloS ONE, 2009;4(1): e4131. Qingsheng Li, Pamela J. Skinner, Sang-Jun Ha, Lijie Duan, Teresa L. Mattila, Aaron Hage, Cara White, Daniel L. Barber, Leigh O'Mara, Peter J. Southern, Cavan S. Reilly, Christopher J. Miller, Rafi Ahmed and Ashley T. Haase, Visualizing antigen specific and infected cells in situ predicts outcome in early viral infection. Science, 2009;323(5922):1726-1729. Qingsheng Li, Pamela J. Skinner, Lijie Duan, and Ashley T. Haase, A Technique to Simultaneously Visualize Virus-Specific CD8+ T Cells and Virus-Infected Cells in situ, published in both Science and Journal of Visualized Experimentation, 2009.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Primate Research Center Grants (P51)
Project #
5P51RR000167-49
Application #
8173124
Study Section
Special Emphasis Panel (ZRR1-CM-8 (01))
Project Start
2010-05-01
Project End
2011-04-30
Budget Start
2010-05-01
Budget End
2011-04-30
Support Year
49
Fiscal Year
2010
Total Cost
$51,635
Indirect Cost
Name
University of Wisconsin Madison
Department
Type
Other Domestic Higher Education
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Kang, HyunJun; Mesquitta, Walatta-Tseyon; Jung, Ho Sun et al. (2018) GATA2 Is Dispensable for Specification of Hemogenic Endothelium but Promotes Endothelial-to-Hematopoietic Transition. Stem Cell Reports 11:197-211
Rhoads, Timothy W; Burhans, Maggie S; Chen, Vincent B et al. (2018) Caloric Restriction Engages Hepatic RNA Processing Mechanisms in Rhesus Monkeys. Cell Metab 27:677-688.e5
Ellis-Connell, Amy L; Balgeman, Alexis J; Zarbock, Katie R et al. (2018) ALT-803 Transiently Reduces Simian Immunodeficiency Virus Replication in the Absence of Antiretroviral Treatment. J Virol 92:
Park, Mi Ae; Jung, Ho Sun; Slukvin, Igor (2018) Genetic Engineering of Human Pluripotent Stem Cells Using PiggyBac Transposon System. Curr Protoc Stem Cell Biol 47:e63
Ellis, Amy; Balgeman, Alexis; Rodgers, Mark et al. (2017) Characterization of T Cells Specific for CFP-10 and ESAT-6 in Mycobacterium tuberculosis-Infected Mauritian Cynomolgus Macaques. Infect Immun 85:
Rodrigues, Michelle A (2017) Female Spider Monkeys (Ateles geoffroyi) Cope with Anthropogenic Disturbance Through Fission-Fusion Dynamics. Int J Primatol 38:838-855
Buechler, Connor R; Bailey, Adam L; Lauck, Michael et al. (2017) Genome Sequence of a Novel Kunsagivirus (Picornaviridae: Kunsagivirus) from a Wild Baboon (Papio cynocephalus). Genome Announc 5:
Wu, Hong; Whritenour, Jessica; Sanford, Jonathan C et al. (2017) Identification of MHC Haplotypes Associated with Drug-induced Hypersensitivity Reactions in Cynomolgus Monkeys. Toxicol Pathol 45:127-133
Shackman, A J; Fox, A S; Oler, J A et al. (2017) Heightened extended amygdala metabolism following threat characterizes the early phenotypic risk to develop anxiety-related psychopathology. Mol Psychiatry 22:724-732
Kalin, Ned H (2017) Mechanisms underlying the early risk to develop anxiety and depression: A translational approach. Eur Neuropsychopharmacol 27:543-553

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