EXCEED THE SPACE PROVIDED. CD8+ lymphocytes from healthy HIV-infected individuals show cytotoxic and noncytotoxic anti-HIV activities. Our laboratory has focused on the CD8+ cell noncytotoxic response (CNAR) that appears to be part of the innate immune system responding to HIV infection. When CD8+ cells from an asymptomatic infected individual are co-cultivated with HIV acutely infected CD4+ cells, suppression of virus replication takes place without killing the CD4+ cells. CNAR is not HLA-restricted, not specific for a particular retrovirus (inhibits all HIV-1, HIV-2 and SIV isolates tested), appears very early in HIV infection, and is associated with secretion of a CD8+ cell antiviral factor (CAF) that has yet to be identified. CAF is a protein stable to heat and low pH and inhibits HIV transcription. We have recently found that protease inhibitors block CAF activity suggesting that a protease may be involved in the mediation of CNAR. The clinical importance of CNAR/CAF activity has been shown in several studies of protection of individuals from HIV infection and disease progression. The specific objective of the present proposal is to identify the polypeptide(s) that mediate CAF activity. Our ultimate goal is to clone/sequence and produce CAF for evaluation in therapeutic and diagnostic trials. Biochemical and molecular approaches are proposed. The biochemical approach involves mass spectrometric analysis of biochemically fractionated proteins from CAF-containing fluids. For these studies we propose to use: a) multidimensional chromatography-tandem mass spectometric analysis and an isotope-coded affinity tag (ICAT) methodology to identify peptides unique or overexpressed in CAF-active fluids relative to control fluids; b) protease inhibitor-based affinity chromatography; and, when necessary, c) standard protein purification procedures. By the molecular approach, DNA microarray and kinetic RT-PCR procedures will be used to identify the gene(s) encoding CAF. With CD8+ cells that suppress HIV replication and those that do not, we have identified about 42 differentially expressed genes in CD8+ cells showing CNAR. These genes will be further evaluated to verify that they are upregulated in CD8+ cells that suppress HIV replication. Candidate genes will be expressed in human cells and the secreted proteins evaluated for anti-HIV activity. Monoclonal antibodies will also be derived to establish a CAF- specific ELISA and to use for flow cytometric studies in developing a diagnostic test to measure disease progression. PERFORMANCE SITE ========================================Section End===========================================

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI056992-03
Application #
6837659
Study Section
Special Emphasis Panel (ZRG1-AARR-2 (03))
Program Officer
Plaeger, Susan F
Project Start
2003-07-01
Project End
2006-12-31
Budget Start
2005-01-01
Budget End
2005-12-31
Support Year
3
Fiscal Year
2005
Total Cost
$639,750
Indirect Cost
Name
University of California San Francisco
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
094878337
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Liu, Lianxing; Wang, Lin; Huang, Liusheng et al. (2013) Nevirapine inhibits the anti-HIV activity of CD8+ cells. J Acquir Immune Defic Syndr 63:184-8
Killian, M Scott; Levy, Jay A (2011) HIV/AIDS: 30 years of progress and future challenges. Eur J Immunol 41:3401-11
Levy, J A (2011) Virus-host interactions in HIV pathogenesis: directions for therapy. Adv Dent Res 23:13-8
Liu, Lianxing; Johnson, Carl; Fujimura, Sue et al. (2011) Transfection optimization for primary human CD8+ cells. J Immunol Methods 372:22-9
Killian, M Scott; Johnson, Carl; Teque, Fernando et al. (2011) Natural suppression of human immunodeficiency virus type 1 replication is mediated by transitional memory CD8+ T cells. J Virol 85:1696-705
Levy, Jay A (2009) HIV pathogenesis: 25 years of progress and persistent challenges. AIDS 23:147-60
Martinez-Marino, Beatriz; Foster, Hillary; Hao, Yanling et al. (2007) Differential gene expression in CD8(+) cells from HIV-1-infected subjects showing suppression of HIV replication. Virology 362:217-25
Diaz, Leyla S; Foster, Hillary; Stone, Mars R et al. (2005) VCAM-1 expression on CD8+ cells correlates with enhanced anti-HIV suppressing activity. J Immunol 174:1574-9