HIV can rapidly escape neutralizing antibody responses in vivo. Although escape facilitates viral persistence within the infected patient, escape from neutralization implies that the antibody response is exerting significant selective pressure on the virus. Consequently, a vaccine-boosted humoral response may be effective in preventing infection, as the small population of infecting viruses cannot evolve quickly. An effective vaccine will also be able to induce significant heterologous neutralization responses. Although HIV is generally resistant to neutralization by sera from HIV-positive patients, some individuals mount broadly reactive neutralization responses The recent availability of high-throughput assays to quantify neutralizing antibody responses coupled with the ability to sequence full-length clones of the HIV-1 envelope gene permits a quantitative analysis of autologous and heterologous neutralization responses, and their relationship to viral genetic variation. We propose to quantify the roles of point mutations and insertions/deletions in the HIV-1 envelope in viral escape based on data from individuals with primary HIV infection. Neutralizing antibody responses will be measured using a rapid, highly reproducible recombinant virus/reporter assay, and genetic variation in envelope will be measured using both population-based and clonal sequencing. Analysis of these data presents a number of statistical challenges. We will develop statistical models to (a) obtain a quantative description of the dynamics of autologous neutralizing antibody responses and the patterns of viral escape and (b) to quantify variation between patients' sera and between viruses in heterologous neutralization, and relate this variation to host and viral (e.g. viral genotype) factors. These models will take the hierarchical nature of HIV data into account, will use spline-based methods to capture nonlinear effects, and will incorporate submodels for censoring and measurement error. ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
1R01AI057167-01A1
Application #
6842073
Study Section
AIDS Clinical Studies and Epidemiology Study Section (ACE)
Program Officer
Gezmu, Misrak
Project Start
2004-07-01
Project End
2009-06-30
Budget Start
2004-07-01
Budget End
2005-06-30
Support Year
1
Fiscal Year
2004
Total Cost
$248,981
Indirect Cost
Name
University of California San Diego
Department
Pathology
Type
Schools of Medicine
DUNS #
804355790
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Osorio, Georgina; Hoenigl, Martin; Quartarolo, Jennifer et al. (2017) Evaluation of opt-out inpatient HIV screening at an urban teaching hospital. AIDS Care 29:1014-1018
Scheffler, Konrad; Murrell, Ben; Kosakovsky Pond, Sergei L (2014) On the validity of evolutionary models with site-specific parameters. PLoS One 9:e94534
Murrell, Ben; Moola, Sasha; Mabona, Amandla et al. (2013) FUBAR: a fast, unconstrained bayesian approximation for inferring selection. Mol Biol Evol 30:1196-205
Murrell, Ben; Wertheim, Joel O; Moola, Sasha et al. (2012) Detecting individual sites subject to episodic diversifying selection. PLoS Genet 8:e1002764
Grönwall, Caroline; Kosakovsky Pond, Sergei L; Young, Jason A et al. (2012) In vivo VL-targeted microbial superantigen induced global shifts in the B cell repertoire. J Immunol 189:850-9
Hightower, George K; Wong, Joseph K; Letendre, Scott L et al. (2012) Higher HIV-1 genetic diversity is associated with AIDS and neuropsychological impairment. Virology 433:498-505
Mehta, Sanjay R; Kosakovsky Pond, Sergei L; Young, Jason A et al. (2012) Associations between phylogenetic clustering and HLA profile among HIV-infected individuals in San Diego, California. J Infect Dis 205:1529-33
Pacold, Mary E; Pond, Sergei L Kosakovsky; Wagner, Gabriel A et al. (2012) Clinical, virologic, and immunologic correlates of HIV-1 intraclade B dual infection among men who have sex with men. AIDS 26:157-65
Wertheim, Joel O; Fourment, Mathieu; Kosakovsky Pond, Sergei L (2012) Inconsistencies in estimating the age of HIV-1 subtypes due to heterotachy. Mol Biol Evol 29:451-6
Kosakovsky Pond, Sergei L; Murrell, Ben; Fourment, Mathieu et al. (2011) A random effects branch-site model for detecting episodic diversifying selection. Mol Biol Evol 28:3033-43

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