Person: Altfeld, Marcus
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Publication Antigen Load and Viral Sequence Diversification Determine the Functional Profile of HIV-1–Specific CD8+ T Cells
(Public Library of Science, 2008) Brumme, Zabrina L; Anastario, Michael; Cohen, Kristin W; Jolin, Jonathan S; Brumme, Chanson J; Streeck, Hendrik; Meier, Angela; Rosenberg, Eric; Alter, Galit; Allen, Todd; Walker, Bruce; Altfeld, MarcusBackground: Virus-specific CD8+ T lymphocytes play a key role in the initial reduction of peak viremia during acute viral infections, but display signs of increasing dysfunction and exhaustion under conditions of chronic antigen persistence. It has been suggested that virus-specific CD8+ T cells with a “polyfunctional” profile, defined by the capacity to secrete multiple cytokines or chemokines, are most competent in controlling viral replication in chronic HIV-1 infection. We used HIV-1 infection as a model of chronic persistent viral infection to investigate the process of exhaustion and dysfunction of virus-specific CD8+ T cell responses on the single-epitope level over time, starting in primary HIV-1 infection. Methods and Findings: We longitudinally analyzed the polyfunctional epitope-specific CD8+ T cell responses of 18 patients during primary HIV-1 infection before and after therapy initiation or sequence variation in the targeted epitope. Epitope-specific CD8+ T cells responded with multiple effector functions to antigenic stimulation during primary HIV-1 infection, but lost their polyfunctional capacity in response to antigen and up-regulated programmed death 1 (PD-1) expression with persistent viremic infection. This exhausted phenotype significantly decreased upon removal of stimulation by antigen, either in response to antiretroviral therapy or by reduction of epitope-specific antigen load in the presence of ongoing viral replication, as a consequence of in vivo selection of cytotoxic T lymphocyte escape mutations in the respective epitopes. Monofunctionality increased in CD8+ T cell responses directed against conserved epitopes from 49% (95% confidence interval 27%–72%) to 76% (56%–95%) (standard deviation [SD] of the effect size 0.71), while monofunctionality remained stable or slightly decreased for responses directed against escaped epitopes from 61% (47%–75%) to 56% (42%–70%) (SD of the effect size 0.18) (p < 0.05). Conclusion: These data suggest that persistence of antigen can be the cause, rather than the consequence, of the functional impairment of virus-specific T cell responses observed during chronic HIV-1 infection, and underscore the importance of evaluating autologous viral sequences in studies aimed at investigating the relationship between virus-specific immunity and associated pathogenesis.
Publication CD8+ T lymphocyte responses target functionally important regions of Protease and Integrase in HIV-1 infected subjects
(BioMed Central, 2004) Rodriguez, William Richard; Addo, Marylyn Martina; Rathod, Almas; Fitzpatrick, Cecily A; Yu, Xu; Perkins, Beth; Rosenberg, Eric; Altfeld, Marcus; Walker, BruceBackground: CD8+ T cell responses are known to be important to the control of HIV-1 infection. While responses to reverse transcriptase and most structural and accessory proteins have been extensively studied, CD8 T cell responses specifically directed to the HIV-1 enzymes Protease and Integrase have not been well characterized, and few epitopes have been described in detail. Methods: We assessed comprehensively the CD8 T cell responses to synthetic peptides spanning Protease and Integrase in 56 HIV-1 infected subjects with acute, chronic, or controlled infection using IFN-γ-Elispot assays and intracellular cytokine staining. Fine-characterization of novel CTL epitopes was performed on peptide-specific CTL lines in Elispot and (^{51})Chromium-release assays. Results: Thirteen (23%) and 38 (68%) of the 56 subjects had detectable responses to Protease and Integrase, respectively, and together these targeted most regions within both proteins. Sequence variability analysis confirmed that responses cluster largely around conserved regions of Integrase, but responses against a large, highly conserved region of the N-terminal DNA-binding domain of Integrase were not readily detected. CD8 T cell responses targeted regions of Protease that contain known Protease inhibitor mutation residues, but strong Protease-specific CD8 T cell responses were rare. Fine-mapping of targeted epitopes allowed the identification of three novel, HLA class I-restricted, frequently-targeted optimal epitopes. There were no significant correlations between CD8 T cell responses to Protease and Integrase and clinical disease category in the study subjects, nor was there a correlation with viral load. Conclusions: These findings confirm that CD8 T cell responses directed against HIV-1 include potentially important functional regions of Protease and Integrase, and that pharmacologic targeting of these enzymes will place them under both drug and immune selection pressure.
Publication OA011-05. TLR-mediated pDC responses to HIV-1 ligands
(BioMed Central, 2009) Chang, J; Kulkarni, Shashikant; Meier, Angela; Lindsay, RJ; Bazner, S; Lifson, JD; Bosch, Ronald; Carrington, M; Altfeld, MarcusPublication HLA Alleles Associated with Delayed Progression to AIDS Contribute Strongly to the Initial CD8+ T Cell Response against HIV-1
(Public Library of Science, 2006) Kalife, Elizabeth T; Qi, Ying; Johnston, Mary N; Burgett, Nicole; Swartz, Martha E; Yang, Amy; Rockstroh, Juergen K; Jessen, Heiko; Carrington, Mary; Altfeld, Marcus; Streeck, Hendrik; Lichterfeld, Mathias; Alter, Galit; Yu, Xu; Meier, Angela; Allen, Todd; Rosenberg, Eric; Walker, BruceBackground: Very little is known about the immunodominance patterns of HIV-1-specific T cell responses during primary HIV-1 infection and the reasons for human lymphocyte antigen (HLA) modulation of disease progression. Methods and Findings: In a cohort of 104 individuals with primary HIV-1 infection, we demonstrate that a subset of CD8+ T cell epitopes within HIV-1 are consistently targeted early after infection, while other epitopes subsequently targeted through the same HLA class I alleles are rarely recognized. Certain HLA alleles consistently contributed more than others to the total virus-specific CD8+ T cell response during primary infection, and also reduced the absolute magnitude of responses restricted by other alleles if coexpressed in the same individual, consistent with immunodomination. Furthermore, individual HLA class I alleles that have been associated with slower HIV-1 disease progression contributed strongly to the total HIV-1-specific CD8+ T cell response during primary infection. Conclusions: These data demonstrate consistent immunodominance patterns of HIV-1-specific CD8+ T cell responses during primary infection and provide a mechanistic explanation for the protective effect of specific HLA class I alleles on HIV-1 disease progression.
Publication OA031-04. Impairment of HIV-1-specific CD8+ T cell function by soluble epithelial adhesion molecules
(BioMed Central, 2009) Trocha, K; Chevalier, M; Caron, T; Pyo, A; Toth, I; Rodig, SJ; Streeck, Hendrik; Kwon, Douglas; Jolin, Julie; Law, K; Kaufmann, Daniel E.; Walker, Bruce; Altfeld, MarcusPublication P09-20 LB. Ultra-Deep Sequencing of Full-Length HIV-1 Genomes Identifies Rapid Viral Evolution During Acute Infection
(BioMed Central, 2009) Henn, MR; Lennon, N; Malboeuf, C; Charlebois, P; Philips, L; Berical, A; Erlich, R; Kemper, M; Axten, K; Brumme, Z; Brumme, C; Jessen, H; Nusbaum, C; Birren, B; Allen, TM; Boutwell, C; Power, K; Gladden, Andrew B; Levin, Jonathan; Casali, Monica; Berlin, Adam; Anderson, S; Streeck, Hendrik; Ryan, Edward; Wang, Y; Green, L; Russ, Christiana; Rosenberg, Eric; Altfeld, Marcus; Walker, BrucePublication Fully Differentiated HIV-1 Specific CD8+ T Effector Cells are More Frequently Detectable in Controlled than in Progressive HIV-1 Infection
(Public Library of Science, 2007) Draenert, Rika; Rathod, Almas; Verrill, Cori L.; Stone, David R.; Johnston, Mary N.; Flynn, Theresa; Addo, Marylyn Martina; Davis, Benjamin; Gandhi, Rajesh; Robbins, Gregory; Basgov, Nesli; Cohen, Daniel E.; Wurcel, Alysse Gail; Rosenberg, Eric; Altfeld, Marcus; Walker, BruceBackground: CD8+ T cells impact control of viral infections by direct elimination of infected cells and secretion of a number of soluble factors. In HIV-1 infection, persistent HIV-1 specific IFN-γ+ CD8+ T cell responses are detected in the setting of disease progression, consistent with functional impairment in vivo. Recent data suggest that impaired maturation, as defined by the lineage markers CD45RA and CCR7, may contribute to a lack of immune control by these responses. Methodology/Principal Findings: We investigated the maturation phenotype of epitope-specific CD8+ T cell responses directed against HIV-1 in 42 chronically infected, untreated individuals, 22 of whom were “Controllers” (median 1140 RNA copies/ml plasma, range less than 50 to 2520), and 20 “progressors” of whom had advanced disease and high viral loads (median 135,500 RNA copies/ml plasma, range 12100 to greater than 750000). Evaluation of a mean of 5 epitopes per person revealed that terminally differentiated CD8+ T cells directed against HIV-1 are more often seen in HIV-1 Controllers (16/22; 73%) compared to HIV-1 progressors (7/20; 35%)(p = 0.015), but the maturation state of epitope-specific responses within a given individual was quite variable. Maturation phenotype was independent of the HLA restriction or the specificity of a given CD8+ T cell response and individual epitopes associated with slow disease progression were not more likely to be terminally differentiated. Conclusions/Significance: These data indicate that although full maturation of epitope-specific CD8+ T cell responses is associated with viral control, the maturation status of HIV-1 specific CD8+ T cell responses within a given individual are quite heterogeneous, suggesting epitope-specific influences on CD8+ T cell function.
Publication P16-18. Regulatory T Cell Frequencies Correlate With T Cell Activation in Chronic HIV-1 Infection
(BioMed Central, 2009) Pyo, A; Trocha, A; Toth, I; Addo, MM; Angin, Mathieu; Streeck, Hendrik; Pereyra, F; Walker, Bruce; Altfeld, Marcus; Alter, G; Kwon, D; Wen, FPublication P04-15. Prevalence of Broadly Neutralizing Antibody Responses During Acute/Early HIV Infection
(BioMed Central, 2009) Mikell, I; Sather, D; Kalams, S; Altfeld, Marcus; Stamatatos, LBackground: Determining how cross-reactive neutralizing antibody (NAb) responses develop during natural HIV-1 infection may provide key information to understand the role they play in controlling the infection and in disease progression. Here we investigated the frequency and breadth of broadly NAb responses during acute and early infection in a well controlled cohort, and attempted to characterize the factors associated with the development of such responses. Methods: The plasma of 38 clade B acutely-infected, antiretroviral-naive subjects from two cohorts was screened for breadth of neutralization against a panel of heterologous isolates in an Env pseudovirus neutralization assay. Clade A, B and C variants were chosen from reference panels of viruses, created to evaluate the NAb responses elicited during infection or immunization. Results: Our preliminary screening strategy demonstrated that broadly neutralizing antibodies can be detected in a third of the infected subjects. Breadth of neutralization can develop as early as one year during natural HIV infection, however the majority of breadth was observed at over two years post infection. Conclusion: Cross-reactive NAbs are developed more frequently during early infection than previously thought. The consequences of this 'early' development of cross-reactive NAbs on plasma viremia and disease progression are under investigation. The work described was supported by National Institute of Health grant number R01 AI047708-11.
Publication P16-12. Relative Dominance of Gag-Specific Cytotoxic T Lymphocytes Is Associated with Viral Load Inversely in HIV-1 Clade B' Infected Chinese
(BioMed Central, 2009) Jia, M; Chen, J; Hong, K; Liu, S; Zhang, X; Zhao, H; Altfeld, Marcus; Walker, Bruce; Yu, Xu; Shao, Y