Anh Q. Le
Simon Fraser University
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Trends in Microbiology | 2015
Jonathan M. Carlson; Anh Q. Le; Aniqa Shahid; Zabrina L. Brumme
HIV-1 develops specific mutations within its genome that allow it to escape detection by human leukocyte antigen (HLA) class I-restricted immune responses, notably those of CD8(+) cytotoxic T lymphocytes (CTL). HLA thus represents a major force driving the evolution and diversification of HIV-1 within individuals and at the population level. Importantly, the study of HIV-1 adaptation to HLA also represents an opportunity to identify what qualities constitute an effective immune response, how the virus in turn adapts to these pressures, and how we may harness this information to design HIV-1 vaccines that stimulate effective cellular immunity.
Retrovirology | 2013
Jaclyn K. Mann; Helen Byakwaga; Xiaomei T. Kuang; Anh Q. Le; Chanson J. Brumme; Philip Mwimanzi; Saleha Omarjee; Eric Martin; Guinevere Q. Lee; Bemuluyigza Baraki; Ryan Danroth; Rosemary M. McCloskey; Conrad Muzoora; David R. Bangsberg; Peter W. Hunt; Philip J. R. Goulder; Bruce D. Walker; P. Richard Harrigan; Jeffrey N. Martin; Thumbi Ndung’u; Mark A. Brockman; Zabrina L. Brumme
BackgroundThe highly genetically diverse HIV-1 group M subtypes may differ in their biological properties. Nef is an important mediator of viral pathogenicity; however, to date, a comprehensive inter-subtype comparison of Nef in vitro function has not been undertaken. Here, we investigate two of Nef’s most well-characterized activities, CD4 and HLA class I downregulation, for clones obtained from 360 chronic patients infected with HIV-1 subtypes A, B, C or D.ResultsSingle HIV-1 plasma RNA Nef clones were obtained from N=360 antiretroviral-naïve, chronically infected patients from Africa and North America: 96 (subtype A), 93 (B), 85 (C), and 86 (D). Nef clones were expressed by transfection in an immortalized CD4+ T-cell line. CD4 and HLA class I surface levels were assessed by flow cytometry. Nef expression was verified by Western blot. Subset analyses and multivariable linear regression were used to adjust for differences in age, sex and clinical parameters between cohorts. Consensus HIV-1 subtype B and C Nef sequences were synthesized and functionally assessed. Exploratory sequence analyses were performed to identify potential genotypic correlates of Nef function. Subtype B Nef clones displayed marginally greater CD4 downregulation activity (p = 0.03) and markedly greater HLA class I downregulation activity (p < 0.0001) than clones from other subtypes. Subtype C Nefs displayed the lowest in vitro functionality. Inter-subtype differences in HLA class I downregulation remained statistically significant after controlling for differences in age, sex, and clinical parameters (p < 0.0001). The synthesized consensus subtype B Nef showed higher activities compared to consensus C Nef, which was most pronounced in cells expressing lower protein levels. Nef clones exhibited substantial inter-subtype diversity: cohort consensus residues differed at 25% of codons, while a similar proportion of codons exhibited substantial inter-subtype differences in major variant frequency. These amino acids, along with others identified in intra-subtype analyses, represent candidates for mediating inter-subtype differences in Nef function.ConclusionsResults support a functional hierarchy of subtype B > A/D > C for Nef-mediated CD4 and HLA class I downregulation. The mechanisms underlying these differences and their relevance to HIV-1 pathogenicity merit further investigation.
Journal of Virology | 2012
Mark A. Brockman; Denis R. Chopera; Alex Olvera; Chanson J. Brumme; Jennifer Sela; Tristan Markle; E. Martin; Jonathan M. Carlson; Anh Q. Le; R. McGovern; Peter K. Cheung; Anthony D. Kelleher; Heiko Jessen; Martin Markowitz; Eric S. Rosenberg; Nicole Frahm; Jorge Sanchez; S. Mallal; M. John; Harrigan Pr; D. Heckerman; Christian Brander; Bruce D. Walker; Zabrina L. Brumme
ABSTRACT An attenuation of the HIV-1 replication capacity (RC) has been observed for immune-mediated escape mutations in Gag restricted by protective HLA alleles. However, the extent to which escape mutations affect other viral proteins during natural infection is not well understood. We generated recombinant viruses encoding plasma HIV-1 RNA integrase sequences from antiretroviral-naïve individuals with early (n = 88) and chronic (n = 304) infections and measured the in vitro RC of each. In contrast to data from previous studies of Gag, we observed little evidence that host HLA allele expression was associated with integrase RC. A modest negative correlation was observed between the number of HLA-B-associated integrase polymorphisms and RC in chronic infection (R = −0.2; P = 0.003); however, this effect was not driven by mutations restricted by protective HLA alleles. Notably, the integrase variants S119R, G163E, and I220L, which represent uncommon polymorphisms associated with HLA-C*05, -A*33, and -B*52, respectively, correlated with lower RC (all q < 0.2). We identified a novel C*05-restricted epitope (HTDNGSNF114–121) that likely contributes to the selection of the S119R variant, the polymorphism most significantly associated with lower RC in patient sequences. An NL4-3 mutant encoding the S119R polymorphism displayed a ∼35%-reduced function that was rescued by a single compensatory mutation of A91E. Together, these data indicate that substantial HLA-driven attenuation of integrase is not a general phenomenon during HIV-1 adaptation to host immunity. However, uncommon polymorphisms selected by HLA alleles that are not conventionally regarded to be protective may be associated with impaired protein function. Vulnerable epitopes in integrase might therefore be considered for future vaccine strategies.
PLOS Genetics | 2014
Laura A. Cotton; Xiaomei T. Kuang; Anh Q. Le; Jonathan M. Carlson; Benjamin Chan; Denis R. Chopera; Chanson J. Brumme; Tristan Markle; Eric Martin; Aniqa Shahid; Gursev Anmole; Philip Mwimanzi; Pauline Nassab; Kali A. Penney; Manal Abdur Rahman; Mj Milloy; Martin T. Schechter; Martin Markowitz; Mary Carrington; Bruce D. Walker; Theresa Wagner; Susan Buchbinder; Jonathan D. Fuchs; Beryl A. Koblin; Kenneth H. Mayer; P. Richard Harrigan; Mark A. Brockman; Art F. Y. Poon; Zabrina L. Brumme
HLA-restricted immune escape mutations that persist following HIV transmission could gradually spread through the viral population, thereby compromising host antiviral immunity as the epidemic progresses. To assess the extent and phenotypic impact of this phenomenon in an immunogenetically diverse population, we genotypically and functionally compared linked HLA and HIV (Gag/Nef) sequences from 358 historic (1979–1989) and 382 modern (2000–2011) specimens from four key cities in the North American epidemic (New York, Boston, San Francisco, Vancouver). Inferred HIV phylogenies were star-like, with approximately two-fold greater mean pairwise distances in modern versus historic sequences. The reconstructed epidemic ancestral (founder) HIV sequence was essentially identical to the North American subtype B consensus. Consistent with gradual diversification of a “consensus-like” founder virus, the median “background” frequencies of individual HLA-associated polymorphisms in HIV (in individuals lacking the restricting HLA[s]) were ∼2-fold higher in modern versus historic HIV sequences, though these remained notably low overall (e.g. in Gag, medians were 3.7% in the 2000s versus 2.0% in the 1980s). HIV polymorphisms exhibiting the greatest relative spread were those restricted by protective HLAs. Despite these increases, when HIV sequences were analyzed as a whole, their total average burden of polymorphisms that were “pre-adapted” to the average host HLA profile was only ∼2% greater in modern versus historic eras. Furthermore, HLA-associated polymorphisms identified in historic HIV sequences were consistent with those detectable today, with none identified that could explain the few HIV codons where the inferred epidemic ancestor differed from the modern consensus. Results are therefore consistent with slow HIV adaptation to HLA, but at a rate unlikely to yield imminent negative implications for cellular immunity, at least in North America. Intriguingly, temporal changes in protein activity of patient-derived Nef (though not Gag) sequences were observed, suggesting functional implications of population-level HIV evolution on certain viral proteins.
Journal of Immunological Methods | 2012
Laura A. Cotton; Manal Abdur Rahman; Carmond Ng; Anh Q. Le; M-J Milloy; Theresa Mo; Zabrina L. Brumme
We describe a rapid, reliable and cost-effective method for intermediate-to-high-resolution sequence-based HLA class I typing using frozen plasma as a source of genomic DNA. The plasma samples investigated had a median age of 8.5 years. Total nucleic acids were isolated from matched frozen PBMC (~2.5 million) and plasma (500 μl) samples from a panel of 25 individuals using commercial silica-based kits. Extractions yielded median [IQR] nucleic acid concentrations of 85.7 [47.0-130.0]ng/μl and 2.2 [1.7-2.6]ng/μl from PBMC and plasma, respectively. Following extraction, ~1000 base pair regions spanning exons 2 and 3 of HLA-A, -B and -C were amplified independently via nested PCR using universal, locus-specific primers and sequenced directly. Chromatogram analysis was performed using commercial DNA sequence analysis software and allele interpretation was performed using a free web-based tool. HLA-A, -B and -C amplification rates were 100% and chromatograms were of uniformly high quality with clearly distinguishable mixed bases regardless of DNA source. Concordance between PBMC and plasma-derived HLA types was 100% at the allele and protein levels. At the nucleotide level, a single partially discordant base (resulting from a failure to call both peaks in a mixed base) was observed out of >46,975 bases sequenced (>99.9% concordance). This protocol has previously been used to perform HLA class I typing from a variety of genomic DNA sources including PBMC, whole blood, granulocyte pellets and serum, from specimens up to 30 years old. This method provides comparable specificity to conventional sequence-based approaches and could be applied in situations where cell samples are unavailable or DNA quantities are limiting.
Journal of Virology | 2014
Takayuki Chikata; Jonathan M. Carlson; Yoshiko Tamura; Mohamed Ali Borghan; Takuya Naruto; Masao Hashimoto; Hayato Murakoshi; Anh Q. Le; S. Mallal; M. John; Hiroyuki Gatanaga; Shinichi Oka; Zabrina L. Brumme; Masafumi Takiguchi
ABSTRACT The extent to which HIV-1 clade B strains exhibit population-specific adaptations to host HLA alleles remains incompletely known, in part due to incomplete characterization of HLA-associated HIV-1 polymorphisms (HLA-APs) in different global populations. Moreover, it remains unknown to what extent the same HLA alleles may drive significantly different escape pathways across populations. As the Japanese population exhibits distinctive HLA class I allele distributions, comparative analysis of HLA-APs between HIV-1 clade B-infected Japanese and non-Asian cohorts could shed light on these questions. However, HLA-APs remain incompletely mapped in Japan. In a cohort of 430 treatment-naive Japanese with chronic HIV-1 clade B infection, we identified 284 HLA-APs in Gag, Pol, and Nef using phylogenetically corrected methods. The number of HLA-associated substitutions in Pol, notably those restricted by HLA-B*52:01, was weakly inversely correlated with the plasma viral load (pVL), suggesting that the transmission and persistence of B*52:01-driven Pol mutations could modulate the pVL. Differential selection of HLA-APs between HLA subtype members, including those differing only with respect to substitutions outside the peptide-binding groove, was observed, meriting further investigation as to their mechanisms of selection. Notably, two-thirds of HLA-APs identified in Japan had not been reported in previous studies of predominantly Caucasian cohorts and were attributable to HLA alleles unique to, or enriched in, Japan. We also identified 71 cases where the same HLA allele drove significantly different escape pathways in Japan versus predominantly Caucasian cohorts. Our results underscore the distinct global evolution of HIV-1 clade B as a result of host population-specific cellular immune pressures. IMPORTANCE Cytotoxic T lymphocyte (CTL) escape mutations in HIV-1 are broadly predictable based on the HLA class I alleles expressed by the host. Because HLA allele distributions differ among worldwide populations, the pattern and diversity of HLA-associated escape mutations are likely to be somewhat distinct to each race and region. HLA-associated polymorphisms (HLA-APs) in HIV-1 have previously been identified at the population level in European, North American, Australian, and African cohorts; however, large-scale analyses of HIV-1 clade B-specific HLA-APs in Asians are lacking. Differential intraclade HIV-1 adaptation to global populations can be investigated via comparative analyses of HLA-associated polymorphisms across ethnic groups, but such studies are rare. Here, we identify HLA-APs in a large Japanese HIV-1 clade B cohort using phylogenetically informed methods and observe that the majority of them had not been previously characterized in predominantly Caucasian populations. The results highlight HIVs unique adaptation to cellular immune pressures imposed by different global populations.
Journal of Leukocyte Biology | 2013
Ilona Tóth; Anh Q. Le; Philip Hartjen; Adriana Thomssen; Verena Matzat; Clara Lehmann; Christoph Scheurich; Claudia Beisel; Philipp Busch; Olaf Degen; Ansgar W. Lohse; Thomas Eiermann; Gerd Fätkenheuer; Dirk Meyer-Olson; Maximilian Bockhorn; Joachim Hauber; Jan van Lunzen; Julian Schulze zur Wiesch
Recent studies indicate that murine Tregs highly express the ENTDP1, as well as the 5′‐NT and thereby, suppress Teff function by extracellular adenosine production. Furthermore, CD73 seems to play a role as costimulatory molecule for T cell differentiation. In this study, we analyzed the expression of CD73 on peripheral and lymph nodal Teffs and Tregs in a cohort of 95 HIV patients at different stages of disease, including LTNP and ECs. In contrast to murine Tregs, CD73 was only expressed on a small minority (∼10%) of peripheral Tregs. In contrast, we see high expression of CD73 on peripheral CD8+ T cells. In HIV infection, CD73 is markedly reduced on all Teffs and Tregs, regardless of the memory subtype. On CD8+ T cells, a positive correlation between CD73 expression and CD4 counts (P=0.0003) was detected. CD73 expression on CD8+ T cells negatively correlated with HLA‐DR (<0.0001) and PD1 (P=0.0457) expression. The lower CD73 expression on CD8+ T cells was partially reversible after initiation of ART (P=0.0016). Functionally, we observed that CD8+CD73+ T cells produce more IL‐2 upon HIV‐specific and unspecific stimulation than their CD73− counterparts and show a higher proliferative capacity. These data indicate that down‐regulation of CD73 on CD8+ T cells correlates with immune activation and leads to functional deficits in HIV infection.
Journal of Virology | 2014
Xiaomei T. Kuang; Xiaoguang Li; Gursev Anmole; Philip Mwimanzi; Aniqa Shahid; Anh Q. Le; Louise Chong; Hua Qian; Toshiyuki Miura; Tristan Markle; Bemuluyigza Baraki; Elizabeth Connick; Eric S. Daar; Heiko Jessen; Anthony D. Kelleher; Susan J. Little; Martin Markowitz; Florencia Pereyra; Eric S. Rosenberg; Bruce D. Walker; Takamasa Ueno; Zabrina L. Brumme; Mark A. Brockman
ABSTRACT Host and viral factors influence the HIV-1 infection course. Reduced Nef function has been observed in HIV-1 controllers during the chronic phase, but the kinetics and mechanisms of Nef attenuation in such individuals remain unclear. We examined plasma RNA-derived Nef clones from 10 recently infected individuals who subsequently suppressed viremia to less than 2,000 RNA copies/ml within 1 year postinfection (acute controllers) and 50 recently infected individuals who did not control viremia (acute progressors). Nef clones from acute controllers displayed a lesser ability to downregulate CD4 and HLA class I from the cell surface and a reduced ability to enhance virion infectivity compared to those from acute progressors (all P < 0.01). HLA class I downregulation activity correlated inversely with days postinfection (Spearmans R = −0.85, P = 0.004) and positively with baseline plasma viral load (Spearmans R = 0.81, P = 0.007) in acute controllers but not in acute progressors. Nef polymorphisms associated with functional changes over time were identified in follow-up samples from six controllers. For one such individual, mutational analyses indicated that four polymorphisms selected by HLA-A*31 and B*37 acted in combination to reduce Nef steady-state protein levels and HLA class I downregulation activity. Our results demonstrate that relative control of initial HIV-1 viremia is associated with Nef clones that display reduced function, which in turn may influence the course of HIV-1 infection. Transmission of impaired Nef sequences likely contributed in part to this observation; however, accumulation of HLA-associated polymorphisms in Nef that impair function also suggests that CD8+ T-cell pressures play a role in this phenomenon. IMPORTANCE Rare individuals can spontaneously control HIV-1 viremia in the absence of antiretroviral treatment. Understanding the host and viral factors that contribute to the controller phenotype may identify new strategies to design effective vaccines or therapeutics. The HIV-1 Nef protein enhances viral pathogenesis through multiple mechanisms. We examined the function of plasma HIV-1 RNA-derived Nef clones isolated from 10 recently infected individuals who subsequently controlled HIV viremia compared to the function of those from 50 individuals who failed to control viremia. Our results demonstrate that early Nef clones from HIV controllers displayed lower HLA class I and CD4 downregulation activity, as well as a reduced ability to enhance virion infectivity. The accumulation of HLA-associated polymorphisms in Nef during the first year postinfection was associated with impaired protein function in some controllers. This report highlights the potential for host immune responses to modulate HIV pathogenicity and disease outcome by targeting cytotoxic T lymphocyte (CTL) epitopes in Nef.
The Journal of Infectious Diseases | 2013
Brendan J. W. Osborne; Prameet M. Sheth; Tae Joon Yi; Colin Kovacs; Erika Benko; Charles la Porte; Sanja Huibner; Anh Q. Le; Ryan Danroth; Bemuluyigza Baraki; Tony Mazzulli; Zabrina L. Brumme; Rupert Kaul
BACKGROUND Effective antiretroviral therapy (ART) dramatically reduces human immunodeficiency virus (HIV) transmission. However, isolated shedding of HIV type 1 (HIV-1) in semen (IHS) can occur in the absence of detectable viremia or genital infections. We hypothesized that ART intensification with medications active in semen might prevent IHS. METHODS Paired blood and semen samples were collected monthly for 6 months from HIV-infected men starting ART that was intensified (iART) with maraviroc and raltegravir in an open-label fashion. Semen parameters were compared to those of historical controls starting standard ART (sART). RESULTS Compared with 25 controls who started sART, the semen HIV-1 load in 13 subjects who started iART was more rapidly suppressed (P = .043). IHS was detected at >1 visit in 2 participants (15%) receiving iART and in 12 controls (48%) receiving sART (P = .040). Among iART recipients, IHS was associated with lower raltegravir concentrations in blood and semen, compared with complete HIV-1 suppression (P = .03). Prolonged, high-level IHS (ie, shedding of >5000 RNA copies/mL) was observed in 1 iART recipient (8%), despite rapid viremia suppression and therapeutic drug levels; for 10 months, this virus remained R5 tropic, drug susceptible, and similar in sequence to virus recovered from blood. IHS was not seen after >3 years of effective ART in a parallel, prospective cohort study. CONCLUSIONS iART transiently reduced the occurrence of IHS early after ART initiation but did not prevent high-level IHS. IHS was not seen after more prolonged sART.
Virology | 2014
Jaclyn K. Mann; Denis R. Chopera; Saleha Omarjee; Xiaomei T. Kuang; Anh Q. Le; Gursev Anmole; Ryan Danroth; Philip Mwimanzi; Tarylee Reddy; Jonathan M. Carlson; Mopo Radebe; P Goulder; Bruce D. Walker; Salim Safurdeen. Abdool Karim; Vladimir Novitsky; Carolyn Williamson; Mark A. Brockman; Zabrina L. Brumme; Thumbi Ndung’u
Nef plays a major role in HIV-1 pathogenicity. We studied HIV-1 subtype C infected individuals in acute/early (n = 120) or chronic (n = 207) infection to investigate the relationship between Nef-mediated CD4/HLA-I down-regulation activities and disease progression, and the influence of immune-driven sequence variation on these Nef functions. A single Nef sequence per individual was cloned into an expression plasmid, followed by transfection of a T cell line and measurement of CD4 and HLA-I expression. In early infection, a trend of higher CD4 down-regulation ability correlating with higher viral load set point was observed (r = 0.19, p = 0.05), and higher HLA-I down-regulation activity was significantly associated with faster rate of CD4 decline (p = 0.02). HLA-I down-regulation function correlated inversely with the number HLA-associated polymorphisms previously associated with reversion in the absence of the selecting HLA allele (r = -0.21, p = 0.0002). These data support consideration of certain Nef regions in HIV-1 vaccine strategies designed to attenuate the infection course.