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1.
Nature ; 623(7989): 1026-1033, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37993716

ABSTRACT

Human immunodeficiency virus 1 (HIV-1) infection is initiated by binding of the viral envelope glycoprotein (Env) to the cell-surface receptor CD41-4. Although high-resolution structures of Env in a complex with the soluble domains of CD4 have been determined, the binding process is less understood in native membranes5-13. Here we used cryo-electron tomography to monitor Env-CD4 interactions at the membrane-membrane interfaces formed between HIV-1 and CD4-presenting virus-like particles. Env-CD4 complexes organized into clusters and rings, bringing the opposing membranes closer together. Env-CD4 clustering was dependent on capsid maturation. Subtomogram averaging and classification revealed that Env bound to one, two and finally three CD4 molecules, after which Env adopted an open state. Our data indicate that asymmetric HIV-1 Env trimers bound to one and two CD4 molecules are detectable intermediates during virus binding to host cell membranes, which probably has consequences for antibody-mediated immune responses and vaccine immunogen design.


Subject(s)
CD4 Antigens , Cell Membrane , HIV Envelope Protein gp120 , HIV-1 , Protein Multimerization , Humans , AIDS Vaccines/chemistry , AIDS Vaccines/immunology , Capsid/chemistry , Capsid/metabolism , Capsid/ultrastructure , CD4 Antigens/chemistry , CD4 Antigens/metabolism , CD4 Antigens/ultrastructure , Cell Membrane/chemistry , Cell Membrane/metabolism , Cell Membrane/ultrastructure , Cryoelectron Microscopy , Electron Microscope Tomography , HIV Antibodies/immunology , HIV Envelope Protein gp120/chemistry , HIV Envelope Protein gp120/metabolism , HIV Envelope Protein gp120/ultrastructure , HIV Infections/virology , HIV-1/chemistry , HIV-1/ultrastructure , Virion/chemistry , Virion/metabolism , Virion/ultrastructure
2.
Nat Struct Mol Biol ; 29(11): 1080-1091, 2022 11.
Article in English | MEDLINE | ID: mdl-36344847

ABSTRACT

Simian immunodeficiency viruses (SIVs) are lentiviruses that naturally infect non-human primates of African origin and seeded cross-species transmissions of HIV-1 and HIV-2. Here we report prefusion stabilization and cryo-EM structures of soluble envelope (Env) trimers from rhesus macaque SIV (SIVmac) in complex with neutralizing antibodies. These structures provide residue-level definition for SIV-specific disulfide-bonded variable loops (V1 and V2), which we used to delineate variable-loop coverage of the Env trimer. The defined variable loops enabled us to investigate assembled Env-glycan shields throughout SIV, which we found to comprise both N- and O-linked glycans, the latter emanating from V1 inserts, which bound the O-link-specific lectin jacalin. We also investigated in situ SIVmac-Env trimers on virions, determining cryo-electron tomography structures at subnanometer resolutions for an antibody-bound complex and a ligand-free state. Collectively, these structures define the prefusion-closed structure of the SIV-Env trimer and delineate variable-loop and glycan-shielding mechanisms of immune evasion conserved throughout SIV evolution.


Subject(s)
Antibodies, Neutralizing , HIV-1 , Animals , Cryoelectron Microscopy , Macaca mulatta/metabolism , HIV-1/metabolism , Electron Microscope Tomography , env Gene Products, Human Immunodeficiency Virus/chemistry , env Gene Products, Human Immunodeficiency Virus/metabolism , HIV Antibodies
3.
Nat Struct Mol Biol ; 27(8): 726-734, 2020 08.
Article in English | MEDLINE | ID: mdl-32601441

ABSTRACT

The HIV-1 envelope glycoprotein (Env) trimer, composed of gp120 and gp41 subunits, mediates viral entry into cells. Recombinant Env trimers have been studied structurally, but characterization of Env embedded in intact virus membranes has been limited to low resolution. Here, we deploy cryo-electron tomography and subtomogram averaging to determine the structures of Env trimers on aldrithiol-2 (AT-2)-inactivated virions in ligand-free, antibody-bound and CD4-bound forms at subnanometer resolution. Tomographic reconstructions document molecular features consistent with high-resolution structures of engineered soluble and detergent-solubilized Env trimers. One of three conformational states previously predicted by smFRET was not observed by cryo-ET, potentially owing to AT-2 inactivation. We did observe Env trimers to open in situ in response to CD4 binding, with an outward movement of gp120-variable loops and an extension of a critical gp41 helix. Overall features of Env trimer embedded in AT-2-treated virions appear well-represented by current engineered trimers.


Subject(s)
2,2'-Dipyridyl/analogs & derivatives , Disulfides/pharmacology , HIV Envelope Protein gp120/chemistry , HIV Envelope Protein gp41/chemistry , HIV-1/drug effects , Virion/drug effects , 2,2'-Dipyridyl/pharmacology , Cell Line , Cryoelectron Microscopy , Electron Microscope Tomography , HIV Envelope Protein gp120/ultrastructure , HIV Envelope Protein gp41/ultrastructure , HIV Infections/virology , HIV-1/chemistry , Humans , Models, Molecular , Oxidants/pharmacology , Protein Conformation/drug effects , Protein Multimerization/drug effects , Solubility , Virion/chemistry
4.
PLoS One ; 14(12): e0225806, 2019.
Article in English | MEDLINE | ID: mdl-31830058

ABSTRACT

Plasmacytoid dendritic cells (PDCs) and their production of interferon-alpha (IFN-α) are believed to play an important role in human immunodeficiency virus, type I (HIV-1) pathogenesis. PDCs produce IFN-α and other proinflammatory cytokines through stimulation of Toll-like receptor 7 (TLR7) and TLR9 present in endosomal compartments. TLR7 recognizes single-stranded viral RNA, while TLR9 recognizes unmethylated DNA. In this study, we examined the mechanisms that may underlie variations in IFN-α production in response to HIV, and the impact of these variations on HIV pathogenesis. In four distinct cohorts, we examined PDC production of IFN-α upon stimulation with inactivated HIV-1 particles and unmethylated DNA. The signaling cascade of TLR7 bifurcates at the myeloid differentiation protein 88 (MyD88) adaptor protein to induce expression of either IFN-α or TNF-α. To determine whether variations in IFN-α production are modulated at the level of the receptor complex or downstream of it, we correlated production of IFN-α and TNF-α following stimulation of TLR7 or TLR9 receptors. Flow cytometry detection of intracellular cytokines showed strong, direct correlations between IFN-α and TNF-α expression in all four cohorts, suggesting that variations in IFN-α production are not due to variations downstream of the receptor complex. We then investigated the events upstream of TLR binding by using lipid-like vesicles to deliver TLR ligands directly to the TLR receptors, bypassing the need for CD4 binding and endocytosis. Similar tight correlations were found in IFN-α and TNF-α production in response to the TLR ligands. Taken together, these results strongly suggest that differences in IFN-α production depend on the regulatory processes at the level of the TLR7 receptor complex. Additionally, we found no association between IFN-α production before HIV infection and disease progression.


Subject(s)
Adaptor Proteins, Vesicular Transport/metabolism , Dendritic Cells/metabolism , Dendritic Cells/virology , HIV-1/physiology , Interferon-alpha/biosynthesis , Toll-Like Receptor 7/metabolism , CD4-Positive T-Lymphocytes/drug effects , CD4-Positive T-Lymphocytes/metabolism , Cohort Studies , Dendritic Cells/drug effects , Disease Progression , Fatty Acids, Monounsaturated/pharmacology , Female , HIV Infections/metabolism , HIV Infections/virology , Humans , Interferon-alpha/metabolism , Male , Myeloid Differentiation Factor 88/metabolism , Quaternary Ammonium Compounds/pharmacology , Signal Transduction/drug effects , Toll-Like Receptor 7/antagonists & inhibitors , Toll-Like Receptor 9/antagonists & inhibitors , Toll-Like Receptor 9/metabolism , Tumor Necrosis Factor-alpha/biosynthesis , Viral Load/drug effects
5.
J Virol ; 94(1)2019 12 12.
Article in English | MEDLINE | ID: mdl-31597757

ABSTRACT

Genetically barcoded viral populations are powerful tools for evaluating the overall viral population structure as well as assessing the dynamics and evolution of individual lineages in vivo over time. Barcoded viruses are generated by inserting a small, genetically unique tag into the viral genome, which is retained in progeny virus. We recently reported barcoding the well-characterized molecular clone simian immunodeficiency virus (SIV) SIVmac239, resulting in a synthetic swarm (SIVmac239M) containing approximately 10,000 distinct viral clonotypes for which all genetic differences were within a 34-base barcode that could be tracked using next-generation deep sequencing. Here, we assessed the population size, distribution, and authenticity of individual viral clonotypes within this synthetic swarm using samples from 120 rhesus macaques infected intravenously. The number of replicating barcodes in plasma correlated with the infectious inoculum dose, and the primary viral growth rate was similar in all infected animals regardless of the inoculum size. Overall, 97% of detectable clonotypes in the viral stock were identified in the plasma of at least one infected animal. Additionally, we prepared a second-generation barcoded SIVmac239 stock (SIVmac239M2) with over 16 times the number of barcoded variants of the original stock and an additional barcoded stock with suboptimal nucleotides corrected (SIVmac239Opt5M). We also generated four barcoded stocks from subtype B and C simian-human immunodeficiency virus (SHIV) clones. These new SHIV clones may be particularly valuable models to evaluate Env-targeting approaches to study viral transmission or viral reservoir clearance. Overall, this work further establishes the reliability of the barcoded virus approach and highlights the feasibility of adapting this technique to other viral clones.IMPORTANCE We recently developed and published a description of a barcoded simian immunodeficiency virus that has a short random sequence inserted directly into the viral genome. This allows for the tracking of individual viral lineages with high fidelity and ultradeep sensitivity. This virus was used to infect 120 rhesus macaques, and we report here the analysis of the barcodes of these animals during primary infection. We found that the vast majority of barcodes were functional in vivo We then expanded the barcoding approach in a second-generation SIVmac239 stock (SIVmac239M2) with over 16 times the number of barcoded variants of the original stock and a barcoded stock of SIVmac239Opt5M whose sequence had 5 changes from the wild-type SIVmac239 sequence. We also generated 4 barcoded stocks from subtype B and C SHIV clones each containing a human immunodeficiency virus (HIV) type 1 envelope. These virus models are functional and can be useful for studying viral transmission and HIV cure/reservoir research.


Subject(s)
DNA Barcoding, Taxonomic/methods , Genome, Viral , HIV-1/genetics , Mutagenesis, Insertional , RNA, Viral/genetics , Reassortant Viruses/genetics , Simian Immunodeficiency Virus/genetics , Animals , Genetic Markers , HIV Infections/immunology , HIV Infections/virology , HIV-1/classification , HIV-1/immunology , High-Throughput Nucleotide Sequencing , Humans , Macaca mulatta , Phylogeny , RNA, Viral/classification , Reassortant Viruses/classification , Reassortant Viruses/immunology , Reproducibility of Results , Simian Acquired Immunodeficiency Syndrome/immunology , Simian Acquired Immunodeficiency Syndrome/virology , Simian Immunodeficiency Virus/classification , Simian Immunodeficiency Virus/immunology , Viral Load , Virus Replication
7.
Cell Rep ; 24(8): 1958-1966.e5, 2018 08 21.
Article in English | MEDLINE | ID: mdl-30134158

ABSTRACT

Many broadly neutralizing antibodies (bnAbs) against HIV-1 recognize and/or penetrate the glycan shield on native, virion-associated envelope glycoprotein (Env) spikes. The same bnAbs also bind to recombinant, soluble trimeric immunogens based on the SOSIP design. While SOSIP trimers are close structural and antigenic mimics of virion Env, the extent to which their glycan structures resemble ones on infectious viruses is undefined. Here, we compare the overall glycosylation of gp120 and gp41 subunits from BG505 (clade A) virions produced in a lymphoid cell line with those from recombinant BG505 SOSIP trimers, including CHO-derived clinical grade material. We also performed detailed site-specific analyses of gp120. Glycans relevant to key bnAb epitopes are generally similar on the recombinant SOSIP and virion-derived Env proteins, although the latter do contain hotspots of elevated glycan processing. Knowledge of native versus recombinant Env glycosylation will guide vaccine design and manufacturing programs.


Subject(s)
HIV-1/immunology , Virion/metabolism , Glycosylation , Humans
8.
AIDS Res Hum Retroviruses ; 34(11): 993-1001, 2018 11.
Article in English | MEDLINE | ID: mdl-29869527

ABSTRACT

Although effective for suppressing viral replication, combination antiretroviral treatment (cART) does not represent definitive therapy for HIV infection due to persistence of replication-competent viral reservoirs. The advent of effective cART regimens for simian immunodeficiency virus (SIV)-infected nonhuman primates (NHP) has enabled the development of relevant models for studying viral reservoirs and intervention strategies targeting them. Viral reservoir measurements are crucial for such studies but are problematic. Quantitative polymerase chain reaction (PCR) assays overestimate the size of the replication competent viral reservoir, as not all detected viral genomes are intact. Quantitative viral outgrowth assays measure replication competence, but they suffer from limited precision and dynamic range, and require large numbers of cells. Ex vivo virus induction assays to detect cells harboring inducible virus represent an experimental middle ground, but detection of inducible viral RNA in such assays does not necessarily indicate production of virions, while detection of more immunologically relevant viral proteins, including p27CA, by conventional enzyme-linked immunosorbent assays (ELISA) lacks sensitivity. An ultrasensitive digital SIV Gag p27 assay was developed, which is 100-fold more sensitive than a conventional ELISA. In ex vivo virus induction assays, the quantification of SIV Gag p27 produced by stimulated CD4+ T cells from rhesus macaques receiving cART enabled earlier and more sensitive detection than conventional ELISA-based approaches and was highly correlated with SIV RNA, as measured by quantitative reverse transcription PCR. This ultrasensitive p27 assay provides a new tool to assess ongoing replication and reactivation of infectious virus from reservoirs in SIV-infected NHP.


Subject(s)
Gene Products, gag/analysis , Immunoassay/methods , Simian Acquired Immunodeficiency Syndrome/virology , Simian Immunodeficiency Virus/isolation & purification , Animals , Anti-Retroviral Agents/therapeutic use , CD4-Positive T-Lymphocytes/virology , Disease Models, Animal , Gene Products, gag/immunology , Immunoassay/standards , Macaca mulatta , RNA, Viral/analysis , RNA, Viral/genetics , Sensitivity and Specificity , Simian Acquired Immunodeficiency Syndrome/drug therapy , Simian Immunodeficiency Virus/drug effects , Simian Immunodeficiency Virus/immunology , Simian Immunodeficiency Virus/physiology , Virus Activation
9.
PLoS Pathog ; 14(2): e1006902, 2018 02.
Article in English | MEDLINE | ID: mdl-29474450

ABSTRACT

B cell follicles in secondary lymphoid tissues represent an immune privileged sanctuary for AIDS viruses, in part because cytotoxic CD8+ T cells are mostly excluded from entering the follicles that harbor infected T follicular helper (TFH) cells. We studied the effects of native heterodimeric IL-15 (hetIL-15) treatment on uninfected rhesus macaques and on macaques that had spontaneously controlled SHIV infection to low levels of chronic viremia. hetIL-15 increased effector CD8+ T lymphocytes with high granzyme B content in blood, mucosal sites and lymph nodes, including virus-specific MHC-peptide tetramer+ CD8+ cells in LN. Following hetIL-15 treatment, multiplexed quantitative image analysis (histo-cytometry) of LN revealed increased numbers of granzyme B+ T cells in B cell follicles and SHIV RNA was decreased in plasma and in LN. Based on these properties, hetIL-15 shows promise as a potential component in combination immunotherapy regimens to target AIDS virus sanctuaries and reduce long-term viral reservoirs in HIV-1 infected individuals. TRIAL REGISTRATION: ClinicalTrials.gov NCT02452268.


Subject(s)
Interleukin-15/therapeutic use , Lymph Nodes/metabolism , RNA, Viral/metabolism , Simian Acquired Immunodeficiency Syndrome/drug therapy , Simian Immunodeficiency Virus/genetics , T-Lymphocytes, Cytotoxic/drug effects , Adjuvants, Immunologic/therapeutic use , Animals , B-Lymphocytes/drug effects , B-Lymphocytes/pathology , CD8-Positive T-Lymphocytes/drug effects , CD8-Positive T-Lymphocytes/pathology , Female , Germinal Center/drug effects , Germinal Center/pathology , Immunotherapy/methods , Interleukin-15/chemistry , Interleukin-15/metabolism , Lymph Nodes/pathology , Lymph Nodes/virology , Lymphocyte Count , Macaca mulatta , Male , Protein Multimerization , RNA, Viral/analysis , Simian Acquired Immunodeficiency Syndrome/immunology , Simian Acquired Immunodeficiency Syndrome/virology , Simian Immunodeficiency Virus/metabolism , T-Lymphocytes, Cytotoxic/pathology , T-Lymphocytes, Helper-Inducer/drug effects , T-Lymphocytes, Helper-Inducer/pathology
10.
J Virol ; 92(3)2018 02 01.
Article in English | MEDLINE | ID: mdl-29142124

ABSTRACT

An incomplete understanding of native human immunodeficiency virus (HIV) and simian immunodeficiency virus (SIV) envelope glycoproteins (Envs) impedes the development of structural models of Env and vaccine design. This shortcoming is due in part to the low number of Env trimers on virus particles. For SIV, this low expression level can be counteracted by truncating the cytoplasmic tail (CT) of Env. CT truncation has been shown to increase Env incorporation into the virion and is commonly used in vaccine and imaging studies, but its effects on viral antigenicity have not been fully elucidated. To study the effects of a CT truncation of Env in viruses in similar genetic contexts, we introduced stop codons into the CT of a SIVsmE660 molecular clone and two neutralizing antibody (NAb) escape variants. These viruses shared 98% sequence identity in Env but were characterized as either tier 1 (sensitive to neutralization), tier 2 (moderately resistant to neutralization), or tier 3 (resistant to neutralization). However, the introduction of premature stop codons in Env at position Q741/Q742 converted all three transfection-derived viruses to a tier 3-like phenotype, and these viruses were uniformly resistant to neutralization by sera from infected macaques and monoclonal antibodies (MAbs). These changes in neutralization sensitivity were not accompanied by an increase in either the virion Env content of infection-derived viruses or the infectivity of transfection-derived viruses in human cells, suggesting that CT mutations may result in global changes to the Env conformation. Our results demonstrate that some CT truncations can affect viral antigenicity and, as such, may not be suitable surrogate models of native HIV/SIV Env.IMPORTANCE Modifications to the SIV envelope protein (Env) are commonly used in structural and vaccine studies to stabilize and increase the expression of Env, often without consideration of effects on antigenicity. One such widespread modification is the truncation of the Env C-terminal tail. Here, we studied the effects of a particular cytoplasmic tail truncation in three SIVsm strains that have highly similar Env sequences but exhibit different sensitivities to neutralizing antibodies. After truncation of the Env CT, these viruses were all very resistant to neutralization by sera from infected macaques and monoclonal antibodies. The viruses with a truncated Env CT also did not exhibit the desired and typical increase in Env expression. These results underscore the importance of carefully evaluating the use of truncated Env as a model in HIV/SIV vaccine and imaging studies and of the continued need to find better models of native Env that contain fewer modifications.


Subject(s)
Antibodies, Neutralizing/immunology , Antibodies, Viral/immunology , Codon, Terminator/genetics , Membrane Glycoproteins/genetics , Retroviridae Proteins/genetics , Simian Immunodeficiency Virus/genetics , Animals , Cell Line , Genes, env , Humans , Macaca mulatta , Neutralization Tests , Simian Immunodeficiency Virus/physiology , Virus Replication
11.
Sci Rep ; 6: 32956, 2016 09 08.
Article in English | MEDLINE | ID: mdl-27604319

ABSTRACT

The surface envelope glycoprotein (SU) of Human immunodeficiency virus type 1 (HIV-1), gp120(SU) plays an essential role in virus binding to target CD4+ T-cells and is a major vaccine target. Gp120 has remarkably high levels of N-linked glycosylation and there is considerable evidence that this "glycan shield" can help protect the virus from antibody-mediated neutralization. In recent years, however, it has become clear that gp120 glycosylation can also be included in the targets of recognition by some of the most potent broadly neutralizing antibodies. Knowing the site-specific glycosylation of gp120 can facilitate the rational design of glycopeptide antigens for HIV vaccine development. While most prior studies have focused on glycan analysis of recombinant forms of gp120, here we report the first systematic glycosylation site analysis of gp120 derived from virions produced by infected T lymphoid cells and show that a single site is exclusively substituted with complex glycans. These results should help guide the design of vaccine immunogens.


Subject(s)
Antibodies, Neutralizing/immunology , HIV Antibodies/immunology , HIV Envelope Protein gp120/genetics , HIV Envelope Protein gp120/immunology , HIV-1/genetics , HIV-1/immunology , Amino Acid Sequence , Antibodies, Neutralizing/metabolism , Antigen-Antibody Reactions , Binding Sites , Carbohydrate Sequence , Cell Line , Genome, Viral , Glycosylation , HIV Antibodies/metabolism , HIV Envelope Protein gp120/chemistry , HIV-1/chemistry , Humans , Oligosaccharides/chemistry , Oligosaccharides/immunology , Polysaccharides/chemistry , Polysaccharides/immunology , Protein Binding , Protein Structure, Secondary , Proteome/chemistry , Proteome/genetics , Proteome/immunology , Proteomics
12.
Pathog Immun ; 1(1): 68-106, 2016.
Article in English | MEDLINE | ID: mdl-27430032

ABSTRACT

A primary obstacle to an HIV-1 cure is long-lived viral reservoirs, which must be eliminated or greatly reduced. Cure strategies have largely focused on monitoring changes in T cell reservoirs in peripheral blood (PB), even though the lymphoid tissues (LT) are primary sites for viral persistence. To track and discriminate viral reservoirs within tissue compartments we developed a specific and sensitive next-generation in situ hybridization approach to detect vRNA, including vRNA+ cells and viral particles ("RNAscope"), vDNA+ cells ("DNAscope") and combined vRNA and vDNA with immunohistochemistry to detect and phenotype active and latently infected cells in the same tissue section. RNAscope is highly sensitive with greater speed of analysis compared to traditional in situ hybridization. The highly sensitive and specific DNAscope detected SIV/HIV vDNA+ cells, including duplexed detection of vDNA and vRNA or immunophenotypic markers in the same section. Analysis of LT samples from macaques prior to and during combination antiretroviral therapy demonstrated that B cell follicles are an important anatomical compartment for both latent and active viral persistence during treatment. These new tools should allow new insights into viral reservoir biology and evaluation of cure strategies.

13.
PLoS One ; 10(4): e0124784, 2015.
Article in English | MEDLINE | ID: mdl-25915761

ABSTRACT

As HIV-1-encoded envelope protein traverses the secretory pathway, it may be modified with N- and O-linked carbohydrate. When the gp120s of HIV-1 NL4-3, HIV-1 YU2, HIV-1 Bal, HIV-1 JRFL, and HIV-1 JRCSF were expressed as secreted proteins, the threonine at consensus position 499 was found to be O-glycosylated. For SIVmac239, the corresponding threonine was also glycosylated when gp120 was recombinantly expressed. Similarly-positioned, highly-conserved threonines in the influenza A virus H1N1 HA1 and H5N1 HA1 envelope proteins were also found to carry O-glycans when expressed as secreted proteins. In all cases, the threonines were modified predominantly with disialylated core 1 glycans, together with related core 1 and core 2 structures. Secreted HIV-1 gp140 was modified to a lesser extent with mainly monosialylated core 1 O-glycans, suggesting that the ectodomain of the gp41 transmembrane component may limit the accessibility of Thr499 to glycosyltransferases. In striking contrast to these findings, gp120 on purified virions of HIV-1 Bal and SIV CP-MAC lacked any detectable O-glycosylation of the C-terminal threonine. Our results indicate the absence of O-linked carbohydrates on Thr499 as it exists on the surface of virions and suggest caution in the interpretation of analyses of post-translational modifications that utilize recombinant forms of envelope protein.


Subject(s)
Carbohydrates/chemistry , HIV Envelope Protein gp120/chemistry , HIV Envelope Protein gp120/genetics , Threonine/chemistry , HEK293 Cells , HIV-1/chemistry , HIV-1/genetics , HIV-1/metabolism , HeLa Cells , Humans , Influenza A virus/chemistry , Influenza A virus/metabolism , Membrane Glycoproteins/chemistry , Protein Processing, Post-Translational , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Viral Envelope Proteins/chemistry , Virion/chemistry , Virion/genetics , Virion/metabolism
14.
Nat Commun ; 6: 5854, 2015 Jan 08.
Article in English | MEDLINE | ID: mdl-25569620

ABSTRACT

The formation of the HIV-1 core is the final step in the viral maturation pathway, resulting in the formation of infectious virus. Most current models for HIV-1 core formation suggest that, upon proteolytic cleavage from the immature Gag, capsid (CA) dissociates into the viral interior before reforming into the core. Here we present evidence for an alternate view of core formation by taking advantage of our serendipitous observation of large membrane-enclosed structures in HIV-1 supernatants from infected cells. Cryo-electron tomographic studies show that these structures, which contain ordered arrays of what is likely the membrane-associated matrix protein, contain multiple cores that can be captured at different stages of maturation. Our studies suggest that HIV maturation involves a non-diffusional phase transition in which the detaching layer of the cleaved CA lattice is gradually converted into a roll that ultimately forms the surface of the mature conical core.


Subject(s)
HIV-1/physiology , Models, Biological , Virus Assembly/physiology , Capsid/physiology , Cell Line , Centrifugation, Density Gradient , Cryoelectron Microscopy , Humans , Microscopy, Electron, Transmission , gag Gene Products, Human Immunodeficiency Virus/metabolism
15.
Vaccine ; 33(2): 388-95, 2015 Jan 03.
Article in English | MEDLINE | ID: mdl-25444812

ABSTRACT

Therapeutic interventions for HIV-1 that successfully augment adaptive immunity to promote killing of infected cells may be a requisite component of strategies to reduce latent cellular reservoirs. Adoptive immunotherapies utilizing autologous monocyte-derived dendritic cells (DCs) that have been activated and antigen loaded ex vivo may serve to circumvent defects in DC function that are present during HIV infection in order to enhance adaptive immune responses. Here we detail the clinical preparation of DCs loaded with autologous aldrithiol-2 (AT-2)-inactivated HIV that have been potently activated with the viral mimic, Polyinosinic-polycytidylic acid-poly-l-lysine carboxymethylcellulose (Poly-ICLC). HIV is first propagated from CD4+ T cells from HIV-infected donors and then rendered non-replicative by chemical inactivation with aldrithiol-2 (AT-2), purified, and quantified. Viral inactivation is confirmed through measurement of Tat-regulated ß-galactosidase reporter gene expression following infection of TZM-bl cells. In-process testing for sterility, mycoplasma, LPS, adventitious agents, and removal of AT-2 is performed on viral preparations. Autologous DCs are generated and pulsed with autologous AT-2-inactivated virus and simultaneously stimulated with Poly-ICLC to constitute the final DC vaccine product. Phenotypic identity, maturation, and induction of HIV-specific adaptive immune responses are confirmed via flow cytometric analysis of DCs and cocultured autologous CD4+ and CD8+ T cells. Lot release criteria for the DC vaccine have been defined in accordance with Good Manufacturing Practice (GMP) guidelines. The demonstrated feasibility of this approach has resulted in approval by the FDA for investigational use in antiretroviral (ART) suppressed individuals. We discuss how this optimized DC formulation may enhance the quality of anti-HIV adaptive responses beyond what has been previously observed during DC immunotherapy trials for HIV infection.


Subject(s)
AIDS Vaccines/chemistry , AIDS Vaccines/immunology , Adaptive Immunity , Carboxymethylcellulose Sodium/analogs & derivatives , Dendritic Cells/immunology , HIV-1/immunology , Poly I-C/immunology , Polylysine/analogs & derivatives , 2,2'-Dipyridyl/analogs & derivatives , CD4-Positive T-Lymphocytes/immunology , CD4-Positive T-Lymphocytes/virology , CD8-Positive T-Lymphocytes/immunology , Cell Line , Disulfides , HIV Infections/immunology , HIV Infections/therapy , HIV-1/growth & development , HIV-1/isolation & purification , HIV-1/physiology , Humans , Immunotherapy, Adoptive/methods , Polylysine/immunology , Virus Inactivation , beta-Galactosidase/genetics
16.
PLoS One ; 9(3): e91550, 2014.
Article in English | MEDLINE | ID: mdl-24626482

ABSTRACT

We tested the concept of combining DNA with protein to improve anti-HIV Env systemic and mucosal humoral immune responses. Rhesus macaques were vaccinated with DNA, DNA&protein co-immunization or DNA prime followed by protein boost, and the magnitude and mucosal dissemination of the antibody responses were monitored in both plasma and mucosal secretions. We achieved induction of robust humoral responses by optimized DNA vaccination delivered by in vivo electroporation. These responses were greatly increased upon administration of a protein boost. Importantly, a co-immunization regimen of DNA&protein injected in the same muscle at the same time induced the highest systemic binding and neutralizing antibodies to homologous or heterologous Env as well as the highest Env-specific IgG in saliva. Inclusion of protein in the vaccine resulted in more immunized animals with Env-specific IgG in rectal fluids. Inclusion of DNA in the vaccine significantly increased the longevity of systemic humoral immune responses, whereas protein immunization, either as the only vaccine component or as boost after DNA prime, was followed by a great decline of humoral immune responses overtime. We conclude that DNA&protein co-delivery in a simple vaccine regimen combines the strength of each vaccine component, resulting in improved magnitude, extended longevity and increased mucosal dissemination of the induced antibodies in immunized rhesus macaques.


Subject(s)
Gene Products, env/immunology , Immunity, Humoral , SAIDS Vaccines/immunology , Vaccines, DNA/immunology , Adjuvants, Immunologic , Animals , Antibodies, Neutralizing/immunology , Antibodies, Viral/immunology , DNA, Viral/genetics , Electroporation , Female , Immunity, Cellular , Immunoglobulin G/immunology , Macaca mulatta , Male , Simian Immunodeficiency Virus
17.
Proc Natl Acad Sci U S A ; 110(8): 2975-80, 2013 Feb 19.
Article in English | MEDLINE | ID: mdl-23359688

ABSTRACT

We have previously shown that macaques vaccinated with DNA vectors expressing SIVmac239 antigens developed potent immune responses able to reduce viremia upon high-dose SIVmac251 challenge. To further improve vaccine-induced immunity and protection, we combined the SIVmac239 DNA vaccine with protein immunization using inactivated SIVmac239 viral particles as protein source. Twenty-six weeks after the last vaccination, the animals were challenged intrarectally at weekly intervals with a titrated dose of the heterologous SIVsmE660. Two of DNA-protein coimmunized macaques did not become infected after 14 challenges, but all controls were infected by 11 challenges. Vaccinated macaques showed modest protection from SIVsmE660 acquisition compared with naïve controls (P = 0.050; stratified for TRIM5α genotype). Vaccinees had significantly lower peak (1.6 log, P = 0.0048) and chronic phase viremia (P = 0.044), with 73% of the vaccinees suppressing viral replication to levels below assay detection during the 40-wk follow-up. Vaccine-induced immune responses associated significantly with virus control: binding antibody titers and the presence of rectal IgG to SIVsmE660 Env correlated with delayed SIVsmE660 acquisition; SIV-specific cytotoxic T cells, prechallenge CD4(+) effector memory, and postchallenge CD8(+) transitional memory cells correlated with control of viremia. Thus, SIVmac239 DNA and protein-based vaccine protocols were able to achieve high, persistent, broad, and effective cellular and humoral immune responses able to delay heterologous SIVsmE660 infection and to provide long-term control of viremia. These studies support a role of DNA and protein-based vaccines for development of an efficacious HIV/AIDS vaccine.


Subject(s)
DNA, Viral/immunology , Simian Acquired Immunodeficiency Syndrome/immunology , Simian Immunodeficiency Virus/immunology , Viral Vaccines/immunology , Viremia/prevention & control , Virion/immunology , Animals , Antibodies, Viral/biosynthesis , DNA, Viral/administration & dosage , Immunity, Cellular , Immunoglobulin G/immunology , Macaca mulatta , Rectum/immunology , Simian Acquired Immunodeficiency Syndrome/economics , Simian Acquired Immunodeficiency Syndrome/virology , Viral Load , Viral Vaccines/administration & dosage
18.
J Virol ; 86(6): 3152-66, 2012 Mar.
Article in English | MEDLINE | ID: mdl-22238316

ABSTRACT

Although xenotropic murine leukemia virus-related virus (XMRV) has been previously linked to prostate cancer and myalgic encephalomyelitis/chronic fatigue syndrome, recent data indicate that results interpreted as evidence of human XMRV infection reflect laboratory contamination rather than authentic in vivo infection. Nevertheless, XMRV is a retrovirus of undefined pathogenic potential that is able to replicate in human cells. Here we describe a comprehensive analysis of two male pigtailed macaques (Macaca nemestrina) experimentally infected with XMRV. Following intravenous inoculation with >10(10) RNA copy equivalents of XMRV, viral replication was limited and transient, peaking at ≤2,200 viral RNA (vRNA) copies/ml plasma and becoming undetectable by 4 weeks postinfection, though viral DNA (vDNA) in peripheral blood mononuclear cells remained detectable through 119 days of follow-up. Similarly, vRNA was not detectable in lymph nodes by in situ hybridization despite detectable vDNA. Sequencing of cell-associated vDNA revealed extensive G-to-A hypermutation, suggestive of APOBEC-mediated viral restriction. Consistent with limited viral replication, we found transient upregulation of type I interferon responses that returned to baseline by 2 weeks postinfection, no detectable cellular immune responses, and limited or no spread to prostate tissue. Antibody responses, including neutralizing antibodies, however, were detectable by 2 weeks postinfection and maintained throughout the study. Both animals were healthy for the duration of follow-up. These findings indicate that XMRV replication and spread were limited in pigtailed macaques, predominantly by APOBEC-mediated hypermutation. Given that human APOBEC proteins restrict XMRV infection in vitro, human XMRV infection, if it occurred, would be expected to be characterized by similarly limited viral replication and spread.


Subject(s)
Disease Models, Animal , Macaca nemestrina , Retroviridae Infections/virology , Virus Replication , Xenotropic murine leukemia virus-related virus/physiology , Animals , Antibodies, Viral/immunology , Humans , Male , Phylogeny , Retroviridae Infections/immunology , Xenotropic murine leukemia virus-related virus/classification , Xenotropic murine leukemia virus-related virus/genetics
19.
J Virol ; 85(23): 12114-23, 2011 Dec.
Article in English | MEDLINE | ID: mdl-21937655

ABSTRACT

The trimeric envelope glycoprotein (Env) spikes displayed on the surfaces of simian immunodeficiency virus (SIV) and human immunodeficiency virus type 1 (HIV-1) virions are composed of three heterodimers of the viral glycoproteins gp120 and gp41. Although binding of gp120 to cell surface CD4 and a chemokine receptor is known to elicit conformational changes in gp120 and gp41, changes in quaternary structure of the trimer have only recently been elucidated. For the HIV-1 BaL isolate, CD4 attachment results in a striking rearrangement of the trimer from a "closed" to an "open" conformation. The effect of CD4 on SIV trimers, however, has not been described. Using cryo-electron tomography, we have now determined molecular architectures of the soluble CD4 (sCD4)-bound states of SIV Env trimers for three different strains (SIVmneE11S, SIVmac239, and SIV CP-MAC). In marked contrast to HIV-1 BaL, SIVmneE11S and SIVmac239 Env showed only minor conformational changes following sCD4 binding. In SIV CP-MAC, where trimeric Env displays a constitutively "open" conformation similar to that seen for HIV-1 BaL Env in the sCD4-complexed state, we show that there are no significant further changes in conformation upon the binding of either sCD4 or 7D3 antibody. The density maps also show that 7D3 and 17b antibodies target epitopes on gp120 that are on opposites sides of the coreceptor binding site. These results provide new insights into the structural diversity of SIV Env and show that there are strain-dependent variations in the orientation of sCD4 bound to trimeric SIV Env.


Subject(s)
CD4 Antigens/chemistry , CD4 Antigens/metabolism , Membrane Glycoproteins/chemistry , Membrane Glycoproteins/metabolism , Viral Envelope Proteins/chemistry , Viral Envelope Proteins/metabolism , Animals , Antibodies, Neutralizing/immunology , CD4 Antigens/immunology , Cryoelectron Microscopy , Crystallography, X-Ray , Electron Microscope Tomography , Humans , Membrane Glycoproteins/immunology , Models, Molecular , Protein Structure, Quaternary , Receptors, CCR5/immunology , Receptors, CCR5/metabolism , Recombinant Proteins/chemistry , Recombinant Proteins/immunology , Recombinant Proteins/metabolism , Viral Envelope Proteins/immunology , Virus Internalization
20.
Proc Natl Acad Sci U S A ; 107(45): 19248-53, 2010 Nov 09.
Article in English | MEDLINE | ID: mdl-20974908

ABSTRACT

All retroviral genomic RNAs contain a cis-acting packaging signal by which dimeric genomes are selectively packaged into nascent virions. However, it is not understood how Gag (the viral structural protein) interacts with these signals to package the genome with high selectivity. We probed the structure of murine leukemia virus RNA inside virus particles using SHAPE, a high-throughput RNA structure analysis technology. These experiments showed that NC (the nucleic acid binding domain derived from Gag) binds within the virus to the sequence UCUG-UR-UCUG. Recombinant Gag and NC proteins bound to this same RNA sequence in dimeric RNA in vitro; in all cases, interactions were strongest with the first U and final G in each UCUG element. The RNA structural context is critical: High-affinity binding requires base-paired regions flanking this motif, and two UCUG-UR-UCUG motifs are specifically exposed in the viral RNA dimer. Mutating the guanosine residues in these two motifs--only four nucleotides per genomic RNA--reduced packaging 100-fold, comparable to the level of nonspecific packaging. These results thus explain the selective packaging of dimeric RNA. This paradigm has implications for RNA recognition in general, illustrating how local context and RNA structure can create information-rich recognition signals from simple single-stranded sequence elements in large RNAs.


Subject(s)
Gene Products, gag/metabolism , Genome, Viral/physiology , RNA, Viral/metabolism , Retroviridae/physiology , Virus Assembly , Animals , Base Sequence , Binding Sites , Gene Products, gag/physiology , Leukemia Virus, Murine/physiology , Mice , Protein Binding , Retroviridae/genetics
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