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1.
J Neuroinflammation ; 21(1): 127, 2024 May 13.
Article in English | MEDLINE | ID: mdl-38741181

ABSTRACT

HIV-associated neurocognitive disorders (HAND) are a spectrum of cognitive impairments that continue to affect approximately half of all HIV-positive individuals despite effective viral suppression through antiretroviral therapy (ART). White matter pathologies have persisted in the ART era, and the degree of white matter damage correlates with the degree of neurocognitive impairment in patients with HAND. The HIV protein Nef has been implicated in HAND pathogenesis, but its effect on white matter damage has not been well characterized. Here, utilizing in vivo, ex vivo, and in vitro methods, we demonstrate that Nef-containing extracellular vesicles (Nef EVs) disrupt myelin sheaths and inflict damage upon oligodendrocytes within the murine central nervous system. Intracranial injection of Nef EVs leads to reduced myelin basic protein (MBP) staining and a decreased number of CC1 + oligodendrocytes in the corpus callosum. Moreover, cerebellar slice cultures treated with Nef EVs exhibit diminished MBP expression and increased presence of unmyelinated axons. Primary mixed brain cultures and enriched oligodendrocyte precursor cell cultures exposed to Nef EVs display a decreased number of O4 + cells, indicative of oligodendrocyte impairment. These findings underscore the potential contribution of Nef EV-mediated damage to oligodendrocytes and myelin maintenance in the pathogenesis of HAND.


Subject(s)
Extracellular Vesicles , HIV-1 , Mice, Inbred C57BL , Oligodendroglia , nef Gene Products, Human Immunodeficiency Virus , Animals , Oligodendroglia/metabolism , Oligodendroglia/pathology , Oligodendroglia/virology , Mice , Extracellular Vesicles/metabolism , nef Gene Products, Human Immunodeficiency Virus/metabolism , HIV-1/metabolism , Myelin Sheath/metabolism , Myelin Sheath/pathology , Central Nervous System/metabolism , Central Nervous System/pathology , Central Nervous System/virology , Cells, Cultured , Humans , Male
2.
Nat Commun ; 15(1): 3813, 2024 May 07.
Article in English | MEDLINE | ID: mdl-38714682

ABSTRACT

Innate antiviral factors are essential for effective defense against viral pathogens. However, the identity of major restriction mechanisms remains elusive. Current approaches to discover antiviral factors usually focus on the initial steps of viral replication and are limited to a single round of infection. Here, we engineered libraries of >1500 replication-competent HIV-1 constructs each expressing a single gRNAs to target >500 cellular genes for virus-driven discovery of antiviral factors. Passaging in CD4+ T cells robustly enriched HIV-1 encoding sgRNAs against GRN, CIITA, EHMT2, CEACAM3, CC2D1B and RHOA by >50-fold. Using an HIV-1 library lacking the accessory nef gene, we identified IFI16 as a Nef target. Functional analyses in cell lines and primary CD4+ T cells support that the HIV-driven CRISPR screen identified restriction factors targeting virus entry, transcription, release and infectivity. Our HIV-guided CRISPR technique enables sensitive discovery of physiologically relevant cellular defense factors throughout the entire viral replication cycle.


Subject(s)
CD4-Positive T-Lymphocytes , HIV-1 , Virus Replication , nef Gene Products, Human Immunodeficiency Virus , Humans , HIV-1/genetics , HIV-1/physiology , Virus Replication/genetics , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism , CD4-Positive T-Lymphocytes/virology , CD4-Positive T-Lymphocytes/metabolism , CD4-Positive T-Lymphocytes/immunology , HEK293 Cells , CRISPR-Cas Systems , HIV Infections/virology , HIV Infections/genetics , HIV Infections/immunology , RNA, Guide, CRISPR-Cas Systems/genetics , RNA, Guide, CRISPR-Cas Systems/metabolism , Phosphoproteins/metabolism , Phosphoproteins/genetics , rhoA GTP-Binding Protein/metabolism , rhoA GTP-Binding Protein/genetics , Clustered Regularly Interspaced Short Palindromic Repeats/genetics , Virus Internalization
3.
Cell Chem Biol ; 31(4): 623-624, 2024 Apr 18.
Article in English | MEDLINE | ID: mdl-38640898

ABSTRACT

In an interview with Samantha Nelson, a scientific editor of Cell Chemical Biology, the first and corresponding authors of the research article entitled "PROTAC-mediated degradation of HIV-1 Nef efficiently restores cell-surface CD4 and MHC-I expression and blocks HIV-1 replication" share insights on their paper and life as scientists.


Subject(s)
HIV-1 , nef Gene Products, Human Immunodeficiency Virus/metabolism , Down-Regulation , Cell Membrane/metabolism
5.
J Med Chem ; 67(6): 4483-4495, 2024 Mar 28.
Article in English | MEDLINE | ID: mdl-38452116

ABSTRACT

The human immunodeficiency virus (HIV)-encoded accessory protein Nef enhances pathogenicity by reducing major histocompatibility complex I (MHC-I) cell surface expression, protecting HIV-infected cells from immune recognition. Nef-dependent downmodulation of MHC-I can be reversed by subnanomolar concentrations of concanamycin A (1), a well-known inhibitor of vacuolar ATPase, at concentrations below those that interfere with lysosomal acidification or degradation. We conducted a structure-activity relationship study that assessed 76 compounds for Nef inhibition, 24 and 72 h viability, and lysosomal neutralization in Nef-expressing primary T cells. This analysis demonstrated that the most potent compounds were natural concanamycins and their derivatives. Comparison against a set of new, semisynthetic concanamycins revealed that substituents at C-8 and acylation of C-9 significantly affected Nef potency, target cell viability, and lysosomal neutralization. These findings provide important progress toward understanding the mechanism of action of these compounds and the identification of an advanced lead anti-HIV Nef inhibitory compound.


Subject(s)
HIV Infections , HIV-1 , Vacuolar Proton-Translocating ATPases , Humans , HIV-1/physiology , Immune Evasion , nef Gene Products, Human Immunodeficiency Virus/metabolism , Lysosomes/metabolism , Hydrogen-Ion Concentration
6.
Viruses ; 16(2)2024 02 12.
Article in English | MEDLINE | ID: mdl-38400059

ABSTRACT

Members of the serine incorporator (SERINC) protein family exert broad antiviral activity, and many viruses encode SERINC antagonists to circumvent these restrictions. Significant new insight was recently gained into the mechanisms that mediate restriction and antagonism. In this review, we summarize our current understanding of the mode of action and relevance of SERINC proteins in HIV-1 infection. Particular focus will be placed on recent findings that provided important new mechanistic insights into the restriction of HIV-1 virion infectivity, including the discovery of SERINC's lipid scramblase activity and its antagonism by the HIV-1 pathogenesis factor Nef. We also discuss the identification and implications of several additional antiviral activities by which SERINC proteins enhance pro-inflammatory signaling and reduce viral gene expression in myeloid cells. SERINC proteins emerge as versatile and multifunctional regulators of cell-intrinsic immunity against HIV-1 infection.


Subject(s)
HIV Infections , Membrane Proteins , Humans , Membrane Proteins/metabolism , nef Gene Products, Human Immunodeficiency Virus/metabolism , Host-Pathogen Interactions , Virion/metabolism , Antiviral Agents
7.
Mol Biol Cell ; 35(1): ar9, 2024 Jan 01.
Article in English | MEDLINE | ID: mdl-37938925

ABSTRACT

The HIV-1 accessory protein Nef hijacks clathrin adaptors to degrade or mislocalize host proteins involved in antiviral defenses. Here, using quantitative live-cell microscopy in genome-edited Jurkat cells, we investigate the impact of Nef on clathrin-mediated endocytosis (CME), a major pathway for membrane protein internalization in mammalian cells. Nef is recruited to CME sites on the plasma membrane, and this recruitment is associated with an increase in the recruitment and lifetime of the CME coat protein AP-2 and the late-arriving CME protein dynamin2. Furthermore, we find that CME sites that recruit Nef are more likely to recruit dynamin2 and transferrin, suggesting that Nef recruitment to CME sites promotes site maturation to ensure high efficiency in host protein downregulation. Implications of these observations for HIV-1 infection are discussed.


Subject(s)
Clathrin , Endocytosis , HIV-1 , nef Gene Products, Human Immunodeficiency Virus , Animals , Humans , Cell Membrane/metabolism , Clathrin/metabolism , Endocytosis/physiology , HIV-1/metabolism , Jurkat Cells , Membrane Proteins/metabolism , nef Gene Products, Human Immunodeficiency Virus/metabolism
8.
FASEB J ; 37(12): e23301, 2023 12.
Article in English | MEDLINE | ID: mdl-37942865

ABSTRACT

HIV-associated neurocognitive disorders (HAND) is a term describing a complex set of cognitive impairments accompanying HIV infection. Successful antiretroviral therapy (ART) reduces the most severe forms of HAND, but milder forms affect over 50% of people living with HIV (PLWH). Pathogenesis of HAND in the ART era remains unknown. A variety of pathogenic factors, such as persistent HIV replication in the brain reservoir, HIV proteins released from infected brain cells, HIV-induced neuroinflammation, and some components of ART, have been implicated in driving HAND pathogenesis in ART-treated individuals. Here, we propose another factor-impairment of cholesterol homeostasis and lipid rafts by HIV-1 protein Nef-as a possible contributor to HAND pathogenesis. These effects of Nef on cholesterol may also underlie the effects of other pathogenic factors that constitute the multifactorial nature of HAND pathogenesis. The proposed Nef- and cholesterol-focused mechanism may provide a long-sought unified explanation of HAND pathogenesis that takes into account all contributing factors. Evidence for the impairment by Nef of cellular cholesterol balance, potential effects of this impairment on brain cells, and opportunities to therapeutically target this element of HAND pathogenesis are discussed.


Subject(s)
HIV Infections , HIV-1 , Humans , HIV Infections/complications , HIV Infections/drug therapy , HIV Infections/pathology , HIV-1/metabolism , Brain/metabolism , Cholesterol/metabolism , nef Gene Products, Human Immunodeficiency Virus/metabolism , nef Gene Products, Human Immunodeficiency Virus/pharmacology , nef Gene Products, Human Immunodeficiency Virus/therapeutic use
9.
J Virol ; 97(10): e0082323, 2023 10 31.
Article in English | MEDLINE | ID: mdl-37768085

ABSTRACT

IMPORTANCE: Pathogenesis of HIV-1 is enhanced through several viral-encoded proteins that counteract a range of host restriction molecules. HIV-1 Nef counteracts the cell membrane protein SERINC5 by downregulating it from the cell surface, thereby enhancing virion infectivity. Some subtype B reference Envelope sequences have shown the ability to bypass SERINC5 infectivity restriction independent of Nef. However, it is not clear if and to what extent circulating HIV-1 strains can exhibit resistance to SERINC5 restriction. Using a panel of Envelope sequences isolated from 50 Tanzanians infected with non-B HIV-1 subtypes, we show that the lentiviral reporters pseudotyped with patient-derived Envelopes have reduced sensitivity to SERINC5 and that this sensitivity differed among viral subtypes. Moreover, we found that SERINC5 sensitivity within patient-derived Envelopes can be modulated by separate regions, highlighting the complexity of viral/host interactions.


Subject(s)
HIV Infections , HIV-1 , Host Microbial Interactions , Membrane Proteins , env Gene Products, Human Immunodeficiency Virus , Humans , Cell Membrane/metabolism , env Gene Products, Human Immunodeficiency Virus/genetics , HIV Infections/metabolism , HIV Infections/virology , HIV-1/classification , HIV-1/pathogenicity , HIV-1/physiology , Membrane Proteins/metabolism , nef Gene Products, Human Immunodeficiency Virus/metabolism , Tanzania
10.
Mol Biol Evol ; 40(8)2023 08 03.
Article in English | MEDLINE | ID: mdl-37463439

ABSTRACT

Nef is an accessory protein unique to the primate HIV-1, HIV-2, and SIV lentiviruses. During infection, Nef functions by interacting with multiple host proteins within infected cells to evade the immune response and enhance virion infectivity. Notably, Nef can counter immune regulators such as CD4 and MHC-I, as well as the SERINC5 restriction factor in infected cells. In this study, we generated a posterior sample of time-scaled phylogenies relating SIV and HIV Nef sequences, followed by reconstruction of ancestral sequences at the root and internal nodes of the sampled trees up to the HIV-1 Group M ancestor. Upon expression of the ancestral primate lentivirus Nef protein within CD4+ HeLa cells, flow cytometry analysis revealed that the primate lentivirus Nef ancestor robustly downregulated cell-surface SERINC5, yet only partially downregulated CD4 from the cell surface. Further analysis revealed that the Nef-mediated CD4 downregulation ability evolved gradually, while Nef-mediated SERINC5 downregulation was recovered abruptly in the HIV-1/M ancestor. Overall, this study provides a framework to reconstruct ancestral viral proteins and enable the functional characterization of these proteins to delineate how functions could have changed throughout evolutionary history.


Subject(s)
Lentiviruses, Primate , Simian Immunodeficiency Virus , Humans , Animals , Lentiviruses, Primate/genetics , Lentiviruses, Primate/metabolism , Phylogeny , HeLa Cells , Simian Immunodeficiency Virus/metabolism , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism , Primates/genetics , Primates/metabolism , Membrane Proteins/genetics
11.
AIDS Res Hum Retroviruses ; 39(12): 688-698, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37335040

ABSTRACT

The polymorphisms in host genes such as CCR5, CCR2, stromal derived factor (SDF), and MBL (mannose-binding lectin) as well as the viral nef gene have been shown to influence human immunodeficiency virus (HIV) infection, followed by the development of HIV-associated neurocognitive disorder (HAND). In this preliminary study with a limited number of samples, we have tried to associate the genetic polymorphism from the host and viral genetic factors with the neurocognitive status along with immuno-virological parameters. The total RNA was isolated from 10 unlinked plasma samples containing 5 samples from each group with and without HAND based on the International HIV Dementia Scale (IHDS) score <9.5 and >9.5, respectively. The CCR5, CCR2, SDF, MBL, and HIV nef genes were amplified and digested with restriction enzymes, except for the nef gene amplicon. Restrictions fragment length polymorphism (RFLP) was used to determine whether allelic variations were present in the digested host gene products, while sequencing was done for HIV nef amplicons without digestion. CCR5 delta 32 heterozygous variants were present in two samples from the HAND group. Three samples with HAND showed SDF-1 3' heterozygous allelic variant, while the MBL-2 gene presented with a homozygous mutant allele (D/D) in codon 52, heterozygous mutant allele (A/B) in codon 54, and codon 57 (A/C) for all samples except IHDS-2 irrespective of dementia status. Furthermore, amino acid alignment of Nef sequences confirmed the heterogeneity, while prediction of the human leukocyte antigen binding epitopes further explored its effect on functional motifs with variable binding efficiency such as epitopes GAFDLSFFL (aa 83) and LTFGWCFKL (aa 138) binding with HLA molecules at 60% and 80%, respectively. Thus, host genetics evidently influence predisposition to HIV infection and HAND. The genetic variability in the nef gene from both groups resulted in altering the functionality of specific domains and showing its impact on the progression of the disease, which needs to be explored.


Subject(s)
HIV Infections , HIV-1 , Humans , HIV Infections/complications , HIV Infections/genetics , Polymorphism, Genetic , Codon , Epitopes , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism
12.
Retrovirology ; 20(1): 3, 2023 03 31.
Article in English | MEDLINE | ID: mdl-37004071

ABSTRACT

BACKGROUND: Nef performs multiple cellular activities that enhance HIV-1 pathogenesis. The role of Nef-mediated down-regulation of the host restriction factor SERINC5 in HIV-1 pathogenesis is not well-defined. We aimed to investigate if SERINC5 down-regulation activity contributes to HIV-1 subtype C disease progression, to assess the relative contribution of this activity to overall Nef function, and to identify amino acids required for optimal activity. We measured the SERINC5 down-regulation activity of 106 subtype C Nef clones, isolated from individuals in early infection, for which the Nef activities of CD4 and HLA-I down-regulation as well as alteration of TCR signalling were previously measured. The relationship between SERINC5 down-regulation and markers of disease progression, and the relative contribution of SERINC5 down-regulation to a Nef fitness model-derived E value (a proxy for overall Nef fitness in vivo), were assessed. RESULTS: No overall relationship was found between SERINC5 down-regulation and viral load set point (p = 0.28) or rate of CD4+ T cell decline (p = 0.45). CD4 down-regulation (p = 0.02) and SERINC5 down-regulation (p = 0.003) were significant determinants of E values in univariate analyses, with the greatest relative contribution for SERINC5 down-regulation, and only SERINC5 down-regulation remained significant in the multivariate analysis (p = 0.003). Using a codon-by-codon analysis, several amino acids were significantly associated with increased (10I, 11V, 38D, 51T, 65D, 101V, 188H and, 191H) or decreased (10K, 38E, 65E, 135F, 173T, 176T and, 191R) SERINC5 down-regulation activity. Site-directed mutagenesis experiments of selected mutants confirmed a substantial reduction in SERINC5 down-regulation activity associated with the mutation 173T, while mutations 10K, 135F, and 176T were associated with more modest reductions in activity that were not statistically significant. CONCLUSIONS: These results suggest that SERINC5 down-regulation is a significant contributor to overall Nef function and identify potential genetic determinants of this Nef function that may have relevance for vaccines or therapeutics.


Subject(s)
HIV Infections , HIV-1 , Humans , Down-Regulation , HIV-1/physiology , Membrane Proteins/genetics , Membrane Proteins/metabolism , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism , T-Lymphocytes
13.
Front Cell Infect Microbiol ; 13: 1106591, 2023.
Article in English | MEDLINE | ID: mdl-36968110

ABSTRACT

Our recent data established that HIV-1 Nef is pivotal in determining the fate of cellular proteins by modulating ubiquitination. However, it is unknown which proteins are ubiquitinated in the presence of Nef, a question critical for understanding the proliferation/restriction strategies of HIV-1 in infected cells. To identify cellular proteins ubiquitinated by Nef, we conducted a proteomic analysis of cellular proteins in the presence and absence of Nef. Proteomic analysis in HEK293T cells indicated that 93 proteins were upregulated and 232 were downregulated in their ubiquitination status by Nef. Computational analysis classified these proteins based on molecular function, biological process, subcellular localization, and biological pathway. Of those proteins, we found a majority of molecular functions to be involved in binding and catalytic activity. With respect to biological processes, a significant portion of the proteins identified were related to cellular and metabolic processes. Subcellular localization analysis showed the bulk of proteins to be localized to the cytosol and cytosolic compartments, which is consistent with the known function and location of Nef during HIV-1 infection. As for biological pathways, the wide range of affected proteins was denoted by the multiple modes to fulfill function, as distinguished from a strictly singular means, which was not detected. Among these ubiquitinated proteins, six were found to directly interact with Nef, wherein two were upregulated and four downregulated. We also identified 14 proteins involved in protein stability through directly participating in the Ubiquitin Proteasome System (UPS)-mediated proteasomal degradation pathway. Of those proteins, we found six upregulated and eight downregulated. Taken together, these analyses indicate that HIV-1 Nef is integral to regulating the stability of various cellular proteins via modulating ubiquitination. The molecular mechanisms directing Nef-triggered regulation of cellular protein ubiquitination are currently under investigation.


Subject(s)
HIV-1 , Ubiquitination , nef Gene Products, Human Immunodeficiency Virus , Humans , HEK293 Cells , HIV-1/chemistry , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism , Proteomics , Ubiquitin/metabolism
14.
STAR Protoc ; 4(1): 102025, 2023 03 17.
Article in English | MEDLINE | ID: mdl-36853860

ABSTRACT

CD8+ T lymphocytes can recognize and eliminate cells infected by viruses. However, the human immunodeficiency virus (HIV-1) has developed mechanisms to evade CD8+ T-cell-mediated clearance. Here, we describe a protocol to assess the role of the HIV-1 protein Nef in immune evasion. The viral competition assay reveals the preferential killing of HIV-1-infected cells unable to express Nef. This methodology can be extended to study HIV-1 proteins involved in immune evasion and viral variants encoding cytotoxic T lymphocyte escape mutations. For complete details on the use and execution of this protocol, please refer to Duette et al. (2022).1.


Subject(s)
HIV-1 , Immune Evasion , Humans , HIV-1/genetics , HIV-1/metabolism , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism , CD8-Positive T-Lymphocytes , T-Lymphocytes, Cytotoxic
15.
J Mol Biol ; 435(8): 168009, 2023 04 15.
Article in English | MEDLINE | ID: mdl-36773691

ABSTRACT

The HIV-1 Nef protein plays a critical role in viral infectivity, high-titer replication in vivo, and immune escape of HIV-infected cells. Nef lacks intrinsic biochemical activity, functioning instead through interactions with diverse host cell signaling proteins and intracellular trafficking pathways. Previous studies have established an essential role for Nef homodimer formation at the plasma membrane for most if not all its functions. Here we combined neutron reflectometry of full-length myristoylated Nef bound to model lipid bilayers with molecular simulations based on previous X-ray crystal structures of Nef homodimers. This integrated approach provides direct evidence that Nef associates with the membrane as a homodimer with its structured core region displaced from the membrane for partner protein engagement. Parallel studies of a dimerization-defective mutant, Nef-L112D, demonstrate that the helical dimerization interface present in previous crystal structures stabilizes the membrane-bound dimer. X-ray crystallography of the Nef-L112D mutant in complex with the SH3 domain of the Nef-associated host cell kinase Hck revealed a monomeric 1:1 complex instead of the 2:2 dimer complex formed with wild-type Nef. Importantly, the crystal structure of the Nef-L112D core and SH3 interface are virtually identical to the wild-type complex, indicating that this mutation does not affect the overall Nef fold. These findings support the intrinsic capacity of Nef to homodimerize at lipid bilayers using structural features present in X-ray crystal structures of dimeric complexes.


Subject(s)
Cell Membrane , HIV-1 , Lipid Bilayers , nef Gene Products, Human Immunodeficiency Virus , Cell Membrane/chemistry , Cell Membrane/metabolism , HIV-1/chemistry , HIV-1/metabolism , Lipid Bilayers/metabolism , src Homology Domains , Protein Multimerization , Crystallography, X-Ray , nef Gene Products, Human Immunodeficiency Virus/chemistry , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism , Molecular Dynamics Simulation
16.
PLoS One ; 18(2): e0281087, 2023.
Article in English | MEDLINE | ID: mdl-36780482

ABSTRACT

HIV infection remains incurable to date and there are no compounds targeted at the viral release. We show here HIV viral release is not spontaneous, rather requires caspases activation and shedding of its adhesion receptor, CD62L. Blocking the caspases activation caused virion tethering by CD62L and the release of deficient viruses. Not only productive experimental HIV infections require caspases activation for viral release, HIV release from both viremic and aviremic patient-derived CD4 T cells also require caspase activation, suggesting HIV release from cellular viral reservoirs depends on apoptotic shedding of the adhesion receptor. Further transcriptomic analysis of HIV infected CD4 T cells showed a direct contribution of HIV accessory gene Nef to apoptotic caspases activation. Current HIV cure focuses on the elimination of latent cellular HIV reservoirs that are resistant to infection-induced cell death. This has led to therapeutic strategies to stimulate T cell apoptosis in a "kick and kill" approach. Our current work has shifted the paradigm on HIV-induced apoptosis and suggests such approach would risk to induce HIV release and thus be counter-productive. Instead, our study supports targeting of viral reservoir release by inhibiting of caspases activation.


Subject(s)
HIV Infections , HIV Seropositivity , HIV-1 , nef Gene Products, Human Immunodeficiency Virus , Humans , Caspases/metabolism , CD4-Positive T-Lymphocytes/metabolism , Cell Death , HIV Infections/drug therapy , HIV-1/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism
18.
Med Microbiol Immunol ; 212(2): 133-140, 2023 Apr.
Article in English | MEDLINE | ID: mdl-35333966

ABSTRACT

Serine incorporator 5 (SERINC5 or SER5) is a multipass transmembrane protein with ill-defined cellular activities. SER5 was recently described as a human immunodeficiency virus 1 (HIV-1) restriction factor capable of inhibiting HIV-1 that does not express its accessory protein Nef (Δ Nef). SER5 incorporated into the viral membrane impairs the entry of HIV-1 by disrupting the fusion between the viral and the plasma membrane after envelope receptor interaction induced the first steps of the fusion process. The mechanisms of how SER5 prevents membrane fusion are not fully understood and viral envelope proteins were identified that escape the SER5-mediated restriction. Primate lentiviruses, such as HIV-1 and simian immunodeficiency viruses (SIVs), use their accessory protein Nef to downregulate SER5 from the plasma membrane by inducing an endocytic pathway. In addition to being directly antiviral, recent data suggest that SER5 is an important adapter protein in innate signaling pathways leading to the induction of inflammatory cytokines. This review discusses the current knowledge about HIV-1 restriction by SER5.


Subject(s)
HIV-1 , Animals , Humans , nef Gene Products, Human Immunodeficiency Virus/metabolism , Membrane Proteins/metabolism
19.
Virology ; 578: 154-162, 2023 01.
Article in English | MEDLINE | ID: mdl-36577173

ABSTRACT

A primary function of HIV-1 Nef is the enhancement of viral infectivity and replication. Whether counteraction of the antiretroviral proteins SERINC3 and SERINC5 is the cause of this positive influence on viral growth-rate and infectivity remains unclear. Here, we utilized CRISPR/Cas9 to knockout SERINC3 and SERINC5 in a leukemic CD4-positive T cell line (CEM) that displays nef-related infectivity and growth-rate phenotypes. Viral replication was attenuated in CEM cells infected with HIV-1 lacking Nef (HIV-1ΔNef). This attenuated growth-rate phenotype was observed regardless of whether the coding regions of the serinc3 or serinc5 genes were intact. Moreover, knockout of serinc5 alone or of both serinc5 and serinc3 together failed to restore the infectivity of HIV1ΔNef virions produced from infected CEM cells. Our results corroborate a similar study using another T-lymphoid cell line (MOLT-3) and indicate that the antagonism of SERINC3 and SERINC5 does not fully explain the virology of HIV-1 lacking Nef.


Subject(s)
HIV-1 , Membrane Proteins , CD4-Positive T-Lymphocytes/metabolism , HIV-1/metabolism , Membrane Proteins/genetics , Membrane Proteins/metabolism , nef Gene Products, Human Immunodeficiency Virus/genetics , nef Gene Products, Human Immunodeficiency Virus/metabolism , Virus Replication/genetics
20.
PLoS Pathog ; 18(10): e1010907, 2022 10.
Article in English | MEDLINE | ID: mdl-36223419

ABSTRACT

SERINC5 is a multi-span transmembrane protein that is incorporated into HIV-1 particles in producing cells and inhibits HIV-1 entry. Multiple retroviruses like HIV-1, equine infectious anemia virus and murine leukemia virus are subject to SERINC5 inhibition, while HIV-1 pseudotyped with envelope glycoproteins of vesicular stomatitis virus and Ebola virus are resistant to SERINC5. The antiviral spectrum and the underlying mechanisms of SERINC5 restriction are not completely understood. Here we show that SERINC5 inhibits influenza A virus infection by targeting virus-cell membrane fusion at an early step of infection. Further results show that different influenza hemagglutinin (HA) subtypes exhibit diverse sensitivities to SERINC5 restriction. Analysis of the amino acid sequences of influenza HA1 strains indicates that HA glycosylation sites correlate with the sensitivity of influenza HA to SERINC5, and the inhibitory effect of SERINC5 was lost when certain HA glycosylation sites were mutated. Our study not only expands the antiviral spectrum of SERINC5, but also reveals the role of viral envelope glycosylation in resisting SERINC5 restriction.


Subject(s)
HIV-1 , Influenza, Human , Orthomyxoviridae , Mice , Animals , Humans , nef Gene Products, Human Immunodeficiency Virus/metabolism , Hemagglutinins/metabolism , HIV-1/physiology , Orthomyxoviridae/metabolism , Antiviral Agents/metabolism , Glycoproteins/metabolism
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