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1.
Molecules ; 27(10)2022 May 17.
Artigo em Inglês | MEDLINE | ID: mdl-35630694

RESUMO

Dengue is an important arboviral infectious disease for which there is currently no specific cure. We report gemini-like (geminoid) alkylated amphiphilic peptides containing lysines in combination with glycines or alanines (C15H31C(O)-Lys-(Gly or Ala)nLys-NHC16H33, shorthand notation C16-KXnK-C16 with X = A or G, and n = 0-2). The representatives with 1 or 2 Ala inhibit dengue protease and human furin, two serine proteases involved in dengue virus infection that have peptides with cationic amino acids as their preferred substrates, with IC50 values in the lower µM range. The geminoid C16-KAK-C16 combined inhibition of DENV2 protease (IC50 2.3 µM) with efficacy against replication of wildtype DENV2 in LLC-MK2 cells (EC50 4.1 µM) and an absence of toxicity. We conclude that the lysine-based geminoids have activity against dengue virus infection, which is based on their inhibition of the proteases involved in viral replication and are therefore promising leads to further developing antiviral therapeutics, not limited to dengue.


Assuntos
Antivirais , Vírus da Dengue , Furina , Inibidores de Proteases , Replicação Viral , Antivirais/farmacologia , Dengue/tratamento farmacológico , Vírus da Dengue/efeitos dos fármacos , Vírus da Dengue/fisiologia , Furina/antagonistas & inibidores , Humanos , Peptídeo Hidrolases , Peptídeos/farmacologia , Inibidores de Proteases/farmacologia , Proteínas não Estruturais Virais/metabolismo , Replicação Viral/efeitos dos fármacos
2.
Nucleic Acids Res ; 49(15): 8886-8899, 2021 09 07.
Artigo em Inglês | MEDLINE | ID: mdl-34331446

RESUMO

In the germline of animals, PIWI interacting (pi)RNAs protect the genome against the detrimental effects of transposon mobilization. In Drosophila, piRNA-mediated cleavage of transposon RNA triggers the production of responder piRNAs via ping-pong amplification. Responder piRNA 3' end formation by the nuclease Zucchini is coupled to the production of downstream trailer piRNAs, expanding the repertoire of transposon piRNA sequences. In Aedes aegypti mosquitoes, piRNAs are generated from viral RNA, yet, it is unknown how viral piRNA 3' ends are formed and whether viral RNA cleavage gives rise to trailer piRNA production. Here we report that in Ae. aegypti, virus- and transposon-derived piRNAs have sharp 3' ends, and are biased for downstream uridine residues, features reminiscent of Zucchini cleavage of precursor piRNAs in Drosophila. We designed a reporter system to study viral piRNA 3' end formation and found that targeting viral RNA by abundant endogenous piRNAs triggers the production of responder and trailer piRNAs. Using this reporter, we identified the Ae. aegypti orthologs of Zucchini and Nibbler, two nucleases involved in piRNA 3' end formation. Our results furthermore suggest that autonomous piRNA production from viral RNA can be triggered and expanded by an initial cleavage event guided by genome-encoded piRNAs.


Assuntos
Elementos de DNA Transponíveis/genética , Densovirinae/genética , Proteínas de Drosophila/genética , Endorribonucleases/genética , RNA Interferente Pequeno/genética , RNA Viral/genética , Aedes/genética , Aedes/virologia , Animais , Proteínas Argonautas/genética , Densovirinae/patogenicidade , Drosophila melanogaster/genética , Drosophila melanogaster/virologia , Células Germinativas/virologia , Clivagem do RNA/genética
3.
Viruses ; 13(2)2021 02 11.
Artigo em Inglês | MEDLINE | ID: mdl-33670363

RESUMO

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) emerged as a new human pathogen in late 2019 and it has infected over 100 million people in less than a year. There is a clear need for effective antiviral drugs to complement current preventive measures, including vaccines. In this study, we demonstrate that berberine and obatoclax, two broad-spectrum antiviral compounds, are effective against multiple isolates of SARS-CoV-2. Berberine, a plant-derived alkaloid, inhibited SARS-CoV-2 at low micromolar concentrations and obatoclax, which was originally developed as an anti-apoptotic protein antagonist, was effective at sub-micromolar concentrations. Time-of-addition studies indicated that berberine acts on the late stage of the viral life cycle. In agreement, berberine mildly affected viral RNA synthesis, but it strongly reduced infectious viral titers, leading to an increase in the particle-to-pfu ratio. In contrast, obatoclax acted at the early stage of the infection, which is in line with its activity to neutralize the acidic environment in endosomes. We assessed infection of primary human nasal epithelial cells that were cultured on an air-liquid interface and found that SARS-CoV-2 infection induced and repressed expression of specific sets of cytokines and chemokines. Moreover, both obatoclax and berberine inhibited SARS-CoV-2 replication in these primary target cells. We propose berberine and obatoclax as potential antiviral drugs against SARS-CoV-2 that could be considered for further efficacy testing.


Assuntos
Antivirais/farmacologia , Berberina/farmacologia , Indóis/farmacologia , Pirróis/farmacologia , SARS-CoV-2/efeitos dos fármacos , Replicação Viral/efeitos dos fármacos , Adolescente , Animais , COVID-19/virologia , Células Cultivadas , Chlorocebus aethiops , Células Epiteliais/virologia , Humanos , Masculino , RNA Viral/genética , SARS-CoV-2/fisiologia , Células Vero
4.
Sci Rep ; 9(1): 13752, 2019 09 24.
Artigo em Inglês | MEDLINE | ID: mdl-31551491

RESUMO

RNA interference (RNAi) has strong antiviral activity in a range of animal phyla, but the extent to which RNAi controls virus infection in chordates, and specifically mammals remains incompletely understood. Here we analyze the antiviral activity of RNAi against a number of positive-sense RNA viruses using Argonaute-2 deficient human cells. In line with absence of virus-derived siRNAs, Sindbis virus, yellow fever virus, and encephalomyocarditis virus replicated with similar kinetics in wildtype cells and Argonaute-2 deficient cells. Coxsackievirus B3 (CVB3) carrying mutations in the viral 3A protein, previously proposed to be a virus-encoded suppressor of RNAi in another picornavirus, human enterovirus 71, had a strong replication defect in wildtype cells. However, this defect was not rescued in Argonaute-2 deficient cells, arguing against a role of CVB3 3A as an RNAi suppressor. In agreement, neither infection with wildtype nor 3A mutant CVB3 resulted in small RNA production with the hallmarks of canonical vsiRNAs. Together, our results argue against strong antiviral activity of RNAi under these experimental conditions, but do not exclude that antiviral RNAi may be functional under other cellular, experimental, or physiological conditions in mammals.


Assuntos
Proteínas Argonautas/genética , RNA Interferente Pequeno/genética , RNA Viral/genética , Linhagem Celular , Linhagem Celular Tumoral , Vírus de DNA/genética , Vírus da Encefalomiocardite/genética , Enterovirus Humano A/genética , Enterovirus Humano B/genética , Células HEK293 , Células HeLa , Humanos , Interferência de RNA/fisiologia , Vírus de RNA/genética , Sindbis virus/genética , Proteínas Virais/genética , Replicação Viral/genética
5.
PLoS Biol ; 17(3): e2006146, 2019 03.
Artigo em Inglês | MEDLINE | ID: mdl-30860988

RESUMO

Stress responses are crucial processes that require activation of genetic programs that protect from the stressor. Stress responses are also energy consuming and can thus be deleterious to the organism. The mechanisms coordinating energy consumption during stress response in multicellular organisms are not well understood. Here, we show that loss of the epigenetic regulator G9a in Drosophila causes a shift in the transcriptional and metabolic responses to oxidative stress (OS) that leads to decreased survival time upon feeding the xenobiotic paraquat. During OS exposure, G9a mutants show overactivation of stress response genes, rapid depletion of glycogen, and inability to access lipid energy stores. The OS survival deficiency of G9a mutants can be rescued by a high-sugar diet. Control flies also show improved OS survival when fed a high-sugar diet, suggesting that energy availability is generally a limiting factor for OS tolerance. Directly limiting access to glycogen stores by knocking down glycogen phosphorylase recapitulates the OS-induced survival defects of G9a mutants. We propose that G9a mutants are sensitive to stress because they experience a net reduction in available energy due to (1) rapid glycogen use, (2) an inability to access lipid energy stores, and (3) an overinduced transcriptional response to stress that further exacerbates energy demands. This suggests that G9a acts as a critical regulatory hub between the transcriptional and metabolic responses to OS. Our findings, together with recent studies that established a role for G9a in hypoxia resistance in cancer cell lines, suggest that G9a is of wide importance in controlling the cellular and organismal response to multiple types of stress.


Assuntos
Histona Metiltransferases/metabolismo , Animais , Antioxidantes/metabolismo , Metabolismo Energético/genética , Metabolismo Energético/fisiologia , Epigênese Genética/genética , Glicogênio Fosforilase/genética , Glicogênio Fosforilase/metabolismo , Histona Metiltransferases/genética , Histona-Lisina N-Metiltransferase/genética , Histona-Lisina N-Metiltransferase/metabolismo , Humanos , Masculino , Estresse Oxidativo/genética , Estresse Oxidativo/fisiologia , Filogenia , Análise de Sequência de RNA
6.
PLoS Pathog ; 15(3): e1007500, 2019 03.
Artigo em Inglês | MEDLINE | ID: mdl-30849118

RESUMO

Thrombocytopenia and platelet dysfunction are commonly observed in patients with dengue virus (DENV) infection and may contribute to complications such as bleeding and plasma leakage. The etiology of dengue-associated thrombocytopenia is multifactorial and includes increased platelet clearance. The binding of the coagulation protein von Willebrand factor (VWF) to the platelet membrane and removal of sialic acid (desialylation) are two well-known mechanisms of platelet clearance, but whether these conditions also contribute to thrombocytopenia in dengue infection is unknown. In two observational cohort studies in Bandung and Jepara, Indonesia, we show that adult patients with dengue not only had higher plasma concentrations of plasma VWF antigen and active VWF, but that circulating platelets had also bound more VWF to their membrane. The amount of platelet-VWF binding correlated well with platelet count. Furthermore, sialic acid levels in dengue patients were significantly reduced as assessed by the binding of Sambucus nigra lectin (SNA) and Maackia amurensis lectin II (MAL-II) to platelets. Sialic acid on the platelet membrane is neuraminidase-labile, but dengue virus has no known neuraminidase activity. Indeed, no detectable activity of neuraminidase was present in plasma of dengue patients and no desialylation was found of plasma transferrin. Platelet sialylation was also not altered by in vitro exposure of platelets to DENV nonstructural protein 1 or cultured DENV. In contrast, induction of binding of VWF to glycoprotein 1b on platelets using the VWF-activating protein ristocetin resulted in the removal of platelet sialic acid by translocation of platelet neuraminidase to the platelet surface. The neuraminidase inhibitor oseltamivir reduced VWF-induced platelet desialylation. Our data demonstrate that excessive binding of VWF to platelets in dengue results in neuraminidase-mediated platelet desialylation and platelet clearance. Oseltamivir might be a novel treatment option for severe thrombocytopenia in dengue infection.


Assuntos
Plaquetas/metabolismo , Ácido N-Acetilneuramínico/metabolismo , Fator de von Willebrand/fisiologia , Adolescente , Adulto , Fatores de Coagulação Sanguínea , Plaquetas/fisiologia , Estudos de Coortes , Dengue/metabolismo , Feminino , Fibrinogênio , Humanos , Indonésia , Cinética , Masculino , Proteínas Proteolipídicas Associadas a Linfócitos e Mielina , Neuraminidase/metabolismo , Lectinas de Plantas , Glicoproteínas da Membrana de Plaquetas/metabolismo , Proteínas Inativadoras de Ribossomos , Trombocitopenia , Adulto Jovem , Fator de von Willebrand/metabolismo
7.
Nucleic Acids Res ; 46(6): 3187-3197, 2018 04 06.
Artigo em Inglês | MEDLINE | ID: mdl-29325071

RESUMO

RNA interference (RNAi) is an indispensable mechanism for antiviral defense in insects, including mosquitoes that transmit human diseases. To escape this antiviral defense system, viruses encode suppressors of RNAi that prevent elimination of viral RNAs, and thus ensure efficient virus accumulation. Although the first animal Viral Suppressor of RNAi (VSR) was identified more than a decade ago, the molecular basis of RNAi suppression by these viral proteins remains unclear. Here, we developed a single-molecule fluorescence assay to investigate how VSRs inhibit the recognition of viral RNAs by Dcr-2, a key endoribonuclease enzyme in the RNAi pathway. Using VSRs from three insect RNA viruses (Culex Y virus, Drosophila X virus and Drosophila C virus), we reveal bimodal physical interactions between RNA molecules and VSRs. During initial interactions, these VSRs rapidly discriminate short RNA substrates from long dsRNA. VSRs engage nearly irreversible binding with long dsRNAs, thereby shielding it from recognition by Dcr-2. We propose that the length-dependent switch from rapid screening to irreversible binding reflects the main mechanism by which VSRs distinguish viral dsRNA from cellular RNA species such as microRNAs.


Assuntos
Entomobirnavirus/genética , MicroRNAs/genética , Interferência de RNA , Vírus de RNA/genética , RNA de Cadeia Dupla/genética , RNA Viral/genética , Animais , Humanos , MicroRNAs/metabolismo , Ligação Proteica , RNA de Cadeia Dupla/metabolismo , RNA Interferente Pequeno/genética , RNA Interferente Pequeno/metabolismo , RNA Viral/metabolismo , Células Sf9 , Spodoptera , Receptores Chamariz do Fator de Necrose Tumoral/genética , Receptores Chamariz do Fator de Necrose Tumoral/metabolismo , Proteínas Virais/genética , Proteínas Virais/metabolismo
8.
Cell Rep ; 21(3): 587-599, 2017 Oct 17.
Artigo em Inglês | MEDLINE | ID: mdl-29045829

RESUMO

Enteroviruses reorganize cellular endomembranes into replication organelles (ROs) for genome replication. Although enterovirus replication depends on phosphatidylinositol 4-kinase type IIIß (PI4KB), its role, and that of its product, phosphatidylinositol 4-phosphate (PI4P), is only partially understood. Exploiting a mutant coxsackievirus resistant to PI4KB inhibition, we show that PI4KB activity has distinct functions both in proteolytic processing of the viral polyprotein and in RO biogenesis. The escape mutation rectifies a proteolytic processing defect imposed by PI4KB inhibition, pointing to a possible escape mechanism. Remarkably, under PI4KB inhibition, the mutant virus could replicate its genome in the absence of ROs, using instead the Golgi apparatus. This impaired RO biogenesis provided an opportunity to investigate the proposed role of ROs in shielding enteroviral RNA from cellular sensors. Neither accelerated sensing of viral RNA nor enhanced innate immune responses was observed. Together, our findings challenge the notion that ROs are indispensable for enterovirus genome replication and immune evasion.


Assuntos
Enterovirus/genética , Enterovirus/fisiologia , Genoma Viral/genética , Antígenos de Histocompatibilidade Menor/metabolismo , Organelas/metabolismo , Fosfotransferases (Aceptor do Grupo Álcool)/metabolismo , RNA Viral/biossíntese , RNA Viral/genética , Replicação Viral , Antivirais/metabolismo , Enterovirus/crescimento & desenvolvimento , Complexo de Golgi/metabolismo , Complexo de Golgi/ultraestrutura , Células HeLa , Humanos , Proteólise , Proteínas Virais/metabolismo
9.
Cell Rep ; 2(5): 1187-96, 2012 Nov 29.
Artigo em Inglês | MEDLINE | ID: mdl-23142662

RESUMO

RIG-I and MDA5 are cytosolic RNA sensors that play a critical role in innate antiviral responses. Major advances have been made in identifying RIG-I ligands, but our knowledge of the ligands for MDA5 remains restricted to data from transfection experiments mostly using poly(I:C), a synthetic dsRNA mimic. Here, we dissected the IFN-α/ß-stimulatory activity of different viral RNA species produced during picornavirus infection, both by RNA transfection and in infected cells in which specific steps of viral RNA replication were inhibited. Our results show that the incoming genomic plus-strand RNA does not activate MDA5, but minus-strand RNA synthesis and production of the 7.5 kbp replicative form trigger a strong IFN-α/ß response. IFN-α/ß production does not rely on plus-strand RNA synthesis and thus generation of the partially double-stranded replicative intermediate. This study reports MDA5 activation by a natural RNA ligand under physiological conditions.


Assuntos
RNA Helicases DEAD-box/metabolismo , RNA de Cadeia Dupla/metabolismo , RNA Viral/metabolismo , Animais , Linhagem Celular , RNA Helicases DEAD-box/química , Células HeLa , Cavalos , Humanos , Helicase IFIH1 Induzida por Interferon , Interferon-alfa/metabolismo , Interferon beta/genética , Interferon beta/metabolismo , Camundongos , Picornaviridae/genética , Poli I-C/farmacologia , RNA de Cadeia Dupla/genética , RNA Mensageiro/metabolismo , Transfecção , Regulação para Cima/efeitos dos fármacos
10.
Virology ; 314(1): 451-9, 2003 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-14517097

RESUMO

Human immunodeficiency virus type 1 (HIV-1) infection is in general established by CCR5-utilizing (R5) virus variants, which persist throughout the course of infection. R5 HIV-1 variants evolve into CXCR4-utilizing (X4) HIV-1 variants in approximately half of the infected individuals. We have previously observed an ongoing genetic evolution with a continuous divergence of envelope gp120 sequences of coexisting R5 and X4 virus variants over time. Here, we studied evolution of gag p17 sequences in two patients who developed X4 variants in the course of infection. In contrast to the envelope gp120 sequences, gag p17 sequences of R5 and X4 virus populations intermingled in phylogenetic trees and did not diverge from each other over time. Statistical evaluation using the Shimodaira-Hasegawa test indicated that the different genomic regions evolved along different topologies, supporting the hypothesis of recombination. Therefore, our data imply that recombination between R5 and X4 HIV-1 variants occurs in vivo.


Assuntos
Evolução Molecular , Produtos do Gene gag/genética , HIV-1/genética , Receptores CCR5/metabolismo , Receptores CXCR4/metabolismo , Recombinação Genética , Análise de Sequência de DNA , Linhagem Celular , Produtos do Gene gag/química , Produtos do Gene gag/metabolismo , Proteína gp120 do Envelope de HIV/genética , Infecções por HIV/virologia , Humanos , Dados de Sequência Molecular , Fragmentos de Peptídeos/genética
11.
Trends Microbiol ; 10(6): 275-8, 2002 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-12088663

RESUMO

Early infection with HIV-1 is dominated by CCR5-tropic (R5, non-syncytium-inducing) viruses. The evolution of CXCR4-tropic (X4, syncytium-inducing) viruses occurs later in the infection and is associated with rapid disease progression. Here, we propose that the tropism of X4 viruses for naive CD4+ T cells is disadvantageous in early infection owing to the low division rate of these cells. In healthy individuals, the division rate of memory cells is nearly ten times higher than that of naive cells and thus the memory-cell tropism of R5 viruses could account for their dominance early in infection. As the division rate of naive T cells increases with CD4+ depletion, X4 viruses come to dominate in late disease.


Assuntos
Linfócitos T CD4-Positivos/virologia , Infecções por HIV/imunologia , HIV-1/patogenicidade , Macrófagos/virologia , Infecções por HIV/metabolismo , Humanos , Memória Imunológica , Modelos Biológicos , Receptores CCR5/metabolismo , Receptores CXCR4/metabolismo , Tropismo
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