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1.
Int J Mol Sci ; 25(17)2024 Aug 30.
Artigo em Inglês | MEDLINE | ID: mdl-39273400

RESUMO

Zika virus (ZIKV), transmitted by Aedes mosquitoes, has been a global health concern since 2007. It primarily causes fetal microcephaly and neuronal defects through maternal transmission and induces neurological complications in adults. Recent studies report elevated proinflammatory cytokines and persistent neurological alterations post recovery, but the in vivo mechanisms remain unclear. In our study, viral RNA loads in the brains of mice infected with ZIKV peaked at 7 days post infection and returned to baseline by day 21, indicating recovery. RNA sequencing of the cerebral cortex at 7 and 21 days revealed upregulated genes related to neuroinflammation and microglial activation. Histological analyses indicated neuronal cell death and altered neurite morphology owing to severe neuroinflammation. Additionally, sustained microglial activation was associated with increased phospho-Tau levels, constituting a marker of neurodegeneration. These findings highlight how persistent microglial activation leads to neuronal dysfunction post ZIKV recovery, providing insights into the molecular pathogenesis of ZIKV-induced brain abnormalities.


Assuntos
Microglia , Neurônios , Infecção por Zika virus , Zika virus , Animais , Infecção por Zika virus/virologia , Infecção por Zika virus/patologia , Infecção por Zika virus/metabolismo , Microglia/virologia , Microglia/metabolismo , Microglia/patologia , Camundongos , Zika virus/fisiologia , Zika virus/patogenicidade , Neurônios/virologia , Neurônios/metabolismo , Neurônios/patologia , Sinapses/patologia , Sinapses/metabolismo , Encéfalo/virologia , Encéfalo/patologia , Encéfalo/metabolismo , Modelos Animais de Doenças , Feminino , Doenças Neuroinflamatórias/patologia , Doenças Neuroinflamatórias/virologia , Doenças Neuroinflamatórias/etiologia , Doenças Neuroinflamatórias/metabolismo , Carga Viral
2.
Commun Biol ; 7(1): 1089, 2024 Sep 05.
Artigo em Inglês | MEDLINE | ID: mdl-39237833

RESUMO

Viruses depend on host metabolic pathways and flaviviruses are specifically linked to lipid metabolism. During dengue virus infection lipid droplets are degraded to fuel replication and Zika virus (ZIKV) infection depends on triglyceride biosynthesis. Here, we systematically investigated the neutral lipid-synthesizing enzymes diacylglycerol O-acyltransferases (DGAT) and the sterol O-acyltransferase (SOAT) 1 in orthoflavivirus infection. Downregulation of DGAT1 and SOAT1 compromises ZIKV infection in hepatoma cells but only SOAT1 and not DGAT inhibitor treatment reduces ZIKV infection. DGAT1 interacts with the ZIKV capsid protein, indicating that protein interaction might be required for ZIKV replication. Importantly, inhibition of SOAT1 severely impairs ZIKV infection in neural cell culture models and cerebral organoids. SOAT1 inhibitor treatment decreases extracellular viral RNA and E protein level and lowers the specific infectivity of virions, indicating that ZIKV morphogenesis is compromised, likely due to accumulation of free cholesterol. Our findings provide insights into the importance of cholesterol and cholesterol ester balance for efficient ZIKV replication and implicate SOAT1 as an antiviral target.


Assuntos
Organoides , Esterol O-Aciltransferase , Replicação Viral , Infecção por Zika virus , Zika virus , Humanos , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Zika virus/fisiologia , Organoides/virologia , Organoides/metabolismo , Replicação Viral/efeitos dos fármacos , Esterol O-Aciltransferase/metabolismo , Esterol O-Aciltransferase/antagonistas & inibidores , Animais , Antivirais/farmacologia
3.
Biosensors (Basel) ; 14(8)2024 Jul 25.
Artigo em Inglês | MEDLINE | ID: mdl-39194591

RESUMO

Orthoflaviviruses cause a major threat to global public health, and no antiviral treatment is available yet. Zika virus (ZIKV) entry, together with many other viruses, is known to be enhanced by phosphatidylserine (PS) receptors such as T-cell immunoglobulin mucin domain protein 1 (TIM-1). In this study, we demonstrate for the first time, using cell-based electrical impedance (CEI) biosensing, that ZIKV entry is also enhanced by expression of CD300a, another PS receptor. Furthermore, inhibiting CD300a in immature monocyte-derived dendritic cells partially but significantly inhibits ZIKV replication. As we have previously demonstrated that CEI is a useful tool to study Orthoflavivirus infection in real time, we now use this technology to determine how these PS receptors influence the kinetics of in vitro ZIKV infection. Results show that ZIKV entry is highly sensitive to minor changes in TIM-1 expression, both after overexpression of TIM-1 in infection-resistant HEK293T cells, as well as after partial knockout of TIM-1 in susceptible A549 cells. These results are confirmed by quantification of viral copy number and viral infectivity, demonstrating that CEI is highly suited to study and compare virus-host interactions. Overall, the results presented here demonstrate the potential of targeting this universal viral entry pathway.


Assuntos
Impedância Elétrica , Receptor Celular 1 do Vírus da Hepatite A , Internalização do Vírus , Infecção por Zika virus , Zika virus , Humanos , Receptor Celular 1 do Vírus da Hepatite A/metabolismo , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Células HEK293 , Células A549 , Receptores Imunológicos/metabolismo , Replicação Viral , Técnicas Biossensoriais , Lectina 1 Semelhante a Ig de Ligação ao Ácido Siálico
4.
Proc Natl Acad Sci U S A ; 121(34): e2403235121, 2024 Aug 20.
Artigo em Inglês | MEDLINE | ID: mdl-39145933

RESUMO

The ZIKA virus (ZIKV) evades the host immune response by degrading STAT2 through its NS5 protein, thereby inhibiting type I interferon (IFN)-mediated antiviral immunity. However, the molecular mechanism underlying this process has remained elusive. In this study, we performed a genome-wide CRISPR/Cas9 screen, revealing that ZSWIM8 as the substrate receptor of Cullin3-RING E3 ligase is required for NS5-mediated STAT2 degradation. Genetic depletion of ZSWIM8 and CUL3 substantially impeded NS5-mediated STAT2 degradation. Biochemical analysis illuminated that NS5 enhances the interaction between STAT2 and the ZSWIM8-CUL3 E3 ligase complex, thereby facilitating STAT2 ubiquitination. Moreover, ZSWIM8 knockout endowed A549 and Huh7 cells with partial resistance to ZIKV infection and protected cells from the cytopathic effects induced by ZIKV, which was attributed to the restoration of STAT2 levels and the activation of IFN signaling. Subsequent studies in a physiologically relevant model, utilizing human neural progenitor cells, demonstrated that ZSWIM8 depletion reduced ZIKV infection, resulting from enhanced IFN signaling attributed to the sustained levels of STAT2. Our findings shed light on the role of ZIKV NS5, serving as the scaffold protein, reprograms the ZSWIM8-CUL3 E3 ligase complex to orchestrate STAT2 proteasome-dependent degradation, thereby facilitating evasion of IFN antiviral signaling. Our study provides unique insights into ZIKV-host interactions and holds promise for the development of antivirals and prophylactic vaccines.


Assuntos
Proteínas Culina , Interferon Tipo I , Proteólise , Fator de Transcrição STAT2 , Transdução de Sinais , Ubiquitina-Proteína Ligases , Ubiquitinação , Proteínas não Estruturais Virais , Infecção por Zika virus , Zika virus , Humanos , Fator de Transcrição STAT2/metabolismo , Zika virus/imunologia , Zika virus/fisiologia , Zika virus/metabolismo , Proteínas não Estruturais Virais/metabolismo , Proteínas não Estruturais Virais/genética , Interferon Tipo I/metabolismo , Ubiquitina-Proteína Ligases/metabolismo , Ubiquitina-Proteína Ligases/genética , Infecção por Zika virus/metabolismo , Infecção por Zika virus/imunologia , Infecção por Zika virus/virologia , Proteínas Culina/metabolismo , Células A549 , Células HEK293 , Sistemas CRISPR-Cas
5.
RNA Biol ; 21(1): 1-10, 2024 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-39183472

RESUMO

One of the most recent advances in the analysis of viral RNA-cellular protein interactions is the Comprehensive Identification of RNA-binding Proteins by Mass Spectrometry (ChIRP-MS). Here, we used ChIRP-MS in mock-infected and Zika-infected wild-type cells and cells knockout for the zinc finger CCCH-type antiviral protein 1 (ZAP). We characterized 'ZAP-independent' and 'ZAP-dependent' cellular protein interactomes associated with flavivirus RNA and found that ZAP affects cellular proteins associated with Zika virus RNA. The ZAP-dependent interactome identified with ChIRP-MS provides potential ZAP co-factors for antiviral activity against Zika virus and possibly other viruses. Identifying the full spectrum of ZAP co-factors and mechanisms of how they act will be critical to understanding the ZAP antiviral system and may contribute to the development of antivirals.


Assuntos
RNA Viral , Proteínas de Ligação a RNA , Infecção por Zika virus , Zika virus , Zika virus/genética , Zika virus/fisiologia , Zika virus/metabolismo , Humanos , RNA Viral/metabolismo , RNA Viral/genética , Proteínas de Ligação a RNA/metabolismo , Proteínas de Ligação a RNA/genética , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Ligação Proteica , Interações Hospedeiro-Patógeno/genética , Espectrometria de Massas , Células HEK293
6.
EMBO Mol Med ; 16(8): 1817-1839, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-39009885

RESUMO

Zika virus (ZIKV) infection may lead to severe neurological consequences, including seizures, and early infancy death. However, the involved mechanisms are still largely unknown. TRPC channels play an important role in regulating nervous system excitability and are implicated in seizure development. We investigated whether TRPCs might be involved in the pathogenesis of ZIKV infection. We found that ZIKV infection increases TRPC4 expression in host cells via the interaction between the ZIKV-NS3 protein and CaMKII, enhancing TRPC4-mediated calcium influx. Pharmacological inhibition of CaMKII decreased both pCREB and TRPC4 protein levels, whereas the suppression of either TRPC4 or CaMKII improved the survival rate of ZIKV-infected cells and reduced viral protein production, likely by impeding the replication phase of the viral life cycle. TRPC4 or CaMKII inhibitors also reduced seizures and increased the survival of ZIKV-infected neonatal mice and blocked the spread of ZIKV in brain organoids derived from human-induced pluripotent stem cells. These findings suggest that targeting CaMKII or TRPC4 may offer a promising approach for developing novel anti-ZIKV therapies, capable of preventing ZIKV-associated seizures and death.


Assuntos
Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina , Canais de Cátion TRPC , Infecção por Zika virus , Zika virus , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Animais , Humanos , Zika virus/fisiologia , Zika virus/efeitos dos fármacos , Camundongos , Canais de Cátion TRPC/metabolismo , Canais de Cátion TRPC/antagonistas & inibidores , Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina/metabolismo , Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina/antagonistas & inibidores , Replicação Viral/efeitos dos fármacos , Células HEK293 , Proteínas Virais/metabolismo , Convulsões/virologia , Convulsões/metabolismo , Convulsões/tratamento farmacológico , Proteases Virais , Serina Endopeptidases , Nucleosídeo-Trifosfatase , RNA Helicases DEAD-box
7.
FASEB J ; 38(13): e23799, 2024 Jul 15.
Artigo em Inglês | MEDLINE | ID: mdl-38979938

RESUMO

Maternal Zika virus (ZIKV) infection during pregnancy has been associated with severe intrauterine growth restriction (IUGR), placental damage, metabolism disturbances, and newborn neurological abnormalities. Here, we investigated the impact of maternal ZIKV infection on placental nutrient transporters and nutrient-sensitive pathways. Immunocompetent (C57BL/6) mice were injected with Low (103 PFU-ZIKVPE243) or High (5 × 107 PFU-ZIKVPE243) ZIKV titers at gestational day (GD) 12.5, and tissue was collected at GD18.5 (term). Fetal-placental growth was impaired in male fetuses, which exhibited higher placental expression of the ZIKV infective marker, eukaryotic translation initiation factor 2 (eIF2α), but lower levels of phospho-eIF2α. There were no differences in fetal-placental growth in female fetuses, which exhibited no significant alterations in placental ZIKV infective markers. Furthermore, ZIKV promoted increased expression of glucose transporter type 1 (Slc2a1/Glut1) and decreased levels of glucose-6-phosphate in female placentae, with no differences in amino acid transport potential. In contrast, ZIKV did not impact glucose transporters in male placentae but downregulated sodium-coupled neutral amino acid 2 (Snat2) transporter expression. We also observed sex-dependent differences in the hexosamine biosynthesis pathway (HBP) and O-GlcNAcylation in ZIKV-infected pregnancies, showing that ZIKV can disturb placental nutrient sensing. Our findings highlight molecular alterations in the placenta caused by maternal ZIKV infection, shedding light on nutrient transport, sensing, and availability. Our results also suggest that female and male placentae employ distinct coping mechanisms in response to ZIKV-induced metabolic changes, providing insights into therapeutic approaches for congenital Zika syndrome.


Assuntos
Desenvolvimento Fetal , Camundongos Endogâmicos C57BL , Placenta , Transdução de Sinais , Infecção por Zika virus , Zika virus , Animais , Feminino , Infecção por Zika virus/metabolismo , Infecção por Zika virus/virologia , Gravidez , Camundongos , Placenta/metabolismo , Placenta/virologia , Masculino , Desenvolvimento Fetal/fisiologia , Complicações Infecciosas na Gravidez/virologia , Complicações Infecciosas na Gravidez/metabolismo , Nutrientes/metabolismo , Transportador de Glucose Tipo 1/metabolismo
8.
PLoS Pathog ; 20(7): e1012408, 2024 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-39038037

RESUMO

c-FLIP functions as a dual regulator of apoptosis and inflammation, yet its implications in Zika virus (ZIKV) infection remain partially understood, especially in the context of ZIKV-induced congenital Zika syndrome (CZS) where both apoptosis and inflammation play pivotal roles. Our findings demonstrate that c-FLIP promotes ZIKV infection in placental cells and myeloid-derived macrophages, involving inflammation and caspase-8/3-mediated apoptosis. Moreover, our observations reveal that c-FLIP augments ZIKV infection in multiple tissues, including blood cell, spleen, uterus, testis, and the brain of mice. Notably, the partial deficiency of c-FLIP provides protection to embryos against ZIKV-induced CZS, accompanied by a reduction in caspase-3-mediated apoptosis. Additionally, we have found a distinctive parental effect of c-FLIP influencing ZIKV replication in fetal heads. In summary, our study reveals the critical role of c-FLIP as a positive regulator in caspase-8/3-mediated apoptosis during ZIKV infection, significantly contributing to the development of CZS.


Assuntos
Apoptose , Proteína Reguladora de Apoptosis Semelhante a CASP8 e FADD , Caspase 3 , Caspase 8 , Infecção por Zika virus , Zika virus , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Infecção por Zika virus/patologia , Proteína Reguladora de Apoptosis Semelhante a CASP8 e FADD/metabolismo , Animais , Camundongos , Caspase 8/metabolismo , Feminino , Humanos , Caspase 3/metabolismo , Gravidez , Placenta/virologia , Placenta/metabolismo , Placenta/patologia , Camundongos Endogâmicos C57BL , Replicação Viral , Camundongos Knockout
9.
Mol Ther ; 32(8): 2641-2661, 2024 Aug 07.
Artigo em Inglês | MEDLINE | ID: mdl-38822526

RESUMO

Vagus nerve regulates viral infection and inflammation via the alpha 7 nicotinic acetylcholine receptor (α7 nAChR); however, the role of α7 nAChR in ZIKA virus (ZIKV) infection, which can cause severe neurological diseases such as microcephaly and Guillain-Barré syndrome, remains unknown. Here, we first examined the role of α7 nAChR in ZIKV infection in vitro. A broad effect of α7 nAChR activation was identified in limiting ZIKV infection in multiple cell lines. Combined with transcriptomics analysis, we further demonstrated that α7 nAChR activation promoted autophagy and ferroptosis pathways to limit cellular ZIKV viral loads. Additionally, activation of α7 nAChR prevented ZIKV-induced p62 nucleus accumulation, which mediated an enhanced autophagy pathway. By regulating proteasome complex and an E3 ligase NEDD4, activation of α7 nAChR resulted in increased amount of cellular p62, which further enhanced the ferroptosis pathway to reduce ZIKV infection. Moreover, utilizing in vivo neonatal mouse models, we showed that α7 nAChR is essential in controlling the disease severity of ZIKV infection. Taken together, our findings identify an α7 nAChR-mediated effect that critically contributes to limiting ZIKV infection, and α7 nAChR activation offers a novel strategy for combating ZIKV infection and its complications.


Assuntos
Autofagia , Ferroptose , Infecção por Zika virus , Zika virus , Receptor Nicotínico de Acetilcolina alfa7 , Animais , Humanos , Camundongos , Receptor Nicotínico de Acetilcolina alfa7/metabolismo , Receptor Nicotínico de Acetilcolina alfa7/genética , Linhagem Celular , Modelos Animais de Doenças , Carga Viral , Zika virus/fisiologia , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo
10.
Arch Virol ; 169(7): 135, 2024 Jun 06.
Artigo em Inglês | MEDLINE | ID: mdl-38839691

RESUMO

Monocytes are the primary targets of Zika virus (ZIKV) and are associated with ZIKV pathogenesis. Currently, there is no effective treatment for ZIKV infection. It is known that 1,25-dihydroxy vitamin D3 (VitD3) has strong antiviral activity in dengue virus-infected macrophages, but it is unknown whether VitD3 inhibits ZIKV infection in monocytes. We investigated the relationship between ZIKV infection and the expression of genes of the VitD3 pathway, as well as the inflammatory response of infected monocytes in vitro. ZIKV replication was evaluated using a plaque assay, and VitD3 pathway gene expression was analyzed by RT-qPCR. Pro-inflammatory cytokines/chemokines were quantified using ELISA. We found that VitD3 did not suppress ZIKV replication. The results showed a significant decrease in the expression of vitamin D3 receptor (VDR), cytochrome P450 family 24 subfamily A member 1 (CYP24A1), and cathelicidin antimicrobial peptide (CAMP) genes upon ZIKV infection. Treatment with VitD3 was unable to down-modulate production of pro-inflammatory cytokines, except TNF-α, and chemokines. This suggests that ZIKV infection inhibits the expression of VitD3 pathway genes, thereby preventing VitD3-dependent inhibition of viral replication and the inflammatory response. This is the first study to examine the effects of VitD3 in the context of ZIKV infection, and it has important implications for the role of VitD3 in the control of viral replication and inflammatory responses during monocyte infection.


Assuntos
Catelicidinas , Monócitos , Replicação Viral , Vitamina D3 24-Hidroxilase , Infecção por Zika virus , Zika virus , Humanos , Peptídeos Catiônicos Antimicrobianos/metabolismo , Peptídeos Catiônicos Antimicrobianos/farmacologia , Citocinas/metabolismo , Citocinas/genética , Monócitos/virologia , Monócitos/metabolismo , Monócitos/imunologia , Receptores de Calcitriol/metabolismo , Receptores de Calcitriol/genética , Replicação Viral/efeitos dos fármacos , Vitamina D3 24-Hidroxilase/genética , Vitamina D3 24-Hidroxilase/metabolismo , Zika virus/fisiologia , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo
11.
PLoS Pathog ; 20(6): e1012355, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38935808

RESUMO

Stress granules (SGs), formed by untranslated messenger ribonucleoproteins (mRNPs) during cellular stress in eukaryotes, have been linked to flavivirus interference without clear understanding. This study reveals the role of Zika virus (ZIKV) NS2B as a scaffold protein mediating interaction between protein phosphatase 1α (PP1α) and eukaryotic initiation factor 2α (eIF2α). This interaction promotes eIF2α dephosphorylation by PP1α, inhibiting SG formation. The NS2B-PP1α complex exhibits remarkable stability, resisting ubiquitin-induced degradation and amplifying eIF2α dephosphorylation, thus promoting ZIKV replication. In contrast, the NS2BV35A mutant, interacting exclusively with eIF2α, fails to inhibit SG formation, resulting in reduced viral replication and diminished impact on brain organoid growth. These findings reveal PP1α's dual role in ZIKV infection, inducing interferon production as an antiviral factor and suppressing SG formation as a viral promoter. Moreover, we found that NS2B also serves as a versatile mechanism employed by flaviviruses to counter host antiviral defenses, primarily by broadly inhibiting SG formation. This research advances our comprehension of the complex interplay in flavivirus-host interactions, offering potential for innovative therapeutic strategies against flavivirus infections.


Assuntos
Fator de Iniciação 2 em Eucariotos , Proteína Fosfatase 1 , Grânulos de Estresse , Proteínas não Estruturais Virais , Replicação Viral , Infecção por Zika virus , Zika virus , Zika virus/fisiologia , Replicação Viral/fisiologia , Humanos , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Proteínas não Estruturais Virais/metabolismo , Proteínas não Estruturais Virais/genética , Proteína Fosfatase 1/metabolismo , Fator de Iniciação 2 em Eucariotos/metabolismo , Grânulos de Estresse/metabolismo , Animais
12.
Sci Signal ; 17(837): eadi9844, 2024 May 21.
Artigo em Inglês | MEDLINE | ID: mdl-38771918

RESUMO

Oligoadenylate synthetase 3 (OAS3) and ribonuclease L (RNase L) are components of a pathway that combats viral infection in mammals. Upon detection of viral double-stranded RNA (dsRNA), OAS3 synthesizes 2'-5'-oligo(A), which activates the RNase domain of RNase L by promoting the homodimerization and oligomerization of RNase L monomers. Activated RNase L rapidly degrades all cellular mRNAs, shutting off several cellular processes. We sought to understand the molecular mechanisms underlying the rapid activation of RNase L in response to viral infection. Through superresolution microscopy and live-cell imaging, we showed that OAS3 and RNase L concentrated into higher-order cytoplasmic complexes known as dsRNA-induced foci (dRIF) in response to dsRNA or infection with dengue virus, Zika virus, or West Nile virus. The concentration of OAS3 and RNase L at dRIF corresponded with the activation of RNase L-mediated RNA decay. We showed that dimerized/oligomerized RNase L concentrated in a liquid-like shell surrounding a core OAS3-dRIF structure and dynamically exchanged with the cytosol. These data establish that the condensation of dsRNA, OAS3, and RNase L into dRIF is a molecular switch that promotes the rapid activation of RNase L upon detection of dsRNA in mammalian cells.


Assuntos
2',5'-Oligoadenilato Sintetase , Endorribonucleases , RNA de Cadeia Dupla , Zika virus , Endorribonucleases/metabolismo , Endorribonucleases/genética , Endorribonucleases/química , Humanos , 2',5'-Oligoadenilato Sintetase/metabolismo , 2',5'-Oligoadenilato Sintetase/genética , 2',5'-Oligoadenilato Sintetase/química , RNA de Cadeia Dupla/metabolismo , RNA de Cadeia Dupla/química , RNA de Cadeia Dupla/genética , Zika virus/metabolismo , Animais , Vírus da Dengue/metabolismo , RNA Viral/metabolismo , RNA Viral/genética , Estabilidade de RNA , Vírus do Nilo Ocidental/metabolismo , Vírus do Nilo Ocidental/genética , Infecção por Zika virus/metabolismo , Infecção por Zika virus/virologia , Ativação Enzimática , Células HeLa , Células HEK293
13.
Sci Rep ; 14(1): 10407, 2024 05 06.
Artigo em Inglês | MEDLINE | ID: mdl-38710792

RESUMO

Glucose regulated protein 78 (GRP78) is a chaperone protein that is a central mediator of the unfolded protein response, a key cellular stress response pathway. GRP78 has been shown to be critically required for infection and replication of a number of flaviviruses, and to interact with both non-structural (NS) and structural flavivirus proteins. However, the nature of the specific interaction between GRP78 and viral proteins remains largely unknown. This study aimed to characterize the binding domain and critical amino acid residues that mediate the interaction of GRP78 to ZIKV E and NS1 proteins. Recombinant EGFP fused GRP78 and individual subdomains (the nucleotide binding domain (NBD) and the substrate binding domain (SBD)) were used as a bait protein and co-expressed with full length or truncated ZIKV E and NS1 proteins in HEK293T/17 cells. Protein-protein interactions were determined by a co-immunoprecipitation assay. From the results, both the NBD and the SBD of GRP78 were crucial for an effective interaction. Single amino acid substitutions in the SBD showed that R492E and T518A mutants significantly reduced the binding affinity of GRP78 to ZIKV E and NS1 proteins. Notably, the interaction of GRP78 with ZIKV E was stably maintained against various single amino acid substitutions on ZIKV E domain III and with all truncated ZIKV E and NS1 proteins. Collectively, the results suggest that the principal binding between GRP78 and viral proteins is mainly a classic canonical chaperone protein-client interaction. The blocking of GRP78 chaperone function effectively inhibited ZIKV infection and replication in neuronal progenitor cells. Our findings reveal that GRP78 is a potential host target for anti-ZIKV therapeutics.


Assuntos
Chaperona BiP do Retículo Endoplasmático , Proteínas de Choque Térmico , Ligação Proteica , Proteínas não Estruturais Virais , Zika virus , Chaperona BiP do Retículo Endoplasmático/metabolismo , Zika virus/metabolismo , Zika virus/fisiologia , Humanos , Proteínas não Estruturais Virais/metabolismo , Proteínas não Estruturais Virais/genética , Proteínas de Choque Térmico/metabolismo , Proteínas de Choque Térmico/genética , Células HEK293 , Proteínas do Envelope Viral/metabolismo , Proteínas do Envelope Viral/genética , Infecção por Zika virus/metabolismo , Infecção por Zika virus/virologia , Replicação Viral
14.
J Virol ; 98(6): e0170523, 2024 Jun 13.
Artigo em Inglês | MEDLINE | ID: mdl-38742902

RESUMO

Long non-coding RNAs (lncRNAs) represent a new group of host factors involved in viral infection. Current study identified an intergenic lncRNA, LINC08148, as a proviral factor of Zika virus (ZIKV) and Dengue virus 2 (DENV2). Knockout (KO) or silencing of LINC08148 decreases the replication of ZIKV and DENV2. LINC08148 mainly acts at the endocytosis step of ZIKV but at a later stage of DENV2. RNA-seq analysis reveals that LINC08148 knockout downregulates the transcription levels of five endocytosis-related genes including AP2B1, CHMP4C, DNM1, FCHO1, and Src. Among them, loss of Src significantly decreases the uptake of ZIKV. Trans-complementation of Src in the LINC08148KO cells largely restores the caveola-mediated endocytosis of ZIKV, indicating that the proviral effect of LINC08148 is exerted through Src. Finally, LINC08148 upregulates the Src transcription through associating with its transcription factor SP1. This work establishes an essential role of LINC08148 in the ZIKV entry, underscoring a significance of lncRNAs in the viral infection. IMPORTANCE: Long non-coding RNAs (lncRNAs), like proteins, participate in viral infection. However, functions of most lncRNAs remain unknown. In this study, we performed a functional screen based on microarray data and identified a new proviral lncRNA, LINC08148. Then, we uncovered that LINC08148 is involved in the caveola-mediated endocytosis of ZIKV, rather than the classical clathrin-mediated endocytosis. Mechanistically, LINC08148 upregulates the transcription of Src, an initiator of caveola-mediated endocytosis, through binding to its transcription factor SP1. This study identifies a new lncRNA involved in the ZIKV infection, suggesting lncRNAs and cellular proteins are closely linked and cooperate to regulate viral infection.


Assuntos
Endocitose , RNA Longo não Codificante , Internalização do Vírus , Infecção por Zika virus , Zika virus , RNA Longo não Codificante/metabolismo , RNA Longo não Codificante/genética , Zika virus/genética , Zika virus/fisiologia , Humanos , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Infecção por Zika virus/genética , Fator de Transcrição Sp1/metabolismo , Fator de Transcrição Sp1/genética , Cavéolas/metabolismo , Animais , Replicação Viral , Regulação para Cima , Vírus da Dengue/fisiologia , Vírus da Dengue/genética , Chlorocebus aethiops , Células HEK293 , Células Vero , Quinases da Família src/metabolismo , Quinases da Família src/genética
15.
Emerg Microbes Infect ; 13(1): 2348528, 2024 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-38662785

RESUMO

Zika is a systemic inflammatory disease caused by infection with Zika virus (ZIKV). ZIKV infection in adults is associated with encephalitis marked by elevated expression of pro-inflammatory cytokines and chemokines, as well as increased brain infiltration of immune cells. In this study, we demonstrate that ZIKV encephalitis in a mouse infection model exhibits increased brain TSPO expression. TSPO expression on brain-resident and infiltrating immune cells in ZIKV infection correlates with disease and inflammation status in the brain. Brain TSPO expression can also be sensitively detected ex vivo and in vitro using radioactive small molecule probes that specifically bind to TSPO, such as [3H]PK11195. TSPO expression on brain-resident and infiltrating immune cells is a biomarker of ZIKV neuroinflammation, which can also be a general biomarker of acute viral neuroinflammatory disease.


Assuntos
Biomarcadores , Encéfalo , Doenças Neuroinflamatórias , Receptores de GABA , Infecção por Zika virus , Zika virus , Animais , Infecção por Zika virus/virologia , Infecção por Zika virus/imunologia , Infecção por Zika virus/metabolismo , Camundongos , Receptores de GABA/metabolismo , Receptores de GABA/genética , Zika virus/imunologia , Encéfalo/virologia , Encéfalo/metabolismo , Encéfalo/patologia , Doenças Neuroinflamatórias/virologia , Doenças Neuroinflamatórias/imunologia , Doenças Neuroinflamatórias/metabolismo , Modelos Animais de Doenças , Humanos , Camundongos Endogâmicos C57BL , Feminino , Citocinas/metabolismo
16.
Viruses ; 16(4)2024 04 18.
Artigo em Inglês | MEDLINE | ID: mdl-38675970

RESUMO

Treating brain disease is challenging, and the Zika virus (ZIKV) presents a unique obstacle due to its neuroinvasive nature. In this review, we discuss the immunopathogenesis of ZIKV and explore how the virus interacts with the body's immune responses and the role of the protein Mfsd2a in maintaining the integrity of the blood-brain barrier (BBB) during ZIKV neuroinvasion. ZIKV has emerged as a significant public health concern due to its association with severe neurological problems, including microcephaly and Gillain-Barré Syndrome (GBS). Understanding its journey through the brain-particularly its interaction with the placenta and BBB-is crucial. The placenta, which is designed to protect the fetus, becomes a pathway for ZIKV when infected. The BBB is composed of brain endothelial cells, acts as a second barrier, and protects the fetal brain. However, ZIKV finds ways to disrupt these barriers, leading to potential damage. This study explores the mechanisms by which ZIKV enters the CNS and highlights the role of transcytosis, which allows the virus to move through the cells without significantly disrupting the BBB. Although the exact mechanisms of transcytosis are unclear, research suggests that ZIKV may utilize this pathway.


Assuntos
Barreira Hematoencefálica , Células Endoteliais , Transcitose , Infecção por Zika virus , Zika virus , Humanos , Zika virus/fisiologia , Barreira Hematoencefálica/virologia , Barreira Hematoencefálica/metabolismo , Infecção por Zika virus/metabolismo , Infecção por Zika virus/virologia , Células Endoteliais/virologia , Células Endoteliais/metabolismo , Animais , Gravidez , Feminino , Permeabilidade Capilar , Placenta/virologia , Placenta/metabolismo , Encéfalo/virologia , Encéfalo/metabolismo
17.
J Cell Sci ; 137(10)2024 05 15.
Artigo em Inglês | MEDLINE | ID: mdl-38660993

RESUMO

Zika virus (ZIKV) has gained notoriety in recent years because there are no targeted therapies or vaccines available so far. Caveolin-1 (Cav-1) in host cells plays crucial functions in the invasion of many viruses. However, its specific involvement in ZIKV infection has remained unclear. Here, we reveal that depleting Cav-1 leads to a substantial reduction in ZIKV RNA levels, protein expression and viral particle production, indicating that ZIKV exploits Cav-1 for its infection. By dissecting each stage of the viral life cycle, we unveil that, unlike its invasion role in many other viruses, Cav-1 depletion selectively impairs ZIKV replication, resulting in altered replication dynamics and reduced strand-specific RNA levels, but does not affect viral entry, maturation and release. These results reveal an unforeseen function of Cav-1 in facilitating ZIKV replication, which provides new insights into the intricate interaction between Cav-1 and ZIKV and underscores Cav-1 as a potential candidate for anti-ZIKV approaches.


Assuntos
Caveolina 1 , RNA Viral , Replicação Viral , Infecção por Zika virus , Zika virus , Caveolina 1/metabolismo , Caveolina 1/genética , Zika virus/fisiologia , Zika virus/metabolismo , Humanos , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , RNA Viral/metabolismo , RNA Viral/genética , Animais , Interações Hospedeiro-Patógeno , Chlorocebus aethiops , Células Vero , Células HEK293 , Internalização do Vírus , Replicação do RNA
18.
Biochimie ; 221: 75-80, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38307244

RESUMO

Alterations in cell cycle regulation contribute to Zika virus (ZIKV)-associated pathogenesis and may have implications for the development of therapeutic avenues. As a matter of fact, ZIKV alters cell cycle progression at multiple stages, including G1, S, G2, and M phases. During a cell cycle, the progression of mitosis is particularly controlled to avoid any abnormalities in cell division. In this regard, the critical metaphase-anaphase transition is triggered by the activation of anaphase-promoting complex/cyclosome (APC/C) by its E3 ubiquitin ligase subunit Cdc20. Cdc20 recognizes substrates by interacting with a destruction box motif (D-box). Recently, the ZIKV nonstructural protein 5 (NS5), one of the most highly conserved flavivirus proteins, has been shown to localize to the centrosome in each pole and to spindle fibers during mitosis. Inducible expression of NS5 reveals an interaction of this viral factor with centrosomal proteins leading to an increase in the time required to complete mitosis. By analyzing the NS5 sequence, we discovered the presence of a D-box. Taken together, these data support the idea that, in addition to its role in viral replication, NS5 plays a critical role in the control of the cell cycle of infected cells and, more specifically, in the regulation of the mitotic spindle. Here we propose that the NS5 protein may interfere with the metaphase-anaphase progression, and thus cause the observed delay in mitosis via the regulation of APC/C.


Assuntos
Ciclossomo-Complexo Promotor de Anáfase , Mitose , Proteínas não Estruturais Virais , Infecção por Zika virus , Zika virus , Humanos , Ciclossomo-Complexo Promotor de Anáfase/metabolismo , Proteínas Cdc20/metabolismo , Ciclo Celular , Centrossomo/metabolismo , Proteínas não Estruturais Virais/metabolismo , Replicação Viral , Zika virus/fisiologia , Zika virus/metabolismo , Infecção por Zika virus/metabolismo , Infecção por Zika virus/virologia , Infecção por Zika virus/patologia
19.
Biochim Biophys Acta Mol Basis Dis ; 1870(5): 167097, 2024 06.
Artigo em Inglês | MEDLINE | ID: mdl-38408544

RESUMO

Zika virus (ZIKV) infection was first associated with Central Nervous System (CNS) infections in Brazil in 2015, correlated with an increased number of newborns with microcephaly, which ended up characterizing the Congenital Zika Syndrome (CZS). Here, we investigated the impact of ZIKV infection on the functionality of iPSC-derived astrocytes. Besides, we extrapolated our findings to a Brazilian cohort of 136 CZS children and validated our results using a mouse model. Interestingly, ZIKV infection in neuroprogenitor cells compromises cell migration and causes apoptosis but does not interfere in astrocyte generation. Moreover, infected astrocytes lost their ability to uptake glutamate while expressing more glutamate transporters and secreted higher levels of IL-6. Besides, infected astrocytes secreted factors that impaired neuronal synaptogenesis. Since these biological endophenotypes were already related to Autism Spectrum Disorder (ASD), we extrapolated these results to a cohort of children, now 6-7 years old, and found seven children with ASD diagnosis (5.14 %). Additionally, mice infected by ZIKV revealed autistic-like behaviors, with a significant increase of IL-6 mRNA levels in the brain. Considering these evidence, we inferred that ZIKV infection during pregnancy might lead to synaptogenesis impairment and neuroinflammation, which could increase the risk for ASD.


Assuntos
Astrócitos , Transtorno do Espectro Autista , Doenças Neuroinflamatórias , Sinapses , Infecção por Zika virus , Zika virus , Infecção por Zika virus/patologia , Infecção por Zika virus/metabolismo , Infecção por Zika virus/virologia , Infecção por Zika virus/complicações , Transtorno do Espectro Autista/virologia , Transtorno do Espectro Autista/metabolismo , Transtorno do Espectro Autista/etiologia , Transtorno do Espectro Autista/patologia , Humanos , Animais , Camundongos , Zika virus/fisiologia , Feminino , Criança , Sinapses/metabolismo , Sinapses/patologia , Doenças Neuroinflamatórias/virologia , Doenças Neuroinflamatórias/metabolismo , Doenças Neuroinflamatórias/patologia , Doenças Neuroinflamatórias/etiologia , Astrócitos/virologia , Astrócitos/metabolismo , Astrócitos/patologia , Masculino , Interleucina-6/metabolismo , Interleucina-6/genética , Gravidez , Fatores de Risco , Células-Tronco Pluripotentes Induzidas/virologia , Células-Tronco Pluripotentes Induzidas/metabolismo , Brasil/epidemiologia , Modelos Animais de Doenças , Neurogênese
20.
EMBO J ; 43(9): 1690-1721, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38378891

RESUMO

Mosquitoes transmit many disease-relevant flaviviruses. Efficient viral transmission to mammalian hosts requires mosquito salivary factors. However, the specific salivary components facilitating viral transmission and their mechanisms of action remain largely unknown. Here, we show that a female mosquito salivary gland-specific protein, here named A. aegypti Neutrophil Recruitment Protein (AaNRP), facilitates the transmission of Zika and dengue viruses. AaNRP promotes a rapid influx of neutrophils, followed by virus-susceptible myeloid cells toward mosquito bite sites, which facilitates establishment of local infection and systemic dissemination. Mechanistically, AaNRP engages TLR1 and TLR4 of skin-resident macrophages and activates MyD88-dependent NF-κB signaling to induce the expression of neutrophil chemoattractants. Inhibition of MyD88-NF-κB signaling with the dietary phytochemical resveratrol reduces AaNRP-mediated enhancement of flavivirus transmission by mosquitoes. These findings exemplify how salivary components can aid viral transmission, and suggest a potential prophylactic target.


Assuntos
Aedes , Zika virus , Animais , Aedes/virologia , Aedes/metabolismo , Feminino , Zika virus/fisiologia , Camundongos , Vírus da Dengue/fisiologia , Proteínas e Peptídeos Salivares/metabolismo , Mosquitos Vetores/virologia , Proteínas de Insetos/metabolismo , Células Mieloides/virologia , Células Mieloides/metabolismo , Infecção por Zika virus/transmissão , Infecção por Zika virus/virologia , Infecção por Zika virus/metabolismo , Dengue/transmissão , Dengue/virologia , Dengue/metabolismo , NF-kappa B/metabolismo , Transdução de Sinais , Fator 88 de Diferenciação Mieloide/metabolismo , Fator 88 de Diferenciação Mieloide/genética
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