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1.
Int J Mol Sci ; 22(16)2021 Aug 21.
Article de Anglais | MEDLINE | ID: mdl-34445741

RÉSUMÉ

(1) Background: coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), has been linked to hematological dysfunctions, but there are little experimental data that explain this. Spike (S) and Nucleoprotein (N) proteins have been putatively associated with these dysfunctions. In this work, we analyzed the recruitment of hemoglobin (Hb) and other metabolites (hemin and protoporphyrin IX-PpIX) by SARS-Cov2 proteins using different approaches. (2) Methods: shotgun proteomics (LC-MS/MS) after affinity column adsorption identified hemin-binding SARS-CoV-2 proteins. The parallel synthesis of the peptides technique was used to study the interaction of the receptor bind domain (RBD) and N-terminal domain (NTD) of the S protein with Hb and in silico analysis to identify the binding motifs of the N protein. The plaque assay was used to investigate the inhibitory effect of Hb and the metabolites hemin and PpIX on virus adsorption and replication in Vero cells. (3) Results: the proteomic analysis by LC-MS/MS identified the S, N, M, Nsp3, and Nsp7 as putative hemin-binding proteins. Six short sequences in the RBD and 11 in the NTD of the spike were identified by microarray of peptides to interact with Hb and tree motifs in the N protein by in silico analysis to bind with heme. An inhibitory effect in vitro of Hb, hemin, and PpIX at different levels was observed. Strikingly, free Hb at 1mM suppressed viral replication (99%), and its interaction with SARS-CoV-2 was localized into the RBD region of the spike protein. (4) Conclusions: in this study, we identified that (at least) five proteins (S, N, M, Nsp3, and Nsp7) of SARS-CoV-2 recruit Hb/metabolites. The motifs of the RDB of SARS-CoV-2 spike, which binds Hb, and the sites of the heme bind-N protein were disclosed. In addition, these compounds and PpIX block the virus's adsorption and replication. Furthermore, we also identified heme-binding motifs and interaction with hemin in N protein and other structural (S and M) and non-structural (Nsp3 and Nsp7) proteins.


Sujet(s)
COVID-19/étiologie , Hémoglobines/métabolisme , SARS-CoV-2/métabolisme , Protéines virales non structurales/métabolisme , Protéines virales structurales/métabolisme , COVID-19/sang , Hémine/métabolisme , Hémoglobines/ultrastructure , Humains , Simulation de docking moléculaire , Liaison aux protéines , Domaines protéiques , Protéomique , Protoporphyrines/métabolisme , SARS-CoV-2/pathogénicité , Protéines virales non structurales/ultrastructure , Protéines virales structurales/ultrastructure , Attachement viral , Réplication virale
2.
Molecules ; 25(24)2020 Dec 10.
Article de Anglais | MEDLINE | ID: mdl-33321815

RÉSUMÉ

In recent years, intrinsically disordered proteins (IDPs) and disordered domains have attracted great attention. Many of them contain linear motifs that mediate interactions with other factors during formation of multicomponent protein complexes. NMR spectrometry is a valuable tool for characterizing this type of interactions on both amino acid (aa) and atomic levels. Alphaviruses encode a nonstructural protein nsP3, which drives viral replication complex assembly. nsP3 proteins contain over 200-aa-long hypervariable domains (HVDs), which exhibits no homology between different alphavirus species, are predicted to be intrinsically disordered and appear to be critical for alphavirus adaptation to different cells. Previously, we have shown that nsP3 HVD of chikungunya virus (CHIKV) is completely disordered with low tendency to form secondary structures in free form. In this new study, we used novel NMR approaches to assign the spectra for the nsP3 HVD of Venezuelan equine encephalitis virus (VEEV). The HVDs of CHIKV and VEEV have no homology but are both involved in replication complex assembly and function. We have found that VEEV nsP3 HVD is also mostly disordered but contains a short stable α-helix in its C-terminal fragment, which mediates interaction with the members of cellular Fragile X syndrome protein family. Our NMR data also suggest that VEEV HVD has several regions with tendency to form secondary structures.


Sujet(s)
Virus de l'encéphalite équine du Venezuela/enzymologie , Spectroscopie par résonance magnétique , Motifs et domaines d'intéraction protéique , Protéines virales non structurales/composition chimique , Séquence d'acides aminés , Animaux , Fractionnement chimique , Protéines intrinsèquement désordonnées/composition chimique , Liaison aux protéines , Solubilité , Relation structure-activité , Protéines virales non structurales/isolement et purification
3.
Braz. j. vet. res. anim. sci ; 57(2): e166086, maio 2020. ilus, tab, graf
Article de Anglais | VETINDEX | ID: vti-29255

RÉSUMÉ

Avian coronavirus (AvCoV) infects a range of tissues in chickens and several other avian species. Although the virus can be isolated in chicken embryos, only a few strains of the 6 genotypes/33 lineages can grow in cell lines, with the Beaudette strain (GI-1 lineage) being the most used for in vitro studies. Considering the differences between cell lines and chicken embryos as habitats for AvCoV, this study aimed to assess the diversity of the genes coding for the nonstructural protein 3 (nsp3) and spike envelope protein (S) after serial passages in BHK-21 and Vero cells. After 14 passages of an embryo-adapted Beaudette strain, the virus loads fluctuated in both cell lines, with the highest loads being 8.72 log genome copies/µL for Vero and 6.36 log genome copies/µL for BHK-21 cells. No polymorphisms were found for nsp3; regarding S, not only aa substitutions (Vero: 8th passage A150S, and 14th S150A; BHK-21: 4th S53F, 8th F53Y, and 8th S95R), but also minor variants could be detected on chromatograms with fluctuating intensities. As the regions of these aa substitutions are within the receptor-binding domain of S, it can be speculated that differences in cell receptors between Vero and BHK-21 cells and the speed of cell death led to the selection of different dominant strains, while the stability of nsp3 supports its function as a protease involved in AvCoV replication. In conclusion, AvCoV quasispecies evolution is influenced by the biological model under consideration, and a gradual transition is seen for minor and major variants.(AU)


O Coronavírus aviário AvCoV infecta uma variedade de tecidos de galinhas e de outras espécies aviárias. Apesar de este vírus poder ser isolado em ovos embrionados de galinha, apenas alguns dos 6 genótipos / 33 linhagens podem crescer em cultivo celular, sendo a cepa Beuadette (linhagem GI-11) a mais utilizada para estudos in vitro. Considerando as diferentes linhagens celulares e ovos embrionados como habitats para o AvCoV, este estudo teve por objetivo estudar a diversidade de genes que codificam para a proteína não-estrutural 3 (nsp3) e espícula (S) após passagens seriadas em células BHK-21 e VERO. Após 14 passagens, de uma amostra Beuadette adaptada a ovos embrionados, os títulos virais variaram em ambas as células, com os maiores títulos sendo de 8,72 log cópias genômicas/µL para Vero e 6,36 cópias genômicas/µL para BHK-21. Nenhum polimorfismo foi encontrando para nsp3. Considerando a proteína S, não somente foram encontradas substituições de aminoácidos (Vero: 8a passagem A150S e 14a passagem S150A; BHK-21: 4a passagem S53F, 8a passagem F53Y e S95R), mas também, variantes subconsensuais foram detectadas pelos cromatogramas com intensidades flutuantes. Uma vez que as regiões destes aa se encontram no domínio de ligação de receptor de S, pode-se especular que diferenças em receptores celulares entre Vero e BHK-21, além da velocidade da morte celular, levaram à seleção de diferentes cepas dominantes, enquanto que a estabilidade de nsp3 concorda com sua função como protease com papel na replicação de AvCoV. Como conclusão, a evolução de quase-espécies de AvCoV é influenciada pelo modelo biológico sob consideração e uma transição gradual é vista para variantes dominantes e subdominantes.(AU)


Sujet(s)
Embryon de poulet , Protéines virales non structurales , Infections à coronavirus/médecine vétérinaire , Glycoprotéine de spicule des coronavirus , Gammacoronavirus
4.
Braz. J. Vet. Res. Anim. Sci. (Online) ; 57(2): e166086, mai. 2020. ilus, tab, graf
Article de Anglais | VETINDEX, LILACS | ID: biblio-1122174

RÉSUMÉ

Avian coronavirus (AvCoV) infects a range of tissues in chickens and several other avian species. Although the virus can be isolated in chicken embryos, only a few strains of the 6 genotypes/33 lineages can grow in cell lines, with the Beaudette strain (GI-1 lineage) being the most used for in vitro studies. Considering the differences between cell lines and chicken embryos as habitats for AvCoV, this study aimed to assess the diversity of the genes coding for the nonstructural protein 3 (nsp3) and spike envelope protein (S) after serial passages in BHK-21 and Vero cells. After 14 passages of an embryo-adapted Beaudette strain, the virus loads fluctuated in both cell lines, with the highest loads being 8.72 log genome copies/µL for Vero and 6.36 log genome copies/µL for BHK-21 cells. No polymorphisms were found for nsp3; regarding S, not only aa substitutions (Vero: 8th passage A150S, and 14th S150A; BHK-21: 4th S53F, 8th F53Y, and 8th S95R), but also minor variants could be detected on chromatograms with fluctuating intensities. As the regions of these aa substitutions are within the receptor-binding domain of S, it can be speculated that differences in cell receptors between Vero and BHK-21 cells and the speed of cell death led to the selection of different dominant strains, while the stability of nsp3 supports its function as a protease involved in AvCoV replication. In conclusion, AvCoV quasispecies evolution is influenced by the biological model under consideration, and a gradual transition is seen for minor and major variants.(AU)


O Coronavírus aviário AvCoV infecta uma variedade de tecidos de galinhas e de outras espécies aviárias. Apesar de este vírus poder ser isolado em ovos embrionados de galinha, apenas alguns dos 6 genótipos / 33 linhagens podem crescer em cultivo celular, sendo a cepa Beuadette (linhagem GI-11) a mais utilizada para estudos in vitro. Considerando as diferentes linhagens celulares e ovos embrionados como habitats para o AvCoV, este estudo teve por objetivo estudar a diversidade de genes que codificam para a proteína não-estrutural 3 (nsp3) e espícula (S) após passagens seriadas em células BHK-21 e VERO. Após 14 passagens, de uma amostra Beuadette adaptada a ovos embrionados, os títulos virais variaram em ambas as células, com os maiores títulos sendo de 8,72 log cópias genômicas/µL para Vero e 6,36 cópias genômicas/µL para BHK-21. Nenhum polimorfismo foi encontrando para nsp3. Considerando a proteína S, não somente foram encontradas substituições de aminoácidos (Vero: 8a passagem A150S e 14a passagem S150A; BHK-21: 4a passagem S53F, 8a passagem F53Y e S95R), mas também, variantes subconsensuais foram detectadas pelos cromatogramas com intensidades flutuantes. Uma vez que as regiões destes aa se encontram no domínio de ligação de receptor de S, pode-se especular que diferenças em receptores celulares entre Vero e BHK-21, além da velocidade da morte celular, levaram à seleção de diferentes cepas dominantes, enquanto que a estabilidade de nsp3 concorda com sua função como protease com papel na replicação de AvCoV. Como conclusão, a evolução de quase-espécies de AvCoV é influenciada pelo modelo biológico sob consideração e uma transição gradual é vista para variantes dominantes e subdominantes.(AU)


Sujet(s)
Embryon de poulet , Protéines virales non structurales , Infections à coronavirus/médecine vétérinaire , Glycoprotéine de spicule des coronavirus , Gammacoronavirus
5.
Acta Trop ; 207: 105490, 2020 Jul.
Article de Anglais | MEDLINE | ID: mdl-32333884

RÉSUMÉ

Chikungunya virus (CHIKV) is a mosquito-transmitted virus of special concern as it causes Chikungunya fever, characterized by an acute febrile illness, rash, and arthralgia that can progress to chronic and debilitating arthritic symptoms. The effects of climate change on the geographic distribution of the mosquito vector has the potential to expose more of the globe to this virus. No antiviral agents or vaccines are currently available against CHIKV infection and the development of novel therapies that may lead to a future treatment is therefore necessary. In this context, the ADP-ribose binding site of the CHIKV nsP3 macro domain has been reported as a potential target for the development of antivirals. Mutations in the ADP-ribose binding site demonstrated decreased viral replication in cell culture and reduced virulence. In this study, 48,750 small molecules were screened in silico for their ability to bind to the ADP-ribose binding site of the CHIKV nsP3 macro domain. From this in silico analysis, 12 molecules were selected for in vitro analysis using a CHIKV subgenomic replicon in Huh-7 cells. Cell viability and CHIKV replication were evaluated and molecules C5 and C13 demonstrated 53 and 66% inhibition of CHIKV replication, respectively. By using a CHIKV-Dual luciferase replicon contain two reporter genes, we also demonstrated that the treatment with either compounds are probably interfering in the early replication rather than after RNA replication has occurred.


Sujet(s)
Adénosine diphosphate ribose/métabolisme , Antiviraux/pharmacologie , Virus du chikungunya/effets des médicaments et des substances chimiques , Protéines virales non structurales/antagonistes et inhibiteurs , Animaux , Sites de fixation , Lignée cellulaire tumorale , Humains , Souris , Simulation de docking moléculaire , Domaines protéiques , Protéines virales non structurales/composition chimique , Réplication virale/effets des médicaments et des substances chimiques
6.
J Virol ; 94(3)2020 01 17.
Article de Anglais | MEDLINE | ID: mdl-31694937

RÉSUMÉ

Venezuelan equine encephalitis virus (VEEV) is one of the important human and animal pathogens. It forms replication enzyme complexes (RCs) containing viral nonstructural proteins (nsPs) that mediate the synthesis of virus-specific RNAs. The assembly and associated functions of RC also depend on the presence of a specific set of host proteins. Our study demonstrates that the hypervariable domain (HVD) of VEEV nsP3 interacts with the members of the FXR family of cellular proteins and also binds the Src homology 3 (SH3) domain-containing proteins CD2AP and SH3KBP1. Interactions with FXR family members are mediated by the C-terminal repeating peptide of HVD. A single short, minimal motif identified in this study is sufficient for driving efficient VEEV replication in the absence of HVD interactions with other host proteins. The SH3 domain-containing proteins bind to another fragment of VEEV HVD. They can promote viral replication in the absence of FXR-HVD interactions albeit less efficiently. VEEV replication can be also switched from an FXR-dependent to a chikungunya virus-specific, G3BP-dependent mode. The described modifications of VEEV HVD have a strong impact on viral replication in vitro and pathogenesis. Their effects on viral pathogenesis depend on mouse age and the genetic background of the virus.IMPORTANCE The replication of alphaviruses is determined by specific sets of cellular proteins, which mediate the assembly of viral replication complexes. Some of these critical host factors interact with the hypervariable domain (HVD) of alphavirus nsP3. In this study, we have explored binding sites of host proteins, which are specific partners of nsP3 HVD of Venezuelan equine encephalitis virus. We also define the roles of these interactions in viral replication both in vitro and in vivo A mechanistic understanding of the binding of CD2AP, SH3KBP1, and FXR protein family members to VEEV HVD uncovers important aspects of alphavirus evolution and determines new targets for the development of alphavirus-specific drugs and directions for viral attenuation and vaccine development.


Sujet(s)
Virus de l'encéphalite équine du Venezuela/génétique , Mutation , Motifs et domaines d'intéraction protéique , Protéines virales non structurales/génétique , Réplication virale/génétique , Protéines adaptatrices de la transduction du signal , Animaux , Sites de fixation , Lignée cellulaire , Virus du chikungunya/métabolisme , Protéines du cytosquelette , Modèles animaux de maladie humaine , Encéphalomyélite équine du Vénézuéla/virologie , Humains , Protéines intrinsèquement désordonnées/métabolisme , Souris , Alignement de séquences , Protéines virales non structurales/composition chimique , Domaine d'homologie SRC
7.
Article de Anglais | LILACS-Express | VETINDEX | ID: biblio-1471171

RÉSUMÉ

Avian coronavirus (AvCoV) infects a range of tissues in chickens and several other avian species. Although the virus can be isolated in chicken embryos, only a few strains of the 6 genotypes/33 lineages can grow in cell lines, with the Beaudette strain (GI-1 lineage) being the most used for in vitro studies. Considering the differences between cell lines and chicken embryos as habitats for AvCoV, this study aimed to assess the diversity of the genes coding for the nonstructural protein 3 (nsp3) and spike envelope protein (S) after serial passages in BHK-21 and Vero cells. After 14 passages of an embryo-adapted Beaudette strain, the virus loads fluctuated in both cell lines, with the highest loads being 8.72 log genome copies/µL for Vero and 6.36 log genome copies/µL for BHK-21 cells. No polymorphisms were found for nsp3; regarding S, not only aa substitutions (Vero: 8th passage A150S, and 14th S150A; BHK-21: 4th S53F, 8th F53Y, and 8th S95R), but also minor variants could be detected on chromatograms with fluctuating intensities. As the regions of these aa substitutions are within the receptor-binding domain of S, it can be speculated that differences in cell receptors between Vero and BHK-21 cells and the speed of cell death led to the selection of different dominant strains, whi


O Coronavírus aviário AvCoV infecta uma variedade de tecidos de galinhas e de outras espécies aviárias. Apesar de este vírus poder ser isolado em ovos embrionados de galinha, apenas alguns dos 6 genótipos / 33 linhagens podem crescer em cultivo celular, sendo a cepa Beuadette (linhagem GI-11) a mais utilizada para estudos in vitro. Considerando as diferentes linhagens celulares e ovos embrionados como habitats para o AvCoV, este estudo teve por objetivo estudar a diversidade de genes que codificam para a proteína não-estrutural 3 (nsp3) e espícula (S) após passagens seriadas em células BHK-21 e VERO. Após 14 passagens, de uma amostra Beuadette adaptada a ovos embrionados, os títulos virais variaram em ambas as células, com os maiores títulos sendo de 8,72 log cópias genômicas/µL para Vero e 6,36 cópias genômicas/µL para BHK-21. Nenhum polimorfismo foi encontrando para nsp3. Considerando a proteína S, não somente foram encontradas substituições de aminoácidos (Vero: 8a passagem A150S e 14a passagem S150A; BHK-21: 4a passagem S53F, 8a passagem F53Y e S95R), mas também, variantes subconsensuais foram detectadas pelos cromatogramas com intensidades flutuantes. Uma vez que as regiões destes aa se encontram no domínio de ligação de receptor de S, pode

8.
Article de Anglais | VETINDEX | ID: vti-759206

RÉSUMÉ

Avian coronavirus (AvCoV) infects a range of tissues in chickens and several other avian species. Although the virus can be isolated in chicken embryos, only a few strains of the 6 genotypes/33 lineages can grow in cell lines, with the Beaudette strain (GI-1 lineage) being the most used for in vitro studies. Considering the differences between cell lines and chicken embryos as habitats for AvCoV, this study aimed to assess the diversity of the genes coding for the nonstructural protein 3 (nsp3) and spike envelope protein (S) after serial passages in BHK-21 and Vero cells. After 14 passages of an embryo-adapted Beaudette strain, the virus loads fluctuated in both cell lines, with the highest loads being 8.72 log genome copies/µL for Vero and 6.36 log genome copies/µL for BHK-21 cells. No polymorphisms were found for nsp3; regarding S, not only aa substitutions (Vero: 8th passage A150S, and 14th S150A; BHK-21: 4th S53F, 8th F53Y, and 8th S95R), but also minor variants could be detected on chromatograms with fluctuating intensities. As the regions of these aa substitutions are within the receptor-binding domain of S, it can be speculated that differences in cell receptors between Vero and BHK-21 cells and the speed of cell death led to the selection of different dominant strains, whi


O Coronavírus aviário AvCoV infecta uma variedade de tecidos de galinhas e de outras espécies aviárias. Apesar de este vírus poder ser isolado em ovos embrionados de galinha, apenas alguns dos 6 genótipos / 33 linhagens podem crescer em cultivo celular, sendo a cepa Beuadette (linhagem GI-11) a mais utilizada para estudos in vitro. Considerando as diferentes linhagens celulares e ovos embrionados como habitats para o AvCoV, este estudo teve por objetivo estudar a diversidade de genes que codificam para a proteína não-estrutural 3 (nsp3) e espícula (S) após passagens seriadas em células BHK-21 e VERO. Após 14 passagens, de uma amostra Beuadette adaptada a ovos embrionados, os títulos virais variaram em ambas as células, com os maiores títulos sendo de 8,72 log cópias genômicas/µL para Vero e 6,36 cópias genômicas/µL para BHK-21. Nenhum polimorfismo foi encontrando para nsp3. Considerando a proteína S, não somente foram encontradas substituições de aminoácidos (Vero: 8a passagem A150S e 14a passagem S150A; BHK-21: 4a passagem S53F, 8a passagem F53Y e S95R), mas também, variantes subconsensuais foram detectadas pelos cromatogramas com intensidades flutuantes. Uma vez que as regiões destes aa se encontram no domínio de ligação de receptor de S, pode

9.
Parasit Vectors ; 11(1): 321, 2018 May 29.
Article de Anglais | MEDLINE | ID: mdl-29843810

RÉSUMÉ

BACKGROUND: A new isolate of Aura virus serendipitously discovered as a cell culture contaminant is reported in this manuscript. Aura virus belongs to the family Togaviridae and is classified in the genus Alphavirus. There are only two reports of Aura virus isolation from mosquitoes in the scientific literature, and the existence of a vertebrate host is still unknown. The discovery of this new isolate was based on transmission electron microscopy and nucleic acid amplification through a non-specific RT-PCR amplification protocol followed by sequencing. RESULTS: Genetic analysis has shown that the new virus shares a high degree of identity with the previously described isolate (GenBank: AF126284.1). A major difference was observed in the nsP3 gene in which a 234-nucleotide duplication has been identified. Furthermore, a pronounced difference was observed in cell cultures compared to the data available for the previously described isolate. Cell permissiveness and phenotypic characteristics in C6/36, Vero and BHK-21 cells were found to differ from previous reports. This may be due to the genetic differences that have been observed. CONCLUSIONS: The genetic and biological characteristics of the new Aura virus isolate are suggestive of viral adaptation to the cell substrate. The development of a cDNA clone will lend a perspective and better understanding of these results as well as open avenues for its use as a biotechnological tool, as seen for other alphaviruses.


Sujet(s)
Alphavirus/génétique , Culicidae/virologie , Duplications génomiques segmentaires , Protéines virales non structurales/génétique , Alphavirus/classification , Alphavirus/isolement et purification , Alphavirus/ultrastructure , Infections à alphavirus/transmission , Infections à alphavirus/virologie , Animaux , Brésil , Lignée cellulaire , ADN complémentaire/génétique , Microscopie électronique à transmission , Phylogenèse , Réaction de polymérisation en chaine en temps réel
10.
Diagn Microbiol Infect Dis ; 90(4): 272-276, 2018 Apr.
Article de Anglais | MEDLINE | ID: mdl-29329758

RÉSUMÉ

Rotavirus produces diarrhea in children under 5 years old. Most of those conventional methods such as polyacrylamide gel electrophoresis (PAGE) and reverse transcription-polymerase chain reaction (RT-PCR) have been used for rotavirus detection. However, these techniques need a multi-step process to get the results. In comparison with conventional methods, the real-time RT-PCR is a highly sensitive method, which allows getting the results in only one day. In this study a real-time RT-PCR assay was tested using a panel of 440 samples from patients with acute gastroenteritis, and characterized by PAGE and RT-PCR. The results show that the real-time RT-PCR detected rotavirus from 73% of rotavirus-negative samples analyzed by PAGE and RT-PCR; thus, the percentage of rotavirus-positive samples increased to 81%. The results indicate that this real-time RT-PCR should be part of a routine analysis, and as a support of the diagnosis of rotavirus in Mexico.


Sujet(s)
Surveillance épidémiologique , Techniques de diagnostic moléculaire/méthodes , Réaction de polymérisation en chaine en temps réel/méthodes , Infections à rotavirus/diagnostic , Infections à rotavirus/virologie , Électrophorèse sur gel de polyacrylamide/méthodes , Gastroentérite/diagnostic , Gastroentérite/épidémiologie , Gastroentérite/virologie , Humains , Mexique/épidémiologie , Épidémiologie moléculaire/méthodes , RT-PCR/méthodes , Infections à rotavirus/épidémiologie , Sensibilité et spécificité
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