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1.
Viruses ; 12(3)2020 02 27.
Artigo em Inglês | MEDLINE | ID: mdl-32120884

RESUMO

Jingmen viruses are newly described segmented flavi-like viruses that have a worldwide distribution in ticks and have been associated with febrile illnesses in humans. Computational analyses were used to predict that Jingmen flavi-like virus glycoproteins have structural features of class II viral fusion proteins, including an ectodomain consisting of beta-sheets and short alpha-helices, a fusion peptide with interfacial hydrophobicity and a three-domain architecture. Jingmen flavi-like virus glycoproteins have a sequence enriched in serine, threonine, and proline at the amino terminus, which is a feature of mucin-like domains. Several of the serines and threonines are predicted be modified by the addition of O-linked glycans. Some of the glycoproteins are predicted to have an additional mucin-like domain located prior to the transmembrane anchor, whereas others are predicted to have a stem consisting of two alpha-helices. The flavivirus envelope protein and Jingmen flavi-virus glycoproteins may have diverged from a common class II precursor glycoprotein with a mucin-like domain or domains acquired after divergence.


Assuntos
Flavivirus/genética , Flavivirus/metabolismo , Domínios e Motivos de Interação entre Proteínas , Proteoma , Proteômica , Proteínas do Envelope Viral/metabolismo , Proteínas Virais de Fusão/metabolismo , Sequência de Aminoácidos , Sequência de Bases , Biologia Computacional/métodos , Genoma Viral , Genômica/métodos , Humanos , Modelos Moleculares , Conformação Molecular , Mucinas/química , Mucinas/metabolismo , Proteômica/métodos , Proteínas do Envelope Viral/química , Proteínas Virais de Fusão/química
2.
Viruses ; 11(8)2019 08 14.
Artigo em Inglês | MEDLINE | ID: mdl-31416162

RESUMO

A metatranscriptomic study of RNA viruses in cold-blooded vertebrates identified two related viruses from frogfish (Antennarius striatus) that represent a new genus Antennavirus in the family Arenaviridae (Order: Bunyavirales). Computational analyses were used to identify features common to class I viral fusion proteins (VFPs) in antennavirus glycoproteins, including an N-terminal fusion peptide, two extended alpha-helices, an intrahelical loop, and a carboxyl terminal transmembrane domain. Like mammarenavirus and hartmanivirus glycoproteins, the antennavirus glycoproteins have an intracellular zinc-binding domain and a long virion-associated stable signal peptide (SSP). The glycoproteins of reptarenaviruses are also class I VFPs, but do not contain zinc-binding domains nor do they encode SSPs. Divergent evolution from a common progenitor potentially explains similarities of antennavirus, mammarenavirus, and hartmanivirus glycoproteins, with an ancient recombination event resulting in a divergent reptarenavirus glycoprotein.


Assuntos
Infecções por Arenaviridae/veterinária , Arenaviridae/metabolismo , Doenças dos Peixes/virologia , Proteínas do Envelope Viral/química , Proteínas do Envelope Viral/metabolismo , Proteínas Virais de Fusão/metabolismo , Zinco/metabolismo , Sequência de Aminoácidos , Animais , Arenaviridae/química , Arenaviridae/genética , Infecções por Arenaviridae/virologia , Filogenia , Domínios Proteicos , Sinais Direcionadores de Proteínas , Proteômica , Alinhamento de Sequência , Proteínas do Envelope Viral/genética , Proteínas Virais de Fusão/química , Proteínas Virais de Fusão/genética
3.
Nat Commun ; 7: 11544, 2016 05 10.
Artigo em Inglês | MEDLINE | ID: mdl-27161536

RESUMO

Lassa fever is a severe multisystem disease that often has haemorrhagic manifestations. The epitopes of the Lassa virus (LASV) surface glycoproteins recognized by naturally infected human hosts have not been identified or characterized. Here we have cloned 113 human monoclonal antibodies (mAbs) specific for LASV glycoproteins from memory B cells of Lassa fever survivors from West Africa. One-half bind the GP2 fusion subunit, one-fourth recognize the GP1 receptor-binding subunit and the remaining fourth are specific for the assembled glycoprotein complex, requiring both GP1 and GP2 subunits for recognition. Notably, of the 16 mAbs that neutralize LASV, 13 require the assembled glycoprotein complex for binding, while the remaining 3 require GP1 only. Compared with non-neutralizing mAbs, neutralizing mAbs have higher binding affinities and greater divergence from germline progenitors. Some mAbs potently neutralize all four LASV lineages. These insights from LASV human mAb characterization will guide strategies for immunotherapeutic development and vaccine design.


Assuntos
Anticorpos Monoclonais/imunologia , Anticorpos Neutralizantes/imunologia , Anticorpos Antivirais/imunologia , Vírus Lassa/imunologia , Especificidade de Anticorpos , Antígenos Virais/química , Antígenos Virais/genética , Antígenos Virais/imunologia , Arenavirus/imunologia , Reações Cruzadas , Mapeamento de Epitopos , Epitopos/química , Epitopos/genética , Epitopos/imunologia , Humanos , Febre Lassa/imunologia , Febre Lassa/prevenção & controle , Vírus Lassa/genética , Modelos Moleculares , Mutagênese Sítio-Dirigida , Deleção de Sequência , Proteínas do Envelope Viral/química , Proteínas do Envelope Viral/genética , Proteínas do Envelope Viral/imunologia
4.
Virol J ; 6: 145, 2009 Sep 18.
Artigo em Inglês | MEDLINE | ID: mdl-19765297

RESUMO

BACKGROUND: Borna disease virus (BDV) is the type member of the Bornaviridae, a family of viruses that induce often fatal neurological diseases in horses, sheep and other animals, and have been proposed to have roles in certain psychiatric diseases of humans. The BDV glycoprotein (G) is an extensively glycosylated protein that migrates with an apparent molecular mass of 84,000 to 94,000 kilodaltons (kDa). BDV G is post-translationally cleaved by the cellular subtilisin-like protease furin into two subunits, a 41 kDa amino terminal protein GP1 and a 43 kDa carboxyl terminal protein GP2. RESULTS: Class III viral fusion proteins (VFP) encoded by members of the Rhabdoviridae, Herpesviridae and Baculoviridae have an internal fusion domain comprised of beta sheets, other beta sheet domains, an extended alpha helical domain, a membrane proximal stem domain and a carboxyl terminal anchor. Proteomics computational analyses suggest that the structural/functional motifs that characterize class III VFP are located collinearly in BDV G. Structural models were established for BDV G based on the post-fusion structure of a prototypic class III VFP, vesicular stomatitis virus glycoprotein (VSV G). CONCLUSION: These results suggest that G encoded by members of the Bornavirdae are class III VFPs (gamma-penetrenes).


Assuntos
Vírus da Doença de Borna/química , Proteômica , Proteínas Virais de Fusão/química , Sequência de Aminoácidos , Vírus da Doença de Borna/classificação , Vírus da Doença de Borna/genética , Bornaviridae/química , Bornaviridae/classificação , Bornaviridae/genética , Modelos Moleculares , Dados de Sequência Molecular , Filogenia , Proteínas Virais de Fusão/genética
5.
Virol J ; 5: 28, 2008 Feb 18.
Artigo em Inglês | MEDLINE | ID: mdl-18282283

RESUMO

BACKGROUND: Members of the Baculoviridae encode two types of proteins that mediate virus:cell membrane fusion and penetration into the host cell. Alignments of primary amino acid sequences indicate that baculovirus fusion proteins of group I nucleopolyhedroviruses (NPV) form the GP64 superfamily. The structure of these viral penetrenes has not been determined. The GP64 superfamily includes the glycoprotein (GP) encoded by members of the Thogotovirus genus of the Orthomyxoviridae. The entry proteins of other baculoviruses, group II NPV and granuloviruses, are class I penetrenes. RESULTS: Class III penetrenes encoded by members of the Rhabdoviridae and Herpesviridae have an internal fusion domain comprised of beta sheets, other beta sheet domains, an extended alpha helical domain, a membrane proximal stem domain and a carboxyl terminal anchor. Similar sequences and structural/functional motifs that characterize class III penetrenes are located collinearly in GP64 of group I baculoviruses and related glycoproteins encoded by thogotoviruses. Structural models based on a prototypic class III penetrene, vesicular stomatitis virus glycoprotein (VSV G), were established for Thogoto virus (THOV) GP and Autographa california multiple NPV (AcMNPV) GP64 demonstrating feasible cysteine linkages. Glycosylation sites in THOV GP and AcMNPV GP64 appear in similar model locations to the two glycosylation sites of VSV G. CONCLUSION: These results suggest that proteins in the GP64 superfamily are class III penetrenes.


Assuntos
Alcenos , Baculoviridae , Biologia Computacional/métodos , Lepidópteros/virologia , Proteômica , Proteínas do Envelope Viral , Alcenos/química , Alcenos/classificação , Sequência de Aminoácidos , Animais , Baculoviridae/química , Baculoviridae/genética , Baculoviridae/metabolismo , Cristalografia por Raios X , Glicoproteínas , Modelos Moleculares , Dados de Sequência Molecular , Nucleopoliedrovírus/química , Nucleopoliedrovírus/genética , Alinhamento de Sequência , Thogotovirus/química , Thogotovirus/genética , Proteínas do Envelope Viral/química , Proteínas do Envelope Viral/classificação , Proteínas do Envelope Viral/genética
6.
Theor Biol Med Model ; 1: 10, 2004 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-15544707

RESUMO

The Bunyaviridae family of enveloped RNA viruses includes five genuses, orthobunyaviruses, hantaviruses, phleboviruses, nairoviruses and tospoviruses. It has not been determined which Bunyavirus protein mediates virion:cell membrane fusion. Class II viral fusion proteins (beta-penetrenes), encoded by members of the Alphaviridae and Flaviviridae, are comprised of three antiparallel beta sheet domains with an internal fusion peptide located at the end of domain II. Proteomics computational analyses indicate that the carboxyl terminal glycoprotein (Gc) encoded by Sandfly fever virus (SAN), a phlebovirus, has a significant amino acid sequence similarity with envelope protein 1 (E1), the class II fusion protein of Sindbis virus (SIN), an Alphavirus. Similar sequences and common structural/functional motifs, including domains with a high propensity to interface with bilayer membranes, are located collinearly in SAN Gc and SIN E1. Gc encoded by members of each Bunyavirus genus share several sequence and structural motifs. These results suggest that Gc of Bunyaviridae, and similar proteins of Tenuiviruses and a group of Caenorhabditis elegans retroviruses, are class II viral fusion proteins. Comparisons of divergent viral fusion proteins can reveal features essential for virion:cell fusion, and suggest drug and vaccine strategies.


Assuntos
Alcenos/classificação , Bunyaviridae/metabolismo , Glicoproteínas/classificação , Modelos Biológicos , Proteômica , Proteínas do Envelope Viral/classificação , Proteínas Virais de Fusão/classificação , Sequência de Aminoácidos , Animais , Caenorhabditis elegans/virologia , Sequência Conservada , Glicoproteínas/química , Glicoproteínas/genética , Dados de Sequência Molecular , Estrutura Molecular , Phlebovirus/metabolismo , Estrutura Terciária de Proteína , Retroviridae/metabolismo , Tenuivirus/metabolismo , Proteínas do Envelope Viral/química
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