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1.
Mol Biol Evol ; 40(4)2023 04 04.
Artículo en Inglés | MEDLINE | ID: mdl-37014783

RESUMEN

RNA viruses are abundant and highly diverse and infect all or most eukaryotic organisms. However, only a tiny fraction of the number and diversity of RNA virus species have been catalogued. To cost-effectively expand the diversity of known RNA virus sequences, we mined publicly available transcriptomic data sets. We developed 77 family-level Hidden Markov Model profiles for the viral RNA-dependent RNA polymerase (RdRp)-the only universal "hallmark" gene of RNA viruses. By using these to search the National Center for Biotechnology Information Transcriptome Shotgun Assembly database, we identified 5,867 contigs encoding RNA virus RdRps or fragments thereof and analyzed their diversity, taxonomic classification, phylogeny, and host associations. Our study expands the known diversity of RNA viruses, and the 77 curated RdRp Profile Hidden Markov Models provide a useful resource for the virus discovery community.


Asunto(s)
Virus ARN , Transcriptoma , Virus ARN/genética , ARN Polimerasa Dependiente del ARN/genética , ARN Polimerasa Dependiente del ARN/metabolismo , Filogenia , ARN Viral , Genoma Viral
2.
J Gen Virol ; 100(5): 736-737, 2019 05.
Artículo en Inglés | MEDLINE | ID: mdl-30835197

RESUMEN

Solinviviridae is a family of picorna/calici-like viruses with non-segmented, linear, positive-sense RNA genomes of approximately 10-11 kb. Unusually, their capsid proteins are encoded towards the 3'-end of the genome where they can be expressed both from a subgenomic RNA and as an extension of the replication (picorna-like helicase-protease-polymerase) polyprotein. Members of two species within the family infect ants, but related unclassified virus sequences derive from a large variety of insects and other arthropods. This is a summary of the International Committee on Taxonomy of Viruses (ICTV) Report on the Solinviviridae, which is available at www.ictv.global/report/solinviviridae.


Asunto(s)
Virus ARN/clasificación , Virus ARN/genética , Animales , Artrópodos/virología , Proteínas de la Cápside/genética , Genoma Viral/genética , ARN Viral/genética , Replicación Viral/genética
3.
J Gen Virol ; 100(4): 554-555, 2019 04.
Artículo en Inglés | MEDLINE | ID: mdl-30835199

RESUMEN

Polycipiviridae is a family of picorna-like viruses with non-segmented, linear, positive-sense RNA genomes of approximately 10-12 kb. Unusually for viruses within the order Picornavirales, their genomes are polycistronic, with four (or more) consecutive 5'-proximal open reading frames (ORFs) encoding structural (and possibly other) proteins and a long 3' ORF encoding the replication polyprotein. Members of species within the family have all been detected in ants or via arthropod transcriptomic datasets. This is a summary of the International Committee on Taxonomy of Viruses (ICTV) Report on the Polycipiviridae, which is available at www.ictv.global/report/polycipiviridae.


Asunto(s)
Virus ARN/clasificación , Animales , Hormigas/virología , Genoma Viral , Sistemas de Lectura Abierta , Filogenia , Virus ARN/genética , Virus ARN/aislamiento & purificación , Virus ARN/ultraestructura , Proteínas Virales/genética , Proteínas Virales/metabolismo
4.
RNA ; 23(9): 1329-1337, 2017 09.
Artículo en Inglés | MEDLINE | ID: mdl-28576826

RESUMEN

Archaeal fibrillarin (aFib) is a well-characterized S-adenosyl methionine (SAM)-dependent RNA 2'-O-methyltransferase that is known to act in a large C/D ribonucleoprotein (RNP) complex together with Nop5 and L7Ae proteins and a box C/D guide RNA. In the reaction, the guide RNA serves to direct the methylation reaction to a specific site in tRNA or rRNA by sequence complementarity. Here we show that a Pyrococcus abyssi aFib-Nop5 heterodimer can alone perform SAM-dependent 2'-O-methylation of 16S and 23S ribosomal RNAs in vitro independently of L7Ae and C/D guide RNAs. Using tritium-labeling, mass spectrometry, and reverse transcription analysis, we identified three in vitro 2'-O-methylated positions in the 16S rRNA of P. abyssi, positions lying outside of previously reported pyrococcal C/D RNP methylation sites. This newly discovered stand-alone activity of aFib-Nop5 may provide an example of an ancestral activity retained in enzymes that were recruited to larger complexes during evolution.


Asunto(s)
Archaea/genética , Archaea/metabolismo , Proteínas Cromosómicas no Histona/metabolismo , ARN de Archaea/genética , ARN de Archaea/metabolismo , Ribonucleoproteínas Nucleolares Pequeñas/metabolismo , Ribonucleoproteínas/metabolismo , Proteínas Cromosómicas no Histona/química , Metilación , Conformación de Ácido Nucleico , Unión Proteica , Multimerización de Proteína , ARN Ribosómico 16S/química , ARN Ribosómico 16S/genética , ARN Ribosómico 16S/metabolismo , ARN Ribosómico 23S/química , ARN Ribosómico 23S/genética , ARN Ribosómico 23S/metabolismo , Ribonucleoproteínas/química , Ribonucleoproteínas Nucleolares Pequeñas/química , Especificidad por Sustrato
5.
Arch Virol ; 164(2): 643-647, 2019 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-30415391

RESUMEN

Three novel RNA viruses, named Formica fusca virus 1 (GenBank accession no. MH477287), Lasius neglectus virus 2 (MH477288) and Myrmica scabrinodis virus 2 (MH477289), were discovered in ants collected in Cambridge, UK. The proposed virus names were given based on the hosts in which they were identified. The genome sequences were obtained using de novo transcriptome assembly of high-throughput RNA sequencing reads and confirmed by Sanger sequencing. Phylogenetic analysis showed that Formica fusca virus 1 grouped within the family Nyamiviridae, Lasius neglectus virus 2 grouped within the family Rhabdoviridae and Myrmica scabrinodis virus 2 belongs to the family Dicistroviridae. All three viruses are highly divergent from previously sequenced viruses.


Asunto(s)
Hormigas/virología , Virus de Insectos/aislamiento & purificación , Virus ARN/genética , Virus ARN/aislamiento & purificación , Animales , Genoma Viral , Secuenciación de Nucleótidos de Alto Rendimiento , Virus de Insectos/clasificación , Virus de Insectos/genética , Sistemas de Lectura Abierta , Filogenia , Virus ARN/clasificación , Transcriptoma , Proteínas Virales/genética
6.
J Gen Virol ; 98(9): 2368-2378, 2017 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-28857036

RESUMEN

Solenopsis invicta virus 2 is a single-stranded positive-sense picorna-like RNA virus with an unusual genome structure. The monopartite genome of approximately 11 kb contains four open reading frames in its 5' third, three of which encode proteins with homology to picornavirus-like jelly-roll fold capsid proteins. These are followed by an intergenic region, and then a single long open reading frame that covers the 3' two-thirds of the genome. The polypeptide translation of this 3' open reading frame contains motifs characteristic of picornavirus-like helicase, protease and RNA-dependent RNA polymerase domains. An inspection of public transcriptome shotgun assembly sequences revealed five related apparently nearly complete virus genomes isolated from ant species and one from a dipteran insect. By high-throughput sequencing and in silico assembly of RNA isolated from Solenopsis invicta and four other ant species, followed by targeted Sanger sequencing, we obtained nearly complete genomes for four further viruses in the group. Four further sequences were obtained from a recent large-scale invertebrate virus study. The 15 sequences are highly divergent (pairwise amino acid identities of as low as 17 % in the non-structural polyprotein), but possess the same overall polycistronic genome structure, which is distinct from all other characterized picorna-like viruses. Consequently, we propose the formation of a new virus family, Polycipiviridae, to classify this clade of arthropod-infecting polycistronic picorna-like viruses. We further propose that this family be divided into three genera: Chipolycivirus (2 species), Hupolycivirus (2 species) and Sopolycivirus (11 species), with members of the latter infecting ants in at least 3 different subfamilies.


Asunto(s)
Hormigas/virología , Picornaviridae/aislamiento & purificación , Animales , Genoma Viral , Virus de Insectos/clasificación , Virus de Insectos/genética , Virus de Insectos/aislamiento & purificación , Filogenia , Picornaviridae/clasificación , Picornaviridae/genética , ARN Viral/genética , ARN Viral/metabolismo
7.
Nat Commun ; 12(1): 5769, 2021 10 01.
Artículo en Inglés | MEDLINE | ID: mdl-34599175

RESUMEN

Distinct SARS-CoV-2 lineages, discovered through various genomic surveillance initiatives, have emerged during the pandemic following unprecedented reductions in worldwide human mobility. We here describe a SARS-CoV-2 lineage - designated B.1.620 - discovered in Lithuania and carrying many mutations and deletions in the spike protein shared with widespread variants of concern (VOCs), including E484K, S477N and deletions HV69Δ, Y144Δ, and LLA241/243Δ. As well as documenting the suite of mutations this lineage carries, we also describe its potential to be resistant to neutralising antibodies, accompanying travel histories for a subset of European cases, evidence of local B.1.620 transmission in Europe with a focus on Lithuania, and significance of its prevalence in Central Africa owing to recent genome sequencing efforts there. We make a case for its likely Central African origin using advanced phylogeographic inference methodologies incorporating recorded travel histories of infected travellers.


Asunto(s)
COVID-19/transmisión , COVID-19/virología , SARS-CoV-2/genética , África Central/epidemiología , Anticuerpos Neutralizantes/inmunología , COVID-19/epidemiología , Europa (Continente)/epidemiología , Humanos , Evasión Inmune/genética , Mutación , Filogenia , Filogeografía , SARS-CoV-2/clasificación , SARS-CoV-2/inmunología , Glicoproteína de la Espiga del Coronavirus/genética , Viaje/estadística & datos numéricos
8.
Virus Evol ; 6(1): veaa007, 2020 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-32064120

RESUMEN

Positive-sense single-stranded RNA viruses form the largest and most diverse group of eukaryote-infecting viruses. Their genomes comprise one or more segments of coding-sense RNA that function directly as messenger RNAs upon release into the cytoplasm of infected cells. Positive-sense RNA viruses are generally accepted to encode proteins solely on the positive strand. However, we previously identified a surprisingly long (∼1,000-codon) open reading frame (ORF) on the negative strand of some members of the family Narnaviridae which, together with RNA bacteriophages of the family Leviviridae, form a sister group to all other positive-sense RNA viruses. Here, we completed the genomes of three mosquito-associated narnaviruses, all of which have the long reverse-frame ORF. We systematically identified narnaviral sequences in public data sets from a wide range of sources, including arthropod, fungal, and plant transcriptomic data sets. Long reverse-frame ORFs are widespread in one clade of narnaviruses, where they frequently occupy >95 per cent of the genome. The reverse-frame ORFs correspond to a specific avoidance of CUA, UUA, and UCA codons (i.e. stop codon reverse complements) in the forward-frame RNA-dependent RNA polymerase ORF. However, absence of these codons cannot be explained by other factors such as inability to decode these codons or GC3 bias. Together with other analyses, we provide the strongest evidence yet of coding capacity on the negative strand of a positive-sense RNA virus. As these ORFs comprise some of the longest known overlapping genes, their study may be of broad relevance to understanding overlapping gene evolution and de novo origin of genes.

9.
Viruses ; 12(12)2020 12 06.
Artículo en Inglés | MEDLINE | ID: mdl-33291220

RESUMEN

The International Virus Bioinformatics Meeting 2020 was originally planned to take place in Bern, Switzerland, in March 2020. However, the COVID-19 pandemic put a spoke in the wheel of almost all conferences to be held in 2020. After moving the conference to 8-9 October 2020, we got hit by the second wave and finally decided at short notice to go fully online. On the other hand, the pandemic has made us even more aware of the importance of accelerating research in viral bioinformatics. Advances in bioinformatics have led to improved approaches to investigate viral infections and outbreaks. The International Virus Bioinformatics Meeting 2020 has attracted approximately 120 experts in virology and bioinformatics from all over the world to join the two-day virtual meeting. Despite concerns being raised that virtual meetings lack possibilities for face-to-face discussion, the participants from this small community created a highly interactive scientific environment, engaging in lively and inspiring discussions and suggesting new research directions and questions. The meeting featured five invited and twelve contributed talks, on the four main topics: (1) proteome and RNAome of RNA viruses, (2) viral metagenomics and ecology, (3) virus evolution and classification and (4) viral infections and immunology. Further, the meeting featured 20 oral poster presentations, all of which focused on specific areas of virus bioinformatics. This report summarizes the main research findings and highlights presented at the meeting.


Asunto(s)
Biología Computacional , Virus ARN/genética , Virología , COVID-19 , Congresos como Asunto , Evolución Molecular , Genoma Viral , Humanos , Metagenómica , Virus ARN/patogenicidad
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