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At least 19 recordsLinked to original sources

Infectious barley stripe mosaic virus RNA transcribed in vitro from full-length genomic cDNA clones.

Full-length genomic cDNA clones of the Type and ND18 strains of barley stripe mosaic virus (BSMV) were transcribed in vitro using T7 RNA polymerase. The combination of RNAs alpha, beta, and gamma synthesized in the presence of 5' cap analogs was infectious after inoculation onto barley plants, conclusively demonstrating the tripartite nature of the BSMV genome. Transcripts synthesized in the absence of cap analogs were not infectious. A gamma-specific subgenomic RNA which is normally present in BSMV virions was not required to establish a systemic infection. In vitro transcripts of variant cDNA clones which were isolated from the ND18 strain, containing either a simple nucleotide substitution or a 372-nucleotide duplication similar to one found in the genome of the Type strain, were also found to be biologically active. Two dicotyledonous hosts which have a differential response to infection with the Type and ND18 strains of BSMV were identified and these phenotypes were shown to be faithfully reproduced by inoculation with in vitro transcripts derived from the appropriate full-length cDNA clones.

Blotting, Western↗

Short report: genetic heterogeneity of Japanese encephalitis virus assessed via analysis of the full-length genome sequence of a Korean isolate.

We determined the full-length genome sequence of Japanese encephalitis virus (JEV) K94P05 isolated in Korea. Sequence analysis showed that the 10,963-nucleotide-long RNA genome of K94P05 was 13 or 14 nucleotides shorter than the genome of other JEV isolates because of a deletion in the 3' noncoding region of K94P05. Compared with sequences of other JEV isolates, the full-length nucleotide sequence showed 89.0-89.6% homology, and the deduced amino acid sequence showed between 96.4-97.3% homology. A region of approximately 60 nucleotides immediately downstream of the open reading frame stop codon of K94P05 showed high sequence variability as compared with other JEV isolates. K94P05 formed a distinct group within a phylogenetic tree established with the full-length genome sequences. Cross-neutralization studies showed that polyclonal antibodies to Korean isolates were 3 times better at neutralizing the Korean isolates than antibodies to Nakayama-NIH. These findings suggest that Korean JEV K94P05 is genetically and antigenically distinct from other Asian JEV isolates.

Amino Acid Sequence↗

HIV-1 subtype H near-full length genome reference strains and analysis of subtype-H-containing inter-subtype recombinants.

OBJECTIVE: To characterize near-full-length genomes of two HIV-1 subtype H strains. To extend sequence data to include full env and gag, and analyse and redefine, previously documented subtype H strains. DESIGN: Near-full-length genomes of HIV-1 env subtype H strains VI991 and VI997 were amplified, cloned, sequenced, phylogenetically analysed and compared with a panel of 23 HIV-1 group M reference isolates. The mosaic nature of previously published subtype H strains VI557 and CA13 was reanalysed. MATERIALS AND METHODS: Peripheral blood mononuclear cells (PBMC) from individuals harbouring strains VI991 and VI997 were co-cultivated with PHA stimulated donor PBMC. Near-full-length genomes of VI991 and VI997, and gag and env genes of CA13 and VI557, were amplified by polymerase chain reaction, cloned and sequenced. Intersubtype recombination analyses were performed by similarity plot, bootscanning and phylogenetic analysis. RESULTS: Near-full-length clones of HIV-1 VI991 and VI997 are representative of subtype H. They form a phylogenetic cluster with the only previously described subtype H representative HIV-1 90CF056.1, regardless of the genome region analysed. VI557 is redefined as a gag and env subtype H mosaic virus containing unclassified fragments. CA13 is a complex intersubtype recombinant between subtypes A, H and unclassified strains CONCLUSION: Near-full-length genome analysis identified HIV-1 VI991 and VI997 as two new subtype H representatives. These reagents will allow defining and classifying non-recombinant as well as recombinant HIV-1, eventually helping to solve the puzzle of HIV-1 subtypes.

Base Sequence↗

Construction and identification of a single stranded cDNA clone containing full-length genome of hepatitis G virus.

AIM: To construct a single cDNA clone with full-length genome of hepatitis G virus (HGV) could be transcribed and expressed in vitro. METHODS: The 5 initial HGV cDNA fragments of Iw5, Iwq2, Iwh6, Iw3 and Iw3 used in this study were amplified from serum of a Japanese non A-E hepatitis patient. These fragments overlapped and covered the entire genome from 5'-end to 3'-end of HGV cDNA. Overlap extension PCR and ligation methods were used with 12 primers for the construction of a full-length genomic HGV cDNA clone from the subgenomic fragments. RESULTS: A single HGV cDNA clone (pHGVqz) was successfully constructed, physical mapping of the generated pHGVqz found identical to what we expected, and the sequence was deposited with the GenBank under the Accession number AF081782. The analysis of the full-length sequence, which was able to be in vitro transcribed and expressed, showed that this single clone contained 9373 nucleotides (encoding 2873 amino acids), and shared high homologies with other compared HGV isolates. CONCLUSION: A full-length genomic HGV cDNA clone is generated for the first of the kind in this study, it could be expressed and transcripted. This single cDNA clone is expected to be of importance in the investigation on replication and pathogenicity of HGV.

Blotting, Western↗

[Molecular characterization of full-length genome of Japanese encephalitis virus (02-76) newly isolated in China.].

BACKGROUND: To sequence and analyze the complete nucleotide sequence of the Japanese encephalitis virus (JEV) strain 02-76, newly isolated in 2002 in China and to provide information for the genomic structure of JEV and the characteristics of virulence. METHODS: Overlapping primers were designed according to the full-length genomes from GenBank. RT-PCR was used to amplify the fragments, sequencing was performed and all the nucleotides were connected to acquire the full-length genome. Computer software was used to analyze the nucleic acid data, deduced amino acid sequence and phylogenetic trees including Clustal X(1.8), DNASTAR, GENEDOC(3.2). RESULTS: The result of sequence analysis showed that the genome of 02-76 strain was 10,977 nucleotides long. An open reading frame from 95 to 10,391 including 10,296 bases was found capable of coding for a 3432 amino acid polyprotein. Compared with the Beijing 1 strains isolated in 1949 in China, there was a 248 nucleotide divergence and 16 amino acid divergence. Comparison of the complete genome sequences of different JEV isolates showed a 0.6%-15.1% nucleotide sequence divergence among them, which resulted in 0.2%-4.6% amino acid sequence divergence. Phylogenetic analysis through PrM/C,E,3'NTR and full-length genome showed that the 02-76 strain belonged to genotype 3. CONCLUSION: Analysis based on the complete genome sequences of different JEV isolates showed that the 02-76 isolate in 2002 belonged to genotype 3 and was close to the old Chinese isolates SA-14.

China↗

Analysis of the full-length genome of a subgenotype IIIB hepatitis A virus isolate: primers for broadly reactive PCR and genotypic analysis.

Among six known subgenotypes (IA, IB, IIA, IIB, IIIA, and IIIB) of human hepatitis A virus (HAV), the complete genomic sequence has not been determined for IIIB. In this study, the full-length genomic sequence of a IIIB HAV isolate (HA-JNG06-90F) recovered from a Japanese patient who contracted sporadic hepatitis A in 1990, was determined. The HA-JNG06-90F genome, which comprised 7462 nt excluding the poly(A) tail, was related most closely to NOR-21 of subgenotype IIIA with an identity of 89.1%, and was only 82.6-83.4% similar to human HAV isolates of genotypes I and II over the entire genome. Comparison of full-length genomic sequences of 20 reported isolates and HA-JNG06-90F generated optimal results for separation of different levels: the nucleotide identities were 80.7-86.6% at the genotype level, 89.1-91.9% at the subgenotype level, and 94.6-99.7% at the isolate level. Similar ranges of nucleotide identity were observed when comparing partial nucleotide sequences of the VP1-2B (481 nt; primer sequences at both ends excluded) and 3C/3D (590 nt) regions, which were amplifiable by PCR with primers designed from well-conserved areas of the HAV genome. All 66 samples with IgM-class HAV antibodies tested positive for HAV RNA by both VP1-2B (481 nt)-PCR and 3C/3D (590 nt)-PCR: subgenotype assignment was concordant in all samples tested (IA [n = 61], IB [n = 1], IIIA [n = 2] and IIIB [n = 2]). These results suggest that two broadly reactive PCRs using primers derived from the VP1-2B and 3C/3D regions, respectively, may be applicable to universal detection and phylogenetic analysis of various HAV strains.

DNA Primers↗

Full-length genomic sequencing and analysis of four HIV type 1 subtype B isolates circulating in the territory of Russia.

We describe four full-length genomic sequences of HIV-1 subtype B isolates from Russia. These full-length HIV-1 genomes were amplified by nested polymerase chain reaction and sequenced. The sequences obtained were subjected to neighbor-joining phylogenetic analysis using a Kimura two-parameter model and to detailed sequence analysis. Comparison of the sequences obtained with 68 near full-length HIV-1 subtype B sequences from different geographic regions of the world revealed that isolates from Russia did not cluster significantly with other subtype B genomes. Sequences AY819715 and AY751407 significantly formed one cluster, which indicates their close similarity. The HIV-1 genomes obtained from Russia did not form a distinct homogeneous group inside subtype B. Their genetic diversity probably reflects the result of multiple introduction events of different subtype B strains to Russia. Sequences AY819715 and AY751406 possess some features of viruses from long-term survivors, such as specific extensions of the Env V2 region.

Female↗

Full-length genome analysis of human immunodeficiency virus type 1 subtype C in Brazil.

The most prevalent HIV-1 clade in the global epidemics is C, and this clade is also becoming important in the Brazilian epidemics. In this study, we characterized HIV-1 subtype C variants by sequencing their near full-length genomes. DNA was extracted from six samples previously classified in our laboratory as subtype C on the basis of partial genome sequencing. Amplification was carried out by overlapping PCR followed by direct sequencing. Phylogenetic analysis of full length genomes confirmed that all isolates belonged to subtype C, which formed a highly supported monophyletic cluster and showed a nucleotide distance of 5.4%. The core promoter of all isolates contained three NF-kappaB binding motifs. Our results suggest that subtype C viruses circulating in Brazil were likely introduced recently from a unique point source. The independent clustering of Brazilian subtype C on the phylogenetic tree suggests the profile of an ideal local candidate for the development of a single subtype vaccine.

Brazil↗

Full-length genome analysis of natural isolates of vesicular stomatitis virus (Indiana 1 serotype) from North, Central and South America.

Most studies on the molecular biology and functional analysis of vesicular stomatitis virus Indiana 1 serotype (VSV-IN1) are based on the only full-length genomic sequence currently deposited in GenBank. This sequence is a composite of several VSV-IN1 laboratory strains passaged extensively in tissue culture over the years and it is not certain that this sequence is representative of strains circulating in nature. We describe here the complete genomic sequence of three natural isolates, each representing a distinct genetic lineage and geographical origin: 98COE (North America), 94GUB (Central America) and 85CLB (South America). Genome structure and organization were conserved, with a 47 nucleotide 3' leader, five viral genes -- N, P, M, G and L -- and a 59 nucleotide 5' trailer. The most conserved gene was N, followed by M, L and G, with the most variable being P. Sequences containing the polyadenylation and transcription stop and start signals were completely conserved among all the viruses studied, but changes were found in the non-transcribed intergenic nucleotides, including the presence of a trinucleotide at the M-G junction of the South American lineage isolate. A 102-189 nucleotide insertion was present in the 5' non-coding region of the G gene only in the viruses within a genetic lineage from northern Central America. These full-length genomic sequences should be useful in designing diagnostic probes and in the interpretation of functional genomic analyses using reverse genetics.

Base Sequence↗

The analysis of near full-length genome sequences of human immunodeficiency virus type 1 BF intersubtype recombinant viruses from Chile, Venezuela and Spain reveals their relationship to diverse lineages of recombinant viruses related to CRF12_BF.

Human immunodeficiency virus type 1 (HIV-1) BF intersubtype recombinant viruses are common in Argentina and Uruguay, where CRF12_BF and related recombinants are frequently found, and, in a lower proportion, in Brazil. Full-length genome sequences have been characterized in several of these recombinant viruses. Here, we analyze six newly derived near full-length genome sequences of BF recombinant viruses, three from Chile, one from Venezuela and two from Spain. Five of them had known epidemiological links to Argentina. Genomes were amplified by PCR from plasma RNA or from peripheral blood mononuclear cells' DNA. Mosaic structures and phylogenetic relationships were analyzed by bootscanning, neighbour-joining phylogenetic trees and by examination of subtype signature nucleotides. One virus from Spain had a mosaic structure fully coincident with CRF12_BF. The others had unique mosaic structures, except the viruses from two Chilean sisters infected vertically from the same mother, who showed identical recombination patterns. Each of the unique recombinants had one to six breakpoints coincident with CRF12_BF and three also had two or three breakpoints coincident with a previously characterized unique recombinant from Argentina (A025) related to CRF12_BF. A phylogenetic tree of concatenated subtype F segments supported the relationship of five recombinants with CRF12_BF. In trees of partial subtype F and B segments, four recombinants clustered with A025. The examination of CRF12_BF signature amino acids and nucleotides supported the common ancestry of all the analyzed viruses. Based on these results, a model of generation of HIV-1 BF recombinants of Argentinean ancestry by successive rounds of recombination along diverse lineages deriving from a common BF recombinant ancestor related to CRF12_BF is proposed.

Argentina↗

Full-length genome sequence of Mossman virus, a novel paramyxovirus isolated from rodents in Australia.

Mossman virus (MoV) was isolated on two occasions from wild rats trapped in Queensland, Australia, during the early 1970s. Together with Nariva virus and J-virus MoV belongs to a group of novel paramyxoviruses isolated from rodents during the last 40 years, none of which had been characterized at the molecular level until now. cDNA subtraction strategies used to isolate virus-specific cDNA derived from both MoV-infected cells and crude MoV pellets were pivotal steps in rapid characterization of the complete genome sequence. Analysis of the full-length genome and its encoded proteins confirmed that MoV is a novel member of the subfamily Paramyxovirinae which cannot be assigned to an existing genus. MoV appears to be more closely related to another unclassified paramyxovirus Tupaia paramyxovirus (TPMV), isolated from the tree shrew Tupaia belangeri. Together with Salem virus (SalV), a further unclassified paramyxovirus that was isolated from a horse, MoV and TPMV make up a new collection of paramyxoviruses situated evolutionally between the genus Morbillivirus and the newly established genus Henipavirus.

Amino Acid Sequence↗

Full-length genome characterization of HIV type 1 subtype C isolates from two slow-progressing perinatally infected siblings in South Africa.

Isolation and characterization of HIV-1 from asymptomatic, slow-progressing individuals are important in studying viral pathogenesis and facilitate the development of vaccines and antivirals. In this study we identified two slow-progressing HIV-1-infected siblings, isolated viruses, and sequenced the full-length genome, to identify virus attenuations that may contribute to their altered rate of disease progression. Proviral DNA from strains 99ZATM10 and 01ZATM45 was isolated from peripheral blood mononuclear cells (PBMC) coculture.Virtually full-length genomes and long terminal repeat (LTR) regions were polymerase chain reaction (PCR) amplified, sequenced, and assembled to generate the complete genomes. Phylogenetic analysis confirmed that both isolates were subtype C throughout their genome. Predicted amino acid sequence analysis for all the HIV-1 proteins showed that both viruses had open reading frames for all genes, and encoded proteins of the expected length, except for the rev gene. The 3' end of rev exon 2 did not have the 16-amino acid (aa) truncation characteristic of subtype C viruses, and in addition, had a three-aa extension (GlyCysCys). Rev is a necessary regulatory factor for HIV expression, and changes in the protein may affect viral replication. These results suggest that slower HIV disease progression in these children may be attributed, at least in part, to an altered Rev protein.

Amino Acid Sequence↗

Human mitochondrial DNA with large deletions repopulates organelles faster than full-length genomes under relaxed copy number control.

Partially-deleted mitochondrial DNA (DeltamtDNA) accumulates during aging of postmitotic tissues. This accumulation has been linked to decreased metabolic activity, increased reactive oxygen species formation and the aging process. Taking advantage of cell lines with heteroplasmic mtDNA mutations, we showed that, after severe mtDNA depletion, organelles are quickly and predominantly repopulated with DeltamtDNA, whereas repopulation with the wild-type counterpart is slower. This behavior was not observed for full-length genomes with pathogenic point mutations. The faster repopulation of smaller molecules was supported by metabolic labeling of mtDNA with [3H]thymidine during relaxed copy number control conditions. We also showed that hybrid cells containing two defective mtDNA haplotypes tend to retain the smaller one as they adjust their normal mtDNA copy number. Taken together, our results indicate that, under relaxed copy number control, DeltamtDNAs repopulate mitochondria more efficiently than full-length genomes.

Aging↗

Isolation and characterisation of a full-length genomic clone encoding a plastidic glucose 6-phosphate dehydrogenase from Nicotiana tabacum.

We describe here the isolation and characterisation of the first full-length genomic clone encoding a plant glucose 6-phosphate dehydrogenase (G6PDH; EC 1.1.1.49) from Nicotiana tabacum L. cv Samsun. The gene was expressed in all tissues, including roots, leaves, stems and flowers. Comparison of the gene with other known plant G6PDH cDNAs grouped this sequence with plastidic isoforms. The protein, minus a putative plastidic transit sequence, was overexpressed in Escherichia coli as a glutathione S-transferase fusion protein. The resulting protein was shown to be immunologically related to the potato plastidic G6PDH. This suggests that the sequence described here codes for a plastidic isoform. Plastidic G6PDH mRNA was induced in both roots and leaves in response to KNO3, and the induction in roots was approximately 4 times the response seen in leaves. Sequence analysis of the 5'-untranslated region of the genomic clone indicated the presence of several NIT2 elements, which may contribute to the control of the expression of this gene. Plastidic G6PDH mRNA levels did not appear to respond to light.

Amino Acid Sequence↗

Recovery of infectious classical swine fever virus (CSFV) from full-length genomic cDNA clones by a swine kidney cell line expressing bacteriophage T7 RNA polymerase.

A new method for the recovery of infectious classical swine fever virus (CSFV) from full-length genomic cDNA clones of the C-strain was developed. Classical reverse genetics is based on transfection of in vitro transcribed RNA to target cells to recover RNA viruses. However, the specific infectivity of such in vitro transcribed RNA in swine kidney cells is usually low. To improve reverse genetics for CSFV, a stable swine kidney cell line was established that expresses cytoplasmic bacteriophage T7 RNA polymerase (SK6.T7). A 200-fold increased virus titre was obtained from SK6.T7 cells transfected with linearized full-length cDNA compared to in vitro transcribed RNA, whereas transfection of circular full-length cDNA resulted in 20-fold increased virus titres. Viruses generated on the SK6.T7 cells are indistinguishable from the viruses generated by the classical reverse genetic procedures. These results show the improved recovery of infectious CSFV directly from full-length cDNAs. Furthermore, the reverse genetic procedures are simplified to a faster, one step protocol. We conclude that the SK6.T7 cell line will be a valuable tool for recovering mutant CSFV and will contribute to future pestivirus research.

Animals↗

Analysis of near full-length genome sequences of HIV type 1 BF intersubtype recombinant viruses from Brazil reveals their independent origins and their lack of relationship to CRF12_BF.

We analyze the recombinant structures and phylogenetic relationships of nine near full-length genome sequences of HIV-1 BF intersubtype recombinant viruses from Brazil, eight of them newly derived. These were obtained by PCR amplification from peripheral blood mononuclear cells (PBMCs) DNA or PBMCs culture supernantant RNA. The recombinants exhibited unique mosaic structures, except two viruses with a single near coincident breakpoint. Comparison with CRF12_BF revealed only two coincident breakpoints in two recombinants. Phylogenetic analyses failed to support a common ancestry of Brazilian recombinants or their relationship to CRF12_BF, which widely circulates in Argentina. Intersubtype breakpoint distribution along the genome was uneven, with the highest mean frequency in the polymerase domain of reverse transcriptase, and the lowest in env. These results indicate that HIV-1 BF recombinants from Brazil have independent origins and are unrelated to CRF12_BF, and that intersubtype breakpoints are frequent in pol segments analyzed for drug resistance detection.

Brazil↗

Selection of E. coli strains for stable transformation with recombinant plasmids containing full-length genome of clinical HIV-1 isolates.

Strain chi6007 obtained from the parent E. coli strain chi5097 is a result of ptsH5 mutation, which allowed cells to grow without common components of the phosphoenolpyruvate-dependent phosphotransferase system. Segregants of strain chi6007 retaining the Pol+ gene responsible for inability to grow at 37 degrees C, but gaining rifampicin resistance (RifR) were used for cloning of cointegrate plasmids. Pre-integration complexes of HIV-1 were co-integrated with the pBR-322 plasmid and transformed strain chi6018. Sequencing showed that the pPIC91 hybrid plasmid contains full-length genome of HIV-1 with shortened 5-terminal LTR and full-length copy of pBR322. Elimination of the pPIC91 plasmid from chi6018 cells was followed by the appearance of auxotrophic insertion mutants. Sequencing of the insert region showed that chromosome DNA of the host cell includes integrated genomes of pBR-322 and HIV-1.

Base Sequence↗