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Proviral organization and sequence analysis of feline immunodeficiency virus isolated from a Pallas' cat.

The nucleotide sequence and genomic organization have been determined for a highly cytopathic feline immunodeficiency virus (FIV) isolated from a Pallas' cat. The 9747-bp provirus of this virus, FIV-Oma, has typical lentivirus organization with LTRs, gag, pol, and env open reading frames (ORFs), putative vif and rev ORFs, and an ORF similar to ORF2/ORFA of domestic cat FIV isolates. Although the FIV-Oma provirus is 300 to 600 bp longer than other FIV proviruses, these additional bases are distributed throughout the genome. Phylogenetic analysis of a conserved region of the pol gene suggests that FIV-Oma is more closely related to some of the puma and lion lentiviruses than it is to domestic cat FIV isolates; however, many regions of the genome exhibit extensive nucleotide sequence divergence. None of the eight molecular proviral clones isolated from a genomic library are infectious, but we have constructed an infectious, cytopathic clone of FIV-Oma from subcloned and PCR-amplified fragments of these proviral clones. This clone will be useful for identifying the genetic determinants of FIV-Oma's biological activities.

Amino Acid Sequence↗

Sequence analysis and expression of a mRNA for a larval-specific cuticular protein, LCP1, from Helicoverpa armigera.

Several cDNA clones for a larval cuticular protein from Helicoverpa armigera were isolated and sequenced. The cDNA clones contain an open reading frame encoding a 109 residue protein which is homologous to other known cuticular proteins. The predicted protein appears to have a signal peptide which would be removed to give a mature protein of 91 amino acid residues with an Mr of 10 127. The mature protein, LCP1 (Larval Cuticular Protein), would be highly acidic, as is found for other cuticular proteins from flexible insect cuticles. The mRNA appears to be expressed throughout larval development although it is more highly expressed in the integument of the late final instar.

Amino Acid Sequence↗

Genotypic analysis of the 5'-untranslated region of a pestivirus strain isolated from human leucocytes.

The 5'-untranslated genomic region of the pestivirus strain Europa, originated in human leucocytes and previously identified as bovine diarrhea virus (BVDV), was amplified by reverse transcription-PCR and sequenced. Analyses based on primary nucleotide sequence homology and on secondary palindromic sequence structures characteristic to genotypes revealed that this human isolate should be assigned to a novel genotype of pestivirus, type Ic. This newly emerged genotype was related to, but distinguishable from the three known BVDV genotypes, Ia, Ib and II. Three other bovine field isolates of BVDV originated from Germany were also found to belong to this new genotype Ic. Within pestivirus genotype Ic strains, the overall nucleotide sequence homology was 95-96%, and 88-92%, 88-90% and 77-79% with the other BVDV genotypes Ia, Ib and II, respectively. With the strains from border disease virus (genotype III) and hog cholera virus (genotype IV), homologies were less than 75%.

Animals↗

Nucleotide sequence analysis of the large (L) genes of phocine distemper virus and canine distemper virus (corrected sequence).

This paper corrects the previously published sequence of the L gene of canine distemper virus (CDV). Errors in the published sequence (M. S. Sidhu et al., 1993, Virology 193, 50-65) led to frame shifts between residues 1021-1032, 1190-1219 and 1645-1650; a deletion of 21 amino acids between residues 1684-1705, and a single residue deletion at residue 1478. Residue 237 is now found to be glycine rather than tryptophan and residue 1626 proline instead of threonine. The sequence of the L gene of phocine distemper virus (PDV) was also determined. Alignment of the morbillivirus L proteins showed that PDV and CDV are more closely related to each other than to rinderpest virus and measles virus. Two regions of low identity are proposed to function as hinge regions between three highly conserved domains (I-III) in the morbillivirus L proteins. New sequence motifs have been identified on the basis of conservation in the morbilliviruses and the Paramyxovirinae.

Amino Acid Sequence↗

[The complete nucleotide sequences of A/Goose/Guangdong/2/96(H5N1) virus RNA segment 1-3 and 5].

OBJECTIVE: To determine the nucleotide and amino acid sequences of PB2, PB1, PA and NP genes and compared them with sequences of A/HK/156/97(H5N1) virus for revealing the relationship between A/Googs/Guangdong/2/96(H5N1) and A/HK/156/97(H5N1) viruses. METHODS: Virion RNA was transcribed into cDNA by reverse transcriptase, cDNA amplified by PCR, the productions of PCR were purified. Afterward, RNA sequence analysis was performed by the dideoxynucleotide chain termination method, using synthetic oligodeoxynucleotide primers. RESULTS: The lengths of A/Goose/Guangdong/2/96(H5N1) virus RNA segment 1-3 and 5 contain 2,341, 2,341, 2,233 and 1,565 nucleotides, respectively. They encode for PB2 (759 amino acids), PB1 (757 amino acids), PA (716 amino acids) and NP (498 amino acids) proteins. The homologies of amino acid sequences of PB2, PB1, PA and NP proteins between A/Goose/Guangdong/2/96 (H5N1) and A/HK/156/97 (H5N1) virus are 96.4%, 97.2%, 97.3% and 97.0%, respectively. CONCLUSION: The lengths of RNA segment 1-3 and 5 of Goose strain are 2,341, 2,341, 2,233 and 1,565 nucleotides, respectively. The nucleotide sequences of these genes are distinguish able from those of Hong Kong virus.

Amino Acid Sequence↗

The simian T-lymphotropic virus STLV-PP1664 from Pan paniscus is distinctly related to HTLV-2 but differs in genomic organization.

We have isolated a highly divergent simian T-lymphotropic virus, STLV-PP1664, from a wild-caught bonobo (Pan paniscus). Previous phylogenetic analysis suggested that this virus represents an additional type of STLV but this has now become a matter of discussion. We have now obtained and analyzed the entire genome of STLV-PP1664. All major genes and their corresponding viral messengers were identified. Sequence comparison and phylogenetic analysis indicated that this virus, together with the closely related panp isolate, belongs to an early lineage within the PTLV-2 clade, differing from HTLV-2 by about 25%. In contrast to the HTLV-1 and HTLV-2 LTR, only two 21-bp repeats instead of three were found in the STLV-PP1664 LTR. Additional messengers, resulting from alternative splicing, potentially encode five different accessory proteins from open reading frames in the pX region: prorfI, porfII, ptorfV', and two isoforms of Rex. The amino acid sequences of these proteins are only distinctly related to the accessory proteins from HTLV-2. These data suggest a different genomic organization of the STLV-PP1664 pX region than that of HTLV-2. We conclude that STLV-PP1664, although related to HTLV-2, has some distinct features in the LTR and the pX regions, the impact of which needs further investigation. Although arguments pro and contra a distinct classification are nearly equally balanced, we propose to classify this virus as an STLV-2, designated STLV-2PP1664.

Amino Acid Sequence↗

[Nucleotide sequence of A/Goose/Guangdong/2/96 (H5N1) virus M and NS RNA].

OBJECTIVE: To determine the nucleotide sequences of M and NS genes of A/Goose/Guangdong/2/96(H5N1) virus and also to compare them with the sequences of A/HK/156/97(H5N1) strain for revealing the relationship between the two viruses, as well as for setting up a solid base for studying M and NS genes of influenza A viruses in the future. METHODS: Virion RNA was transcribed into cDNA by reverse transcriptase, cDNA was amplified by PCR, the products of PCR were purified. Afterward, RNA sequence analysis was performed by the dideoxynucleotide chain termination method using synthetic oligodeoxynucleotide primers. RESULTS: The segment length of A/Goose/Guangdong/2/96(H5N1) virus RNA 7 is 1,027 nucleotides. It codes M1 (252 amino acids) and M2 (97 amino acids) proteins. However, the segment length of RNA 8 of A/Goose/Guangdong/2/96(H5N1) virus is 890 nucleotides coding NS1 (230 amino acids) and NS2 (121 amino acids) proteins. The amino acid sequence homologies of M1, M2, NS1 and NS2 protein molecules between A/Goose/Guangdong/2/9(H5N1) and A/HK/156/97 (H5N1) viruses are 97.6%, 92.8%, 65.7% and 76.9%, respectively. CONCLUSION: The lengths of A/Goose/Guangdong/2/96(H5N1) virus RNA 7 and RNA 8 and 1,027 are 890 nucleotides, respectively. These two RNA segments belong to those of avian influenza A virus. The A/HK/156/97(H5N1) virus RNA 7 and RNA 8 segments are not derived from those of A/Goose/Guangdong/2/96(H5N1) virus directly.

Amino Acid Sequence↗

Nucleotide sequence and genomic organization of Acyrthosiphon pisum virus.

The nucleotide sequence of the genomic RNA of Acyrthosiphon pisum virus was determined. The APV genome is 10,016 nucleotides in length, excluding the 3'-end poly(A) track, and contains two large open reading frames (ORFs), encoding proteins of 296,340 and 63,279 Da. The ORF1 is preceded by an untranslated leader sequence of 267 nucleotides. The ORF1 product contains sequence motifs characteristic of RNA-dependent RNA polymerases, chymotrypsin-like proteases, and helicases. Interviral sequence comparison revealed significant similarities with viruses belonging to the so-called picornavirus superfamily. The ORF2 is most likely expressed by a -1 translational frameshift and is followed by an untranslated sequence of 222 nucleotides. Internal amino acid sequences of three capsid proteins (66K, 34K, 23/24K) were determined. Comparison of the obtained amino acid sequences with the APV sequence disclosed that the structural proteins are located in the 3'-terminal half of the genome. The 34K protein is encoded by the ORF1, while the 66K protein contains both ORF1-(34K) and ORF2-derived sequences and is probably expressed by a translational frameshift. The 23/24K proteins most likely arise by proteolytic breakdown of the 34K protein. Although the deduced APV genomic organization in some aspects resembles that of the picornaviruses, its overall genomic organization indicates that APV is a distinct species only distantly related to the Picornaviridae.

Amino Acid Sequence↗

Predicted stem-loop structures and variation in nucleotide sequence of 3' noncoding regions among animal calicivirus genomes.

Caliciviruses are nonenveloped with a polyadenylated genome of approximately 7.6 kb and a single capsid protein. The "RNA Fold" computer program was used to analyze 3'-terminal noncoding sequences of five feline calicivirus (FCV), rabbit hemorrhagic disease virus (RHDV), and two San Miguel sea lion virus (SMSV) isolates. The FCV 3'-terminal sequences are 40-46 nucleotides in length and 72-91% similar. The FCV sequences were predicted to contain two possible duplex structures and one stem-loop structure with free energies of -2.1 to -18.2 kcal/mole. The RHDV genomic 3'-terminal RNA sequences are 54 nucleotides in length and share 49% sequence similarity to homologous regions of the FCV genome. The RHDV sequence was predicted to form two duplex structures in the 3'-terminal noncoding region with a single stem-loop structure, resembling that of FCV. In contrast, the SMSV 1 and 4 genomic 3'-terminal noncoding sequences were 185 and 182 nucleotides in length, respectively. Ten possible duplex structures were predicted with an average structural free energy of -35 kcal/mole. Sequence similarity between the two SMSV isolates was 75%. Furthermore, extensive cloverleaflike structures are predicted in the 3' noncoding region of the SMSV genome, in contrast to the predicted single stem-loop structures of FCV or RHDV.

Base Sequence↗

Characterisation of Wongorr virus, an Australian orbivirus.

Sequence analyses of VP3 gene segments of Wongorr virus isolates from the Northern Territory of Australia were compared with the cognate gene segments from Picola and Paroo River viruses. Previous serological investigations had demonstrated some relationships between these viruses, however VP3 gene sequence and phylogenetic analyses placed these viruses within the same serogroup which was distinct from other described orbivirus serogroups. A polymerase chain reaction (PCR) was developed for the detection of this serogroup and used to identify and determine partial sequence data for other isolates of the virus. Wongorr virus and the other tick and mosquito-borne orbiviruses (Kemerovo and Corriparta), were more closely related than the Culicoides transmitted orbiviruses, such as bluetongue (BTV) and African horse sickness virus (AHSV) which were shown to be on a separate branch of the orbivirus phylogenetic tree.

Aedes↗

Immunoglobulin heavy chain junctional diversity in young and aged humans.

The causes of observed deficiencies to the humoral immune response in aged humans are unknown. Since a major source of antibody diversity is generated at the VH-D-JH junctional regions of the immunoglobulin heavy chain, we determined whether differences in junctional diversity are manifested with aging. We compared the CDR3 regions of IgM heavy chain transcripts isolated from young adult and aged humans. A PCR assay that measures CDR3 length in the majority of mu-heavy chains showed the same average size and normal range of CDR3 length in aged individuals as observed in young adults. To characterize the features of junctional diversity of aged adults in more detail, we determined the CDR3 sequences of a subset of the mu-heavy chain repertoire that utilizes members of the VH 5 family. In general CDR3 length, D family usage, and JH gene usage were similar in aged compared to young adults. Thus, in contrast to dramatic changes in heavy chain junctional diversity associated with fetal to adult development, no major differences were found between young and aged adults. Since the CDR3 repertoire generated in aged individuals appears to be as diverse as that observed in younger adults, the decline in humoral immunocompetence with aging cannot be attributed to a restriction in heavy chain junctional diversification processes.

Adult↗

In vitro selection of RNA aptamers that bind special elongation factor SelB, a protein with multiple RNA-binding sites, reveals one major interaction domain at the carboxyl terminus.

The SelB protein of Escherichia coli is a special elongation factor required for the cotranslational incorporation of the uncommon amino acid selenocysteine into proteins such as formiate dehydrogenases. To do this, SelB binds simultaneously to selenocysteyl-tRNA(Sec) and to an RNA hairpin structure in the mRNA of formiate dehydrogenases located directly 3' of the selenocysteine opal (UGA) codon. The protein is also thought to contain binding sites allowing its interaction with ribosomal proteins and/or rRNA. SelB thus includes specific binding sites for a variety of different RNA molecules. We used an in vitro selection approach with a pool completely randomized at 40 nt to isolate new high-affinity SelB-binding RNA motifs. Our main objective was to investigate which of the various RNA-binding domains in SelB would turn out to be prime targets for aptamer interaction. The resulting sequences were compared with those from a previous SELEX experiment using a degenerate pool of the wild-type formiate dehydrogenase H (fdhF) hairpin sequence (Klug SJ et al., 1997, Proc. Natl. Acad. Sci. USA 94:6676-6681). In four selection cycles an enriched pool of tight SelB-binding aptamers was obtained; sequencing revealed that all aptamers were different in their primary sequence and most bore no recognizable consensus to known RNA motifs. Domain mapping for SelB-binding aptamers showed that despite the different RNA-binding sites in the protein, the vast majority of aptamers bound to the ultimate C-terminus of SelB, the domain responsible for mRNA hairpin binding.

Bacterial Proteins↗

Complete nucleotide sequence of the genomic RNA of tobacco mosaic virus strain Cg.

Tobacco mosaic virus (TMV)-Cg is a crucifer-infecting tobamovirus that was isolated from field-grown garlic. We determined the complete nucleotide sequence of the genomic RNA of TMV-Cg. The genomic RNA of TMV-Cg consists of 6303 nucleotides and encodes four large open reading frames, organized basically in the same way as that of other tobamoviruses. The nucleotide and deduced amino acid sequences are very similar to those of the other crucifer-infecting tobamoviruses that have been sequenced so far.

Amino Acid Sequence↗

tRNA-like structures in 10Sa RNAs of Mycoplasma capricolum and Bacillus subtilis.

The stable RNAs, whose sequences are homologous to 10Sa RNA of Escherichia coli, have been isolated from Mycoplasma capricolum and Bacillus subtilis, both belonging to the Gram-positive bacterial group. The total nucleotide sequences of the RNAs have been determined by partial RNA sequencing and DNA sequencing of their genes. A comparison of the sequences, together with those of other bacterial 10Sa RNAs so far known, has shown that the 5'- and 3'-end sequences are well conserved among species, while the central parts reveal little homologies. Unexpectedly, the conserved 5'- and 3'-regions can be folded in a common tRNA-like structure containing an amino acid-acceptor stem and a T phi C-stem/loop. The 3'-terminal CCA sequence of B.subtilis 10Sa RNA is not encoded on the DNA, but is added after transcription. Furthermore, the RNA is aminoacylatable with alanine in vitro, and binds to the 70S ribosome in vivo.

Acylation↗

The nucleotide sequence of a satellite RNA associated with strawberry latent ringspot virus.

The nucleotide sequence of a satellite RNA associated with a strawberry isolate (H) of strawberry latent ringspot nepovirus (SLRSV) was determined from cDNA copies and the 5' end sequence was deduced from directly sequenced virion RNA. At the 3' end a poly(A) sequence was identified. A long open reading frame encoding a polypeptide of 331 amino acids (M(r) 36488) was determined. Sequence comparisons showed that SLRSV satellite RNA has no extensive homology with other sequences in the GenEmbl and Swiss-Prot databases.

Amino Acid Sequence↗

Complete nucleotide sequence and organization of the RNA genome of groundnut rosette umbravirus.

Complementary DNA clones representing the entire genome of groundnut rosette umbravirus (GRV) were obtained and sequenced. GRV RNA comprises 4019 nucleotides and contains four large open reading frames (ORFs). The second ORF from the 5' end includes sequences that encode motifs characteristic of viral RNA-dependent RNA polymerases and is probably expressed by a -1 frameshift mechanism as a fusion protein with the product of the 5'-most ORF. The other two ORFs are almost completely overlapping in different reading frames, and are probably expressed from subgenomic RNA. One of the putative products has significant sequence similarity with viral movement proteins. None of the putative proteins encoded by GRV RNA seems to be a structural protein. In genome organization and in the amino acid sequences of its potential products, the RNA of GRV is similar to that of carrot mottle mimic umbravirus, and to the umbravirus-like RNA-2 of pea enation mosaic virus.

Amino Acid Sequence↗

Cloning and characterization of the genomic RNA sequence of the mumps virus strain associated with a high incidence of aseptic meningitis.

cDNA clones of the mumps virus wild-type strain, associated with a high incidence of aseptic meningitis (ODATE-1 strain), were isolated and analyzed from genomic nucleotide position 22 to 8520 containing the NP, P, M, F, SH and HN protein coding region. The ODATE-1 strain exhibited a RFLP profile identical to that of the Urabe vaccine strain in spite of the fact that the virus was isolated from non-vaccinated cases. However, a comparison of nucleotide and amino acid sequences among the ODATE-1 strain, Urabe strain and Miyahara strain revealed that the ODATE-1 strain was not related to the Urabe strain.

Animals↗