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An estimate of the sequencing error frequency in the DNA sequence databases.

We have examined vector sequences fortuitously present in the EMBL sequence database as contaminating parts of submitted sequences, and found a sequencing error frequency of 3.55% in this subset of release 27 of the database. We discuss the possibility that this value may be representative for corresponding errors in the database as a whole.

Base Sequence↗

COX8, the structural gene for yeast cytochrome c oxidase subunit VIII. DNA sequence and gene disruption indicate that subunit VIII is required for maximal levels of cellular respiration and is derived from a precursor which is extended at both its NH2 and COOH termini.

From the amino acid sequence of yeast cytochrome c oxidase subunit VIII published previously (Power, S. D., Lochrie, M.A., Patterson, T.E., and Poyton, R.C. (1984) J. Biol. Chem. 259, 6571-6574), we have synthesized a pair of oligonucleotide probes and used them to identify COX8, its structural gene. By genomic Southern blot analysis and disruption of the COX8 chromosomal locus, we have shown that this gene is present in one copy per haploid genome and that its product, subunit VIII, is essential for maximal levels of cellular respiration and cytochrome c oxidase activity. Alignment of the amino acid sequence predicted from the DNA sequence of COX8 with the determined amino acid sequence of subunit VIII indicates that mature subunit VIII is derived from a larger precursor that extends from both the NH2 and COOH termini of the mature polypeptide. Thus, like many other nuclear coded mitochondrial proteins, subunit VIII is derived from a precursor which carries a leader peptide. In addition, this precursor, like that for yeast cytochrome c oxidase subunit VIIa, appears to carry a four-amino acid "trailer peptide" at its COOH terminus.

Amino Acid Sequence↗

Unusual immunoglobulin DNA sequences from the nonexpressed chromosome of mouse normal B lymphocytes: implications for allelic exclusion and the DNA rearrangement process.

Allelic exclusion of immunoglobulin gene products results in the expression of only one of two possible alleles in normal B lineage cells. Attempts to define the role of heavy chain gene rearrangements in this process have revealed the nonexpressed allele to be rarely in its germline context, but rather incompletely rearranged (D/J rearrangements) or completely rearranged (V/D/J rearrangements) and in a context that cannot be expressed as a protein. Nearly all DNA sequences of heavy chain genes from the nonexpressed allele have originated from plasmacytomas, virus-induced pre-B leukemias, and hybridomas--all clonal cell lines perhaps altered by the neoplastic process. In this communication, we present the first examples of isolation and DNA sequence analysis of heavy chain gene rearrangements from the nonexpressed allele of normal B lymphocytes. Splenic B lymphocytes from allotype heterozygous (BALB/c X C57BL/6J)F1 mice expressing the BALB/c IgD allotype were detected with a monoclonal antibody, H10-4.22, to the BALB/c delta chain genetic marker and were isolated with a FACS (fluorescence-activated cell sorter). lambda phage clones containing the JH gene region from the sorted cells were isolated, and those containing sequences derived from the C57BL/6J nonexpressed chromosome were identified by a restriction fragment length polymorphism. DNA sequences of seven rearranged clones from the nonexpressed allele are presented. Five of these rearrangements have unexpected compositions. Four of the five clones contain V/D/J rearrangements with no obvious impediments to expression generated by the rearrangements. The novel variable region gene in one of these V/D/J rearrangements is a member of a newly described VH gene family. The fifth clone has a 3.5 kb deletion removing all of the JH gene segments. The remaining two clones contain D/J rearrangements that are typical of the initial stage of variable region assembly. These findings suggest that the mechanisms that generate nontranslatable heavy chains do not exclusively account for allelic exclusion. Rather, several different mechanisms may contribute to the establishment of allelic exclusion in normal B lymphocytes.

Alleles↗

The complete DNA sequence of vaccinia virus.

The complete DNA sequence of the genome of vaccinia virus has been determined. The genome consisted of 191,636 bp with a base composition of 66.6% A + T. We have identified 198 "major" protein-coding regions and 65 overlapping "minor" regions, for a total of 263 potential genes. Genes encoded by the virus were located by examination of DNA sequence characteristics and compared with existing vaccinia virus mapping analyses, sequence data, and transcription data. These genes were found to be compactly organized along the genome with relatively few regions of noncoding sequences. Whereas several similarities to proteins of known function were discerned, the function of the majority of proteins encoded by these open reading frames is as yet undetermined.

Amino Acid Sequence↗

A tandemly repetitive, centromeric DNA sequence from the Canadian woodland caribou (Rangifer tarandus caribou): its conservation and evolution in several deer species.

A highly repetitive DNA clone, designated Rt-Pst3, was isolated from the PstI digest of Canadian woodland caribou (Rangifer tarandus caribou; 2n = 70) genomic DNA. It was found to be a 991 bp monomer of a tandemly repeated DNA sequence comprising about 5.7% of the genome and localized to the centromeric regions of all caribou acrocentric autosomes. Southern blot analyses revealed that this caribou satellite DNA sequence was well conserved in the genomes of five other deer species studied. In situ hybridization studies revealed Rt-Pst3-homologous DNA sequences in the centromeric regions of white-tailed deer chromosomes and Asian muntjac chromosomes, as well as at several interstitial chromosome regions in Indian muntjac chromosomes. Comparisons of the Rt-Pst3 DNA sequence to previously identified centromeric satellite DNA fragments from three other deer species revealed considerable DNA sequence similarity. The first ca. 800 bp of the Rt-Pst3 clone was found to share 73.8% similarity to the CCsatI clone of the European roe deer, 64.7% sequence similarity to the C5 DNA clone of the Chinese muntjac, and 64.8% and 65.6% sequence similarity to the 1A and B1 clones of the Indian muntjac, respectively. Moreover, the last 191 bp of the Rt-Pst3 clone was found to share about 60% DNA sequence similarity to the first 191 bp of the same clone. Amplification of one original ca. 800 bp monomer unit, along with the first 191 bp of the following juxtaposed monomer unit could have resulted in the tandemly repeated, 991 bp monomer unit now seen in the caribou genome. It is postulated that the centromeric satellite DNA found in other deer species, having repeat lengths greater than 800 bp, could also have evolved in a similar manner from a more ancestral monomeric unit of ca. 800 bp.

Animals↗

Exoquence DNA sequencing.

We have developed a strategy for DNA sequencing based on exonuclease III digestion followed by double strand specific endonuclease digestion and direct dideoxynucleotide sequencing reaction. This strategy eliminates the need for subcloning, oligonucleotide primers, and prior knowledge of the DNA to be sequenced. All template and primer duplexes needed for sequencing a complete insert can be prepared in one day from uncharacterized starting DNA. Sequence information can be obtained from different regions of the DNA simultaneously. The method uses double-stranded DNA to generate single-stranded template and primer, and thus produces high quality sequence results. Commercially available dideoxy-sequencing kits are well suited for this method. The strategy should be applicable for both automatic and routine laboratory DNA sequencing.

Exodeoxyribonucleases↗

Statistical properties of the number of recombination events in the history of a sample of DNA sequences.

Some statistical properties of samples of DNA sequences are studied under an infinite-site neutral model with recombination. The two quantities of interest are R, the number of recombination events in the history of a sample of sequences, and RM, the number of recombination events that can be parsimoniously inferred from a sample of sequences. Formulas are derived for the mean and variance of R. In contrast to R, RM can be determined from the sample. Since no formulas are known for the mean and variance of RM, they are estimated with Monte Carlo simulations. It is found that RM is often much less than R, therefore, the number of recombination events may be greatly under-estimated in a parsimonious reconstruction of the history of a sample. The statistic RM can be used to estimate the product of the recombination rate and the population size or, if the recombination rate is known, to estimate the population size. To illustrate this, DNA sequences from the Adh region of Drosophila melanogaster are used to estimate the effective population size of this species.

Alleles↗

DNA sequences required for the initiation of adenovirus type 4 DNA replication in vitro.

In-vivo studies have demonstrated that adenovirus type 2 and adenovirus type 4 have different DNA sequence requirements for the initiation of DNA replication. To investigate the basis of these differences an in-vitro system has been developed which will faithfully initiate adenovirus type 4 DNA replication. A plasmid containing 140 base-pairs of the right terminus of adenovirus type 4 supported initiation of DNA replication in vitro, provided that the plasmid was linearized in such a way as to locate the viral terminal sequences at the molecular ends of the DNA. Initiation by adenovirus type 4-infected cell extracts was also supported by a plasmid containing the complete adenovirus type 2 inverted terminal repeat (ITR). Deletion analysis of both adenovirus types 2 and 4 ITRs revealed that only the terminal 18 base-pairs of the genomes (perfectly conserved between the 2 viruses) were required for initiation in vitro. Thus, initiation was not enhanced by the presence of either the NFI site, the NFIII site or both sites together. Fractionation of a HeLa cell nuclear extract, by ion-exchange chromatography, identified a nuclear factor that stimulated the initiation reaction four- to fivefold. The stimulatory factor did not correspond to either of the cellular proteins NFI or NFIII which stimulate adenovirus type 2 DNA replication in vitro. Initiation in vitro was also supported by single-stranded DNA templates, albeit at a lower efficiency. Studies with synthetic oligonucleotides indicated a surprising specificity for initiation: whereas the strand used as template during initiation in vivo was active as a template for initiation in vitro, the complementary strand was inactive.

Adenoviridae↗

[Capillary array electrophoresis and high-throughput DNA sequencing].

Depending on the outputs of 10,080 DNA sequencing samples from the human genome project, technical features of capillary array electrophoresis are discussed. The results show that 88% of the total readlength were higher than 50 kbp/run. It means that most of the readlength could reach 500 bp or more with reasonable quality. The results were much better than expected when the technology of capillary array appeared about one year ago. A key parameter affecting the quality of DNA sequencing is the purity of sequencing template. Therefore, a batch agarose slab electrophoresis was applied to check the purity before loading. Other conditions, such as concentration of template and loading amount, are discussed as well. Finally, comparisons based on the electrophoresis timing, the pre-treatment of samples, the loading procedures and the results analysis between capillary array electrophoresis and slab gel electrophoresis have been made. From the point of view of high-throughput DNA sequencing, especially in the field of genome research, the capillary array electrophoresis should be the better choice as a more efficient technical platform.

Base Sequence↗

DNA sequences of the immunoglobulin heavy chain variable region gene in pyothorax-associated lymphoma.

B cell lymphoma develops in the pleural cavity of patients affected by long-standing pyothorax resulting from lung tuberculosis, thus termed pyothorax-associated lymphoma (PAL). PAL usually shows a diffuse large cell morphology, and constantly contains Epstein-Barr virus (EBV) genome. To investigate whether PAL cells proliferate in response to specific antigenic stimuli and its stage in B cell differentiation, immunoglobulin heavy chain gene in 7 cases and 2 cell lines from PAL, all confirmed by histological studies to be EBV-positive diffuse large B cell lymphoma, were examined by using polymerase chain reaction (PCR) method. Clonal rearrangement of the gene was detected in 4 cases of PAL tissues and one cell line. As for the usage of the V region gene (V(H)), the V(H)3 family gene was used in 3 of these 5 cases with different homologous germlines, suggesting that the origin of PAL cells from a repertoire of B lymphocytes responsive to specific antigenic epitope was unlikely. Compared to the homologous germline, the mutation frequency of PAL was 9% on average. Only one case might have more replacement mutations in the complementarity-determining regions than expected by chance, thus antigen-selected maturation might not take place in PAL. Intraclonal sequence heterogeneity in the V(H) gene was found in another case. From these findings, it is concluded that PAL is composed of B lymphocytes at the differentiation stage of the postgerminal center. Antigen-selected maturation might not take place in PAL, which is distinct from the majority of B cell lymphomas.

Aged↗

Acquisition of new DNA sequences after infection of chicken cells with avian myeloblastosis virus.

DNA-RNA hybridization studies between 70S RNA from avian myeloblastosis virus (AMV) and an excess of DNA from (i) AMV-induced leukemic chicken myeloblasts or (ii) a mixture of normal and of congenitally infected K-137 chicken embryos producing avian leukosis viruses revealed the presence of fast- and slow-hybridizing virus-specific DNA sequences. However, the leukemic cells contained twice the level of AMV-specific DNA sequences observed in normal chicken embryonic cells. The fast-reacting sequences were two to three times more numerous in leukemic DNA than in DNA from the mixed embryos. The slow-reacting sequences had a reiteration frequency of approximately 9 and 6, in the two respective systems. Both the fast- and the slow-reacting DNA sequences in leukemic cells exhibited a higher T(m) (2 C) than the respective DNA sequences in normal cells. In normal and leukemic cells the slow hybrid sequences appeared to have a T(m) which was 2 C higher than that of the fast hybrid sequences. Individual non-virus-producing chicken embryos, either group-specific antigen positive or negative, contained 40 to 100 copies of the fast sequences and 2 to 6 copies of the slowly hybridizing sequences per cell genome. Normal rat cells did not contain DNA that hybridized with AMV RNA, whereas non-virus-producing rat cells transformed by B-77 avian sarcoma virus contained only the slowly reacting sequences. The results demonstrate that leukemic cells transformed by AMV contain new AMV-specific DNA sequences which were not present before infection.

Journal Article↗

The influence of DNA sequence on the immunostimulatory properties of plasmid DNA vectors.

To determine the influence of DNA sequence on immunostimulatory properties of vaccine vectors, we tested the induction of in vitro and in vivo immune responses by plasmids modified to contain extended runs of dG sequences. Studies with oligonucleotides indicate that dG sequences can directly stimulate B cells as well as enhance the activity of immunostimulatory CpG motifs because of interaction with the macrophage scavenger receptor (MSR); this receptor can bind a variety of polyanions including dG sequences. To modify vectors, we introduced stretches of 20-60 dG residues into the pCMV-beta and pSG5rab.gp vectors and measured the ability of these plasmids to induce IL-12 and IFN-gamma production by murine splenocytes. The induction of in vivo antibody responses to rabies glycoprotein was also assessed with the pSG5rab.gp vectors. In in vitro cultures, cytokine production induced by plasmids with and without dG sequences was similar. Furthermore, the addition of dG sequences to pSG5rab.gp vectors failed to enhance the anti-rabies glycoprotein response to immunization. To assess further mechanisms by which plasmids stimulate macrophages, we measured the effects of MSR ligands on in vitro cytokine induction. In in vitro cultures, poly(G), dG30, and fucoidan inhibited IL-12 induction by plasmids. IL-12 induction was also inhibited by mammalian DNA but was unaffected by polyanions that are not MSR ligands. Together, these results suggest that the addition of 20 to 60-base dG sequences to plasmids does not significantly affect their properties as immunostimulators or vaccines. Furthermore, these results suggest that MSR ligands can block cytokine induction by plasmid DNA whether or not the plasmid contains extended runs of dG.

Amino Acid Sequence↗

The organization of repeated DNA sequences in the human genome.

The arrangement of repetitive and non-repetitive DNA sequences was studied in the human genome. By Ag+-Cs2SO4 density gradient centrifugations of human DNA at different fragment size reannealed to different Cot values and c-RNA hybridization experiments, we have shown the presence of two repetitive DNA fractions, called fast and slow intermediate DNA, with different pattern of sequence organization. The fast intermediate DNA sequences (6% of the genome; CsCl density in renatured form: 1.703 g/ml) are in part clustered in fragments greater than 24,000 nucleotide pairs and in part in fragments ranging from 1,800 to 600 nucleotide pairs spaced with longer more complex sequences. The slow intermediate DNA sequences (30% of the genome; CsCl density in renatured form: 1.707 g/ml) appear to be finely interspersed with non-repetitive sequences. At a DNA fragment size of 600 nucleotide pairs only a third of the slow intermediate DNA sequences are free of unique sequences, while the other two thirds are still organized with unique sequences. It has also been shown that a great amount of the repetitive DNA sequence transcripts in heterogeneous nuclear RNA of HeLa cells are complementary to slow intermediate DNA sequences.

Base Sequence↗

Mitochondrial DNA sequences from dried snake venom: a DNA barcoding approach to the identification of venom samples.

Outdated nomenclature and incorrect taxonomic characterisation of snake venoms in the current toxinological literature have serious implications for the replicability of results from snake venom toxin research. The situation has not improved, despite attempts to supply toxinologists with regular updates on snake systematics. Here, we demonstrate the successful extraction of DNA, and subsequent sequencing of the mitochondrial 12S gene, from dried snake venoms. This approach offers a new and potentially straightforward method for accurate species identification. Mitochondrial DNA (mtDNA) sequences isolated from snake venom can be used to clarify or validate snake species identification through comparison against existing sequences in the GenBank database, and through phylogenetic analyses with other sequences. Pooled venoms can also be screened a priori for the presence of multiple species, and the species names on the labels of commercial venoms verified. Moreover, if the species from which the venom sample has been taken is known, and the specimen is available as a voucher, the mtDNA sequence of the haplotype isolated from that species venom sample could serve as a sequence standard (or 'DNA barcode') for that species. Our new method of DNA barcoding venoms ensures the identification of venoms even after future taxonomic changes.

Animals↗

Functional role of a highly repetitive DNA sequence in anchorage of the mouse genome.

The major portion of the eukaryotic genome consists of various categories of repetitive DNA sequences which have been studied with respect to their base compositions, organizations, copy numbers, transcription and species specificities; their biological roles, however, are still unclear. A novel quality of a highly repetitive mouse DNA sequence is described which points to a functional role: All copies (approximately 50,000 per haploid genome) of this DNA sequence reside on genomic Alu I DNA fragments each associated with nuclear polypeptides that are not released from DNA by proteinase K, SDS and phenol extraction. By this quality the repetitive DNA sequence is classified as a member of the sub-set of DNA sequences involved in tight DNA-polypeptide complexes which have been previously shown to be components of the subnuclear structure termed 'nuclear matrix'. From these results it has to be concluded that the repetitive DNA sequence characterized in this report represents or comprises a signal for a large number of site specific attachment points of the mouse genome in the nuclear matrix.

Animals↗

A frameshift error detection algorithm for DNA sequencing projects.

During the determination of DNA sequences, frameshift errors are not the most frequent but they are the most bothersome as they corrupt the amino acid sequence over several residues. Detection of such errors by sequence alignment is only possible when related sequences are found in the databases. To avoid this limitation, we have developed a new tool based on the distribution of non-overlapping 3-tuples or 6-tuples in the three frames of an ORF. The method relies upon the result of a correspondence analysis. It has been extensively tested on Bacillus subtilis and Saccharomyces cerevisiae sequences and has also been examined with human sequences. The results indicate that it can detect frameshift errors affecting as few as 20 bp with a low rate of false positives (no more than 1.0/1000 bp scanned). The proposed algorithm can be used to scan a large collection of data, but it is mainly intended for laboratory practice as a tool for checking the quality of the sequences produced during a sequencing project.

Algorithms↗

Integration host factor binds to a unique class of complex repetitive extragenic DNA sequences in Escherichia coli.

Interspersed repeated DNA sequences are characteristic features of both prokaryotic and eukaryotic genomes. REP sequences are defined as conserved repetitive extragenic palindromic sequences and are found in Escherichia coli, Salmonella typhimurium and other closely related enteric bacteria. These REP sequences may participate in the folding of the bacterial chromosome. In this work we describe a unique class of 28 conserved complex REP clusters, about 100bp long, in which two inverted REPs are separated by a singular integration host factor (IHF) recognition sequence. We term these sequences RIP (for repetitive IHF-binding palindromic) elements and demonstrate that IHF binds to them specifically. It is estimated that there are about 70 RIP elements in E. coli. Our analysis shows that the RIP elements are evenly distributed around the bacterial chromosome. The possible function of the RIP element is discussed.

Bacterial Proteins↗