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At least 235 records · Page 13Linked to original sources

Characterisation of polyoma late mRNA leader sequences by molecular cloning and DNA sequence analysis.

The leader sequences of two of the three polyoma virus late mRNAs were characterised by molecular cloning and DNA sequence analysis. A short single-stranded DNA fragment complementary to the 5' end of the body of mVP1 was used to prime cDNA synthesis, and double-stranded cDNA was inserted into a derivative of pAT 153. Analysis of fourteen mVP1 cDNAs and two mVP3 cDNAs allowed the precise determination of the leader-body joints, and demonstrated that the majority of polyoma late leader sequences consist of exact tandem repeats of a 57 nucleotide sequence present only once in the genomic DNA at 66-67 m.u. The sequences in the genomic DNA borderline this unit are typical of those found at RNA splice points. Leader sequences contained on average three to four repeat units. Nuclease S1 mapping of total late mRNA demonstrated that most mRNA 5' ends map heterogeneously in the 50 nucleotides 5' to the repeated sequence unit. The structures of the leader sequences strongly suggest that they are generated by appropriate splicing events from a tandemly repeated transcript of the entire circular viral genome.

Base Sequence↗

Detection of Epstein-Barr virus DNA sequences in nasopharyngeal carcinoma cells by enzymatic DNA amplification.

The presence of Epstein-Barr virus (EBV) DNA sequences was examined by the polymerase chain reaction in 50 nasopharyngeal carcinoma (NPC) biopsy specimens and in two primary epithelial tumor cell cultures derived from patients with NPC. The detection limit was a single EBV genome equivalent by agarose gel electrophoresis followed by Southern blot analysis of the amplified products. EBV DNA sequences were detected in all 41 undifferentiated NPC cell specimens, in 2 of 4 moderately differentiated NPC cell specimens, and in 3 of 5 keratinized NPC cell specimens. Undifferentiated NPC cells were also found to contain higher copy numbers of EBV than cells of the other two types of NPC. Our data suggest that EBV replication may be closely associated with the differentiation of NPC tumor cells. The results also demonstrated a sensitive and specific method for the detection of EBV DNA sequences in NPC tumor cells.

Base Sequence↗

Frequency and polymorphism of simple sequence repeats in a contiguous 685-kb DNA sequence containing the human T-cell receptor beta-chain gene complex.

The human T-cell receptor beta-chain (TCRB) gene complex spans 575 kb in chromosome region 7q35 and has been the subject of a large-scale DNA sequencing effort. A contiguous 685-kb DNA sequence from this region was searched by computer analysis for the occurrence of simple sequence repeats (microsatellites) with core sequence lengths of 2-5 nucleotides. Twenty-nine such microsatellites of repeat number n > or = 9 were found, with the majority being dinucleotide repeats. By PCR analysis, 19 were found to be polymorphic in repeat number, thus averaging one per 36 kb. These polymorphic di-, tri-, and tetranucleotide repeats had between 3 and 15 differently sized alleles each. The potential usefulness of these TCRB microsatellites for detecting disease susceptibility alleles was examined by measuring the linkage disequilibrium between these markers and flanking biallelic mutations. All but 4 microsatellites (79%) demonstrated significant linkage disequilibrium (P < 0.0001). This present study highlights the utility and potential outcomes of large-scale DNA sequencing for the identification of polymorphic simple sequence repeats.

Alleles↗

DNA sequence analysis of the ribosomal DNA ITS2 region for the Anopheles punctulatus group of mosquitoes.

The internal transcribed spacer 2 (ITS2) from the ribosomal DNA was sequenced and characterized for ten cryptic species in the Anopheles punctulatus group, the members of which are major vectors of malaria and filariasis in the south-west Pacific. The length of the ITS2 ranged from 549 bp to 565 bp and displayed levels of sequence variation ranging from 2.3% to 24.3% due mainly to indels of simple sequences. The GC content varied from 61.3% to 70.9%. These values were higher than those found in other cryptic species of mosquitoes and comparable only to members of the An. dirus complex suggesting a possible link between this group of Asian mosquitoes and the An. punctulatus group. Optimal and suboptimal secondary structures were investigated and revealed structures where the 5' region folded independently of the 3' region. Due to the large level of sequence variation between species, the ITS2 region proved unsuitable for phylogenetic analysis.

Animals↗

The binding of nonintercalative drugs to alternating DNA sequences.

Molecular mechanics methods have been applied to suggest possible models for netropsin and related compounds binding to two different sequences of DNA, namely poly[d(AT)].poly[d(AT)] and poly[d(GC)].poly[d(GC)], and to evaluate the different contributions to the binding affinities of these compounds in the ethidium displacement assay. The geometries found after energy refinement suggest that one of the reasons for the selectivity of binding of these agents to A + T-rich DNA regions could be the different widths of the minor groove of the double strand of DNA found in the complexes of these drugs with both DNA sequences.

Base Sequence↗

High throughput DNA sequencing using an automated electrophoresis analysis system and a novel sequence assembly program.

The combination of high-resolution scanning, image-databasing technology and sequence assembly software makes it possible to assemble contiguous overlapping sequences of DNA in a fraction of the time required by manual methods. This paper describes and evaluates an assembly program that rapidly generates contigs from scanned images and provides a unique ability to verify disagreements between overlapping strands or fragments of complementary DNA sequences on-screen, further increasing sequencing throughput.

Base Sequence↗

Direct haplotype-specific DNA sequencing.

Determining haplotype-specific DNA sequence information is very important in a wide range of research fields. However, no simple and robust approaches are currently available for determining haplotype-specific sequence information. We have addressed this problem by developing a very simple and robust haplotype-specific sequencing approach. We utilise the fact that DNA sequencing polymerases are sensitive to 3'end mismatches in the sequencing primer. By using two sequencing primers with 3'end corresponding to the two alleles in a given SNP locus, we are able to obtain allele-specific DNA sequences from both alleles. We evaluated this direct haplotype-specific approach by determining haplotypes within the intron 2 sequence of the fructan-6-fructosyltransferase (6-ft) gene in Lolium perenne L. We obtained reliable haplotype-specific sequences for all primers and genotypes evaluated. We conclude that the haplotype-specific sequencing is robust, and that the approach has a potentially very wide application range for any diploid organism.

Base Sequence↗

Isolation of a repeated DNA sequence from Bordetella pertussis.

A repeated DNA sequence in the genome of Bordetella pertussis has been demonstrated. At least 20 copies of this sequence could be observed in either BamHI or EcoRI restriction enzyme digests of chromosomal DNA; fragments carrying the repeated DNA sequence ranged in size from about 1.5 to 20 kbp. The repeated DNA sequence was cloned from two separate regions of the B. pertussis genome, as shown by restriction enzyme site maps of the two clones and by hybridization studies. A small number of differences in the pattern of hybridization of the repeated DNA sequence to chromosomal DNA from several strains of B. pertussis was observed. No repeated DNA sequences were observed in one strain each of B. parapertussis and B. bronchiseptica, and there was no hybridization of B. pertussis DNA to Escherichia coli chromosomal DNA. The repeated DNA sequence was subcloned on a 2.54 kbp BamHI fragment from one of the two original clones. Restriction enzyme digests and hybridization studies showed that the repeated DNA sequence was about 1 kbp in size and had a single, internal ClaI site.

Autoradiography↗

In silico discrimination of single nucleotide polymorphisms and pathological mutations in human gene promoter regions by means of local DNA sequence context and regularity.

DNA sequence features were sought that could be used for the in silico ascertainment of the likely functional consequences of single nucleotide changes in human gene promoter regions. To identify relevant features of the local DNA sequence context, we transformed into consensus tables the nucleotide composition of sequences flanking 101 promoter SNPs of type C<-->T or A<-->G, defined empirically as being either 'functional' or 'non-functional' on the basis of a standardised reporter gene assay. The similarity of a given sequence to these consensus tables was then measured by means of the Shapiro-Senapathy score. A decision rule with the potential to discriminate between empirically ascertained functional and non-functional SNPs was proposed that potentiated discrimination between functional and non-functional SNPs with a sensitivity of 80% and a specificity of 20%. Two further datasets (viz. disease-associated SNPs of types A<-->G and C<-->T (N = 75) and pathological promoter mutations (transitions, N = 114)) were retrieved from the Human Gene Mutation Database (HGMD; http://www.hgmd.org/) and analyzed using consensus tables derived from the functional and non-functional promoter SNPs; approximately 70% were correctly recognized as being of probable functional significance. Complexity analysis was also used to quantify the regularity of the local DNA sequence environment. Functional SNPs/mutations of type C<-->T were found to occur in DNA regions characterized by lower average sequence complexity as measured with respect to symmetric elements; complexity values increased gradually from functional SNPs and pathological mutations to functional disease-associated SNPs and non-functional SNPs. This may reflect the internal axial symmetry that frequently characterizes transcription factor binding sites.

Algorithms↗

Discrimination between DNA sequences by the EcoRV restriction endonuclease.

The EcoRV restriction endonuclease cleaves not only its recognition sequence on DNA, GATATC, but also, at vastly reduced rates, a number of alternative DNA sequences. The plasmid pAT153 contains 12 alternative sites, each of which differs from the recognition sequence by one base pair. The EcoRV nuclease showed a marked preference for one particular site from among these alternatives. This noncognate site was located at the sequence GTTATC, and the mechanism of action of EcoRV at this site was analyzed. The mechanism differed from that at the cognate site in three respects. First, the affinity of the enzyme for the noncognate site was lower than that for the cognate site, but, by itself, this cannot account for the specificity of EcoRV as measured from the values of kcat/Km. Second, the enzyme had a lower affinity for Mg2+ when it was bound to the noncognate site than when it was bound to its cognate site: this appears to be a key factor in limiting the rates of DNA cleavage at alternative sites. Third, the reaction pathway at the noncognate site differed from that at the cognate site. At the former, the EcoRV enzyme cleaved first one strand of the DNA and then the other while at the latter, both strands were cut in one concerted reaction. The difference in reaction pathway allows DNA ligase to proofread the activity of EcoRV by selective repair of single-strand breaks at noncognate sites, as opposed to double-strand breaks at the cognate site. The addition of DNA ligase to reactions with EcoRV made no difference to product formation at the cognate site, but products from reactions at noncognate sites were no longer detected.

Base Sequence↗

Characterization of a DNA sequence that detects repetitive DNA elements in the Asian rice gall midge (Orseolia oryzae) genome: potential use in DNA fingerprinting of biotypes.

We have isolated based on reverse genome hybridization, and sequenced a DNA clone, pNZE25, from a partial genomic library of the Asian rice gall midge Orseolia oryzae (Wood-Mason) (O.o.). Clone pNZE25 is highly A+T rich (67%), lacks any open reading frame and does not display homology to sequences in GenBank. Clone pNZE25 detects a 120-bp repeat in the O.o. genome, as seen from the generation of a 120-bp ladder after Southern analysis of HinfI-digested genomic DNA. When used to probe O.o. genomic DNA digested with DraI, HaeIII or AluI, pNZE25 generates individual specific DNA fingerprints on target DNA isolated from gall midge biotypes collected from different parts of India.

Animals↗

Ultra-high-speed DNA sequencing using capillary electrophoresis chips.

DNA sequencing has been performed on microfabricated capillary electrophoresis chips. DNA separations were achieved in 50 x 8 microns cross-section channels microfabricated in a 2 in. x 3 in. glass sandwich structure using a denaturing 9% T, 0% C polyacrylamide sieving medium. DNA sequencing fragment ladders were produced and fluorescently labeled using the recently developed energy transfer dye-labeled primers. Sequencing extension fragments were separated to approximately 433 bases in only 10 min using a one-color detection system and an effective separation distance of only 3.5 cm. Using a four-color labeling and detection format, DNA sequencing with 97% accuracy and single-base resolution to approximately 150 bases was achieved in only 540 s. A resolution of greater than 0.5 was obtained out to 200 bases for both the one- and four-color separations. The prospects for enhancing the resolution and sensitivity of these chip separations are discussed. This work establishes the feasibility of high-speed, high-throughput DNA sequencing using capillary array electrophoresis chips.

Base Sequence↗

Unusual frequencies of certain alternating purine-pyrimidine runs in natural DNA sequences: relation to Z-DNA.

Prokaryotic, eukaryotic and mitochondrial DNA sequences of total Length 300 000 nucleotides have been analyzed to find out whether stretches of alternating purines and pyrimidines are unusual in terms of occurrence, composition and base sequence. Alternating runs longer than 5 nucleotides are significantly under-represented in the natural sequences as compared to random ones. Octanucleotides are the most deficient, occurring at only 60% of the frequency expected in random sequences. An unexpectedly high proportion of these octamers consists of alternating tetramers with the repeat structure (PuPyPuPy)2 or (PyPuPyPu)2. DNA stretches containing such sequences can potentially form a S1 nuclease sensitive slippage (staggered loop) structure, which might serve as a locally unstacked intermediate in the B- to Z-DNA conformational transition.

Animals↗

Newly evolved repeated DNA sequences in primates.

Repeated DNA sequences in primates having identical or nearly identical members and exhibiting unusual phylogenetic specificity were analyzed. They appeared in repeated DNA sequences in each group of primates, probably within the last 10 to 15 million years, and are conserved to the same extent as unique DNA sequences. The finding allows a new approach to the construction of evolutionary trees.

Animals↗

Miropeats: graphical DNA sequence comparisons.

Miropeats displays DNA sequence similarity information graphically. The program discovers regions of similarity amongst any set of DNA sequences and then draws a graphic that summarizes the length, location and relative orientations of any repeated sequences. Sequence similarity searching is a very general tool that forms the basis of many different biological sequence analyses but it is limited by the verbosity of traditional alignment presentation styles. Miropeats enhances the utility of conventional DNA sequence comparisons when looking at long lengths of sequence similarity by summarizing large-scale sequence similarities on a single page of PostScript graphics. Miropeats has been applied estensively to help understand shotgun assembly projects, to check cosmid overlaps and to perform inter-genomic comparisons.

Algorithms↗

ABI sequencing analysis. Manipulation of sequence data from the ABI DNA sequencer.

The ABI Sequencing Analysis application is designed specifically for the analysis of data produced by the ABI DNA Sequencer. The ABI sequencer is a laser-based instrument that utilizes fluorescent labels to analyze the products of a sequencing reaction as they migrate through a gel. After the data are collected from a sequencing run, the Analysis program identifies and tracks the sample lanes of the gel and subsequently normalizes and integrates the raw data into a chromatogram of the final sequence. For the user, there are basically two types of files that can be manipulated to potentially improve the analysis results. The Gel File consists of a computer generated image of the sequencing gel with the fluorescent DNA banding patterns. This image allows the user to view and edit the tracking lines generated and used by Analysis to collect data points for each sample. Individual Sample Files are stored for each of the samples analyzed and include the chromatogram, raw data, and annotations and information regarding the sample and sequence run. Generally, the products of a sequencing reaction are easily resolved and the Analysis software interprets the correct nucleotide sequence. Ambiguous base calls tend to occur near the end of the sequence and may be either edited or deleted by the user before exporting the data for further comparisons or alignments. Occasionally the tracking lines within the gel image may need to be adjusted or moved. The sample data are then reextracted from the Gel File and analyzed again. This review explains the general operation of Analysis in terms of viewing and editing a chromatogram, retracking the lanes of a Gel File, and analyzing the final sample data. The three versions 1.2.1, 2.1.2, and 3.3 are discussed.

Animals↗

Detection of DNA sites damaged by 1-(4-amino-methyl-5-pyrimidinyl)methyl-3-(2-chloroethyl)-3-nitrosourea hydrochloride (ACNU) using a DNA sequencing procedure.

A DNA sequencing technique was applied to the highly reiterated DNA from HeLa S3 cells in order to detect DNA damage induced by the antitumor drug, 1-(4-amino-2-methyl-5-pyrimidinyl)methyl-3-(2-chloroethyl)-3-nitrosourea hydrochloride (ACNU). A DNA reiterated fragment of 92 base pairs (bp) was isolated by gel electrophoresis after EcoRI and EcoRI restriction endonuclease digestion. In the defined sequence of the 92 bp fragment, ACNU caused damage and modifications primarily at guanine moieties, leading to alkali-labile sites as determined by subsequent piperidine reaction on an extended Maxam-Gilbert sequencing gel. These results indicate that guanine moieties in double-stranded DNA are preferentially vulnerable to ACNU over other base moieties.

Base Sequence↗