Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “DNA sequencing”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 343 records · Page 19Linked to original sources

Fast quantitative assay of sequence-specific endonuclease activity based on DNA sequencer technology.

A quantitative assay of the sequence-specific endonuclease activity of Vsr DNA mismatch endonuclease is described. The procedure rests on fluorescently labelled oligonucleotide substrates and an automated DNA sequencer to determine amounts of both educt and product of the reaction; thus each individual measurement is internally standardized. The assay achieves high sample throughput by parallel measurement of multiple samples. Because of its capacity to produce and process large sets of experimental data, the system is particularly well suited for the determination of reaction kinetics. The procedure lends itself to further simplification by implementing software additions for direct peak integration. Obviously, the principle of the assay can be extended to the study of other enzymes, such as restriction endonucleases or sequence-specific proteases.

Base Sequence↗

DNA sequence analysis by MALDI mass spectrometry.

Conventional DNA sequencing is based on gel electrophoretic separation of the sequencing products. Gel casting and electrophoresis are the time limiting steps, and the gel separation is occasionally imperfect due to aberrant mobility of certain fragments, leading to erroneous sequence determination. Furthermore, illegitimately terminated products frequently cannot be distinguished from correctly terminated ones, a phenomenon that also obscures data interpretation. In the present work the use of MALDI mass spectrometry for sequencing of DNA amplified from clinical samples is implemented. The unambiguous and fast identification of deletions and substitutions in DNA amplified from heterozygous carriers realistically suggest MALDI mass spectrometry as a future alternative to conventional sequencing procedures for high throughput screening for mutations. Unique features of the method are demonstrated by sequencing a DNA fragment that could not be sequenced conventionally because of gel electrophoretic band compression and the presence of multiple non-specific termination products. Taking advantage of the accurate mass information provided by MALDI mass spectrometry, the sequence was deduced, and the nature of the non-specific termination could be determined. The method described here increases the fidelity in DNA sequencing, is fast, compatible with standard DNA sequencing procedures, and amenable to automation.

Animals↗

Inferences about orthopteroid phylogeny and molecular evolution from small subunit nuclear ribosomal DNA sequences.

We determined DNA sequences of SSU rRNA genes in twenty-nine polyneopteran insect species and aligned these with homologues from eight other insects. In a phylogenetic analysis we recovered the classic divisions of Palaeoptera and Neoptera, with the latter divided into monophyletic Paraneoptera and Polyneoptera. The polyneopterans divided into three lineages: one includes the Grylloblattodea, Dermaptera and Plecoptera, the second contains the Blattodea, and the third (Orthopteroidea sensu Hennig) contains the Embiidina, Phasmida, and Orthoptera, in that order. The monophyly of the Orthoptera is supported by the analyses, as is the separation between taxa from its suborders Caelifera and Ensifera. The Caelifera are not always supported as a monophyletic group; the basal Tridactyloidea are separated from the rest of the Caelifera in some analyses. Inside of Tridactyloidea, the Acridoidea, Pamphagoidea, Pneumoroidea and Trigonopterygoidea are always recovered as a monophyletic group. We also examined the basal orthopteran relationships, with the specific aim of assessing the antiquity of the Ensifera. Character state reconstructions indicated that the ancestral ensiferan sequence is very similar to the ancestral orthopteran sequence. However, likelihood ratio tests rejected the null hypothesis of a molecular clock and we conclude that a change in substitution rate has occurred within the Orthoptera and several of the other polyneopteran orders. Similar observations have been made in holometabolous insects, suggesting that variation in substitution rate is a general feature of insect nuclear rRNA evolution.

Animals↗

An approach to the use of stable isotopes for DNA sequencing.

The sequencing of DNA by current procedures involves the use of radioisotopic or fluorescent labels. We propose that stable isotopes can be used as such labels and that the large number of stable isotopes available would allow multiplexing so that many DNA segments could be sequenced simultaneously. We have developed methods to use 57Fe2O3 to synthesize ferrocene and to attach the ferrocene to the 5' end of oligonucleotides. The 57Fe-labeled M13 universal primer functioned normally in a Sanger sequencing procedure. When a 57Fe-labeled oligonucleotide had migrated on a polyacrylamide gel it was readily located on the dried gel by scanning with resonance ionization spectroscopy (RIS) coupled with mass spectrometry. Using a 57Fe-labeled primer in a PCR reaction a 2000-bp DNA was produced that was detected by RIS on nylon membrane after agarose electrophoresis. The rapid analysis features of RIS coupled with the multispectral multiplexing possibilities of stable isotopes should significantly increase the rate of determination of DNA sequences.

Base Sequence↗

Enhancement of antigen-presenting cell surface molecules involved in cognate interactions by immunostimulatory DNA sequences.

Bacterial genomic DNA, plasmid DNA (pDNA) and synthetic oligodeoxynucleotides (ODN) containing immunostimulatory DNA sequences (ISS) have been proposed to foster a Th1 response via the release of type 1 cytokines from macrophages, dendritic cells, NK cells and B cells. In this study, we show that ISS-enriched DNA up-regulates a distinct profile of cell surface molecules on macrophages and B cells in vitro and in vivo. ISS-ODN and ISS-containing pDNA enhanced the expression of antigen presentation molecules (MHC class I and II), co-stimulatory molecules (B7-1, B7-2 and CD40), cytokine receptors (IFN-gamma receptor and IL-2 receptor), an adhesion molecule (ICAM-1) and an Fc receptor (Fcgamma receptor) on murine B cells or bone marrow-derived macrophages. The increased expression of these surface molecules is seen in purified cell populations and is largely independent of the effects of type 1 cytokines. Splenic antigen-presenting cells stimulated with ISS-ODN in vivo efficiently activate naive T cells and bias their differentiation toward a Th1 phenotype in vitro. Thus, the induction of both type 1 cytokines and a distinct profile of cell surface molecules contributes to the potent immunostimulatory effects of ISS-containing DNA on innate and adaptive immunity.

Adjuvants, Immunologic↗

POSA: perl objects for DNA sequencing data analysis.

BACKGROUND: Capillary DNA sequencing machines allow the generation of vast amounts of data with little hands-on time. With this expansion of data generation, there is a growing need for automated data processing. Most available software solutions, however, still require user intervention or provide modules that need advanced informatics skills to allow implementation in pipelines. RESULTS: Here we present POSA, a pair of new perl objects that describe DNA sequence traces and Phrap contig assemblies in detail. Methods included in POSA include basecalling with quality scores (by Phred), contig assembly (by Phrap), generation of primer3 input and automated SNP annotation (by PolyPhred). Although easily implemented by users with only limited programming experience, these objects considerabily reduce hands-on analysis time compared to using the Staden package for extracting sequence information from raw sequencing files and for SNP discovery. CONCLUSIONS: The POSA objects allow a flexible and easy design, implementation and usage of perl-based pipelines to handle and analyze DNA sequencing data, while requiring only minor programming skills.

Contig Mapping↗

Evaluation of metastatic human tumor burden and response to therapy in a nude mouse xenograft model using a molecular probe for repetitive human DNA sequences.

A sensitive DNA dot-blot assay for repetitive human DNA sequences was developed and applied to the quantitative determination of spontaneous metastases of a human melanoma in various tissues of nude mice. The assay was useful for defining the time course and pattern of tissue distribution of metastatic cells as well as for assessing response to therapy. The methodology is relatively simple, can be performed using nonradioactive DNA probes, and should be broadly applicable to studies of metastasis of human tumors in nude mice.

Animals↗

DNA sequence analysis with a modified bacteriophage T7 DNA polymerase.

A chemically modified phage T7 DNA polymerase has three properties that make it ideal for DNA sequencing by the chain-termination method. The enzyme is highly processive, catalyzing the polymerization of thousands of nucleotides without dissociating. By virtue of the modification the 3' to 5' exonuclease activity is eliminated. The modified polymerase efficiently uses nucleotide analogs that increase the electrophoretic resolution of bands in gels. Consequently, dideoxynucleotide-terminated fragments have highly uniform radioactive intensity throughout the range of a few to thousands of nucleotides in length. There is virtually no background due to terminations at pause sites or secondary-structure impediments. Processive synthesis with dITP in place of dGTP eliminates band compressions, making possible the unambiguous determination of sequences from a single orientation.

Base Sequence↗

A comprehensive list of cloned human DNA sequences.

A list of DNA sequences cloned from the human genome is presented. Intended as a guide to clone availability, this list includes published reports of cDNA, genomic and synthetic clones comprising gene and pseudogene sequences, uncharacterised DNA segments and repetitive DNA elements.

Cloning, Molecular↗

Rapid sequencing of the p53 gene with a new automated DNA sequencer.

p53 is the most commonly mutated gene in human cancers. Approximately 90% of the p53 gene mutations are localized between domains encoding exons 5 to 8. Sequencing methods currently available are tedious and time-consuming and are not suitable for routine laboratory testing. In an effort to identify a simple and rapid sequencing method, we analyzed 16 preselected breast tumors and 18 preselected ovarian tumors, using a newly developed automated DNA sequencer. p53 gene mutations had been previously identified in these tumors, using a conventional automated sequencing procedure. Exons 5 to 8 were amplified by PCR, and the PCR products were subsequently subjected to cycle sequencing with the Sanger chain termination method, using Cy5.5-labeled primers. The sequencing mixture was then resolved on a newly developed automated DNA sequencer that can sequence approximately 300 bases of DNA in 30 min. Of these 16 breast tumors, two had mutations in exon 5, four in exon 6, three in exon 7, and three in exon 8. Of the 18 ovarian tumors, two had mutations in exon 5, five in exon 6, two in exon 7, and three in exon 8. In all cases, we identified the same mutations by both the new and the conventional sequencing procedures. Most mutations affected an arginine codon. These data demonstrate that the new method has the capability to provide accurate sequencing information in a fraction of the time and labor in comparison with current automated sequencing techniques. When such procedures are used, DNA sequencing may become a routine tool for identifying clinically important mutations for diagnosis and prognosis of patients with genetic, malignant, infectious, and other diseases.

Autoanalysis↗

Enzymatic multiplex DNA sequencing.

The problem of reading DNA sequence films has been reformulated using an easily implemented, multiplex version of enzymatic DNA sequencing. By utilizing a uniquely tagged primer for each base-specific sequencing reaction, the four reactions can be pooled and electrophoresed in a single lane. This approach has been previously proposed for use with fluorescently labelled probes (1), and is analogous to the principle used in four-dye fluorescence sequencing except that the signals are resolved following electrophoresis (2). After transfer to a nylon membrane, images are obtained separately for each of the four reactions by hybridization using oligonucleotide probes. The images can then be superimposed to reconstitute a complete sequence pattern. In this way the correction of gel distortion effects and accurate band registration are considerably simplified, as each of the four base-specific ladders require very similar corrections. The methods therefore provide the basis for a second generation of more accurate and reliable film reading programs, as well as being useful for conventional multiplex sequencing. Unlike the original multiplex protocol (3), the approach described is suitable for small projects, as multiple cloning vectors are not used. Although more than one vector can be utilized, only a library of fragments cloned into any single phage, phagemid or plasmid vector is actually required, together with a set of tagged oligonucleotide primers.

Base Sequence↗

Transforming DNA sequences of human hepatocellular carcinomas, their distribution and relationship with hepatitis B virus sequence in human hepatomas.

Several related human transforming DNA sequences, hhc, and a putative normal liver homologue, c-hhc, have been molecularly cloned from the genomic DNAs of individual African and Asian hepatomas and from normal liver respectively. hhcM (Mahlavu) and hhcK3 (Korean), but not c-hhc, transformed NIH3T3 cells in DNA-mediated gene transfer assays. Transformed cells were found tumorigenic in athymic NIH Swiss nu/nu mice. In view of recent epidemiological studies implicating hepatitis B virus (HBV) infection early in life as causative for the eventual development of primary hepatocellular carcinoma in humans in Southeast Asia, the Far-East, and certain areas of Africa, we hereby analyzed the relationship between these hhcs and HBV in a survey of 20 hepatomas for DNA sequences homologous to hhcM and HBV by sequential hybridizations against [32p]hhcM and [32p]HBV probes. hhcM related DNA sequence were found highly amplified in 80% of the 20 hepatomas but HBV DNA sequence was rare or low. hhcM lends itself as a marker for human hepatomas. However, overall results indicated that patients with integrated HBV DNA sequences showed high copy number of hhcM sequence. Furthermore, EcoR1-restricted hepatoma DNAs showed that HBV and hhcM DNA sequences resided at different fragments in hepatomas. Our results suggest that HBV contributes to hepatocarcinogenesis probably via an activation mechanism involving possibly an integration or transient interaction of HBV DNA with hepatocyte DNA sequences, leading to recombination and eventual amplifications of the hhcM sequence in Mahlavu.

Animals↗

Mixed model analysis of DNA sequence evolution.

Nucleotides in a DNA sequence may be changing at different rates, because they are located in different structural and functional regions of the gene, and are thus subject to different mutational pressures or selective restrictions. Knowledge of substitution rates at specific sites is important for understanding the forces and mechanisms that have shaped the evolution of the DNA sequences. The gamma distribution has previously been proposed to model such rate variation among nucleotide sites. Based on mixed model methodology we present in this paper a method for predicting substitution rates at nucleotide sites by using homologous DNA sequences. The predictor is unbiased and "best" in the sense that it minimizes the mean squared error and maximizes the correlation between the predictor and the true value. It is also quite robust to errors in estimates of parameters in the model. A numerical example is given, with guidelines for the practical use of the approach. The most influential factor affecting the accuracy of prediction is the number of sequences; to get a correlation of over .7 between the predictor and the true value, about six to seven sequences are needed, depending on the overall similarity of the sequences.

Animals↗

The detection of mycobacterial DNA sequences in uncultured clinical specimens with cloned Mycobacterium tuberculosis DNA as probes.

A plasmid DNA library was constructed from restriction endonuclease digested genomic deoxyribonucleic acid (DNA) of a virulent strain of Mycobacterium tuberculosis isolated from sputum of a patient. The sensitivity and specificity of two of the cloned DNA fragments in detecting M. tuberculosis and its related DNA sequences were analysed by DNA-to-DNA hybridization. The level of detection was determined to be 50 picograms of M. tuberculosis DNA, which is approximately equivalent to 10,000 mycobacterial genomes. These two M. tuberculosis DNA probes did not cross-hybridize to DNA of non-mycobacterial origin, nor with DNA from 9 out of 11 other mycobacterial species. Mycobacterial DNA sequences could be detected in 134 of 441, or 30.4%, of various types of uncultured clinical specimens from 365 patients by the DNA probes, whereas traditional culture method showed only a 19.0% positivity rate for the same specimens (p less than 0.001). The overall sensitivity and specificity of the DNA probes in detecting M. tuberculosis are 90.5% and 83.8% respectively. The DNA hybridization test may become a useful tool for the early and rapid determination of mycobacterial infection in uncultured clinical specimens.

Autoradiography↗

An exact formula for the number of alignments between two DNA sequences.

Given two DNA sequences, one is usually interested in measuring their similarity. For this purpose we have to consider different alignments of both the sequences. The number of alignments grows rapidly with the length of the sequences. In this short communication, we give an exact formula for the number of possible alignments using the theory of difference equations.

Algorithms↗

Chemiluminescent DNA sequencing with multiplex labeling.

Chemiluminescent detection techniques provide a sensitive, nonradioactive method for DNA sequencing. Standard Sanger dideoxy DNA sequencing reactions are initiated with biotinylated primers, separated by gel electrophoresis, transferred to nylon membrane and detected utilizing chemiluminescent 1,2-dioxetane substrates for alkaline phosphatase. A multiplex-labeling method was developed to permit detection of several overlapping sets of DNA sequence information on a single membrane, thereby increasing the productivity of a single gel electrophoretic separation. Primers labeled with different haptens at the 5' end were used to perform separate sequencing reactions. These were mixed together prior to electrophoresis, and the individual sequencing products sequentially detected using hapten-specific reagents. We incorporated primers labeled with biotin, digoxigenin, 2,4-dinitrophenyl or fluorescein, each consecutively detected with a hapten-specific alkaline phosphatase conjugate and CSPD 1,2-dioxetane chemiluminescent substrate. To further increase the amount of DNA sequence data that can be obtained from a single membrane, a direct transfer electrophoresis apparatus was used for simultaneous separation of the DNA sequencing reactions and membrane transfer. The resulting increased separation of the high molecular weight fragments yields 350-450 bp of readable DNA sequence data from each template. Chemiluminescent detection of overlapping sets of DNA sequencing reactions utilizing multiplex labeling, combined with direct transfer electrophoresis, provides an efficient, nonradioactive method for DNA sequencing.

2,4-Dinitrophenol↗

C4d DNA sequences of two infrequent human allotypes (C4A13 and C4B12) and the presence of signal sequences enhancing recombination.

The DNA sequences of the polymorphic region (C4d) that belong to the infrequent complement C4 allotypes C4A13 and C4B12 have been obtained. In addition, C4A4 and C4B2 C4d sequences have been completed. C4A13 shows a new combination of amino acids at the following polymorphic positions: Asp1054, Pro1101 Cys1102, Leu1105, Asp1106, Asn1157, Ala1188, and Arg1191. These amino acids conform to the antigenic determinants Chido 1 and Rodgers 3; thus C4A13 is the only allele described thus far that carries both Ags. C4A13 and C4A4 carry the motif "ggctc*" (* means "deletion") at positions 14 to 19 in their intron 28; this motif had previously been reported only in C4B alleles. The C4B12 nucleotide sequence is analogous to C4B1b and C4B3 sequences, except for codon 1076, which is GCC in C4B1b and C4B3 and GGA in C4B12, which is coding for glycine in both cases. A recombination model for the generation of C4 alleles is formulated based on the analysis of these new sequences. One recombination would take place between positions 1157 and 1186 and would give rise to C4A13 and C4B5 or C4A3 (or C4A6) and C4B2; another one would occur between positions 1054 and 1076 and would generate C4A3 (or C4A6) and C4B12 or C4A2 and C4Bnew. Analysis of 1157 to 1186 and 1054 to 1076 fragments reveals the presence of putative sequence signals for recombination (similar to Escherichia coli chi recombination signal); the accumulation of such signals in fragments 1054 to 1076 supports the notion that a recombination hot spot for the C4 gene may exist and it also enhances new allele generation and intraspecies C4 gene homogenization.

Alleles↗

Analysis of sequence-tagged-connector strategies for DNA sequencing.

The BAC-end sequencing, or sequence-tagged-connector (STC), approach to genome sequencing involves sequencing the ends of BAC inserts to scatter sequence tags (STCs) randomly across the genome. Once any BAC or other large segment of DNA is sequenced to completion by conventional shotgun approaches, these STC tags can be used to identify a minimum tiling path of BAC clones overlapping the nucleation sequence for sequence extension. Here, we explore the properties of STC-sequencing strategies within a mathematical model of a random target with homologous repeats and imperfect sequencing technology to understand the consequences of varying various parameters on the incidence of problem clones and the cost of the sequencing project. Problem clones are defined as clones for which either (A) there is no identifiable overlapping STC to extend the sequence in a particular direction or (B) the identified STC with minimum overlap comes from a nonoverlapping clone, either owing to random false matches or repeat-family homology. Based on the minimum overlap, we estimate the number of clones to be entirely sequenced and, then, using cost estimates, identify the decision rule (the degree of sequence similarity required before a match is declared between an STC and a clone) to minimize overall sequencing cost. A method to optimize the overlap decision rule is highly desirable, because both the total cost and the number of problem clones are shown to be highly sensitive to this choice. For a target of 3 Gb containing approximately 800 Mb of repeats with 85%-90% identity, we expect <10 problem clones with 15 times coverage by 150-kb clones. We derive the optimal redundancy and insert sizes of clone libraries for sequencing genomes of various sizes, from microbial to human. We estimate that establishing the resource of STCs as a means of identifying minimally overlapping clones represents only 1%-3% of the total cost of sequencing the human genome, and, up to a point of diminishing returns, a larger STC resource is associated with a smaller total sequencing cost.

Genome, Human↗