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Sensitive and robust one-tube real-time reverse transcriptase-polymerase chain reaction to quantify SIV RNA load: comparison of one- versus two-enzyme systems.

Plasma viral RNA load is a key parameter in disease progression of lentiviral infections. To measure simian immunodeficiency virus (SIV) RNA loads, we have established a quantitative one-tube assay based on TaqMan chemistry. This real-time reverse transcriptase-polymerase chain reaction (RT-PCR) has advantages compared with previous methods, such as higher sensitivity, shorter time consumption, and low risk of cross-contamination. The sensitivity of the assay was optimized by comparing different enzyme systems. The one-enzyme protocol using rTth DNA polymerase was superior to two assays employing two enzymes. It detects 100% of the samples containing four copies of RNA transcript and allows quantification of viral RNA loads over an 8-log unit dynamic range. As few as 50 copies per milliliter of plasma can be detected within RNA extracted from 140 microl of plasma. This is especially relevant in studies employing neonatal macaques, from which only small volumes of blood can be sampled, and in studies in which low viral RNA loads are expected. Because of the use of rTth DNA polymerase, DNA contamination can be avoided by carryover prevention with uracil N-glycosylase (UNG). We demonstrate that for optimization of real-time PCR sensitivity, not only concentrations of different reagents but also different enzyme systems must be evaluated. Our assay facilitates and enhances the quantification of plasma RNA loads, a critical parameter for many studies, including evaluations of vaccine candidates or antiviral regimens.

Animals↗

Recovery and identification of DNA sequences harboured in preserved ancient human bones.

A new method is presented to extract and identify specific DNA fragments from well preserved human bones, dating from three different time periods. Bone samples were thoroughly freed from surfacial contaminating DNA. Access to the inner bone spongiosum was achieved by removing the covering bone layers of the vertebra or sternum, whereas the patella, tibia and caput of the femur or humerus were cleaved with an iron saw. After the spongiosum was taken out, extraction of nucleic acids from this "sand" like material was performed by heating at 94 degrees C during 20 min in a buffer containing essentially minor concentrations of detergent, chelating and reducing agents. The extracts were used in various Polymerase Chain Reaction (PCR) protocols to amplify different human specific DNA fragments (originating from chromosomes X and 12). From 15 out of 20 bone samples human-specific gene fragments could thus be identified.

Base Sequence↗

Genetic information 'created' by archaebacterial DNA polymerase.

DNA polymerase catalyses replication of cellular DNA. The reaction requires a primer-template complex, and a new DNA chain grows from the 3' end of the primer along the template; no genetic information is created in this reaction. We demonstrate that DNA polymerase from Thermococcus litoralis, a hyperthermophilic marine Archaea, can synthesize up to 50000 bp of linear double-stranded DNA in the complete absence of a primer-template complex, indicating that genetic information is 'created.' The possibility of DNA contamination in the reaction mixture, which may serve as a primer and/or template, was vigorously excluded; for example, pretreatment of DNA polymerase with DNase I or extensive chromatographic purification of the substrate, deoxyribonucleoside 5'-triphosphates, did not abolish the primer-template-independent DNA synthesis. The DNA synthesized was (CTAGATAT)n, (TAGATATCTATC)n or a related sequence. Similar repetitive sequences are found in centromeric satellite DNA of many organisms. The significance of this ab initio DNA synthesis is that genetic information can flow from protein to DNA.

Archaea↗

DNA sequencing for microbial surveillance in cystic fibrosis airways: advances, challenges, and clinical translation.

SUMMARYDNA sequencing has revolutionized microbial surveillance in cystic fibrosis (CF), transforming pathogen identification from culture-dependent to total microbial community identification using molecular-based approaches. Techniques such as 16S rRNA gene sequencing have uncovered the complexity of the CF airway microbiome, while shotgun metagenomics, metatranscriptomics, and viromics now provide strain-level, functional, and viral insights beyond bacterial identification. Despite these advances, key technical and logistical challenges remain, including the processing of high-viscosity sputum samples, overwhelming host DNA contamination, managing large data sets, and the integration of complex bioinformatic outputs into clinical workflows. Emerging innovations such as host DNA depletion protocols, targeted enrichment panels, and adaptive sampling on Oxford Nanopore platforms are helping to overcome these barriers, improving microbial recovery and sequencing efficiency. As cystic fibrosis transmembrane conductance regulator (CFTR) modulator therapies are changing the lives of people with cystic fibrosis (pwCF), sequencing offers an unprecedented opportunity to track potential microbial adaptation in response. This review investigates current advances, limitations, and translational opportunities in DNA sequencing for CF airway microbiome surveillance, highlighting how these technologies can help reshape research and clinical microbiology in the post-modulator era.

Cystic Fibrosis↗

Selective genetic analysis of p53 immunostain positive cells.

The isolation of p53 immunostain positive cells from histological sections for molecular genetic studies is a difficult task, especially if there are few positive cells. To eliminate contaminating DNA from p53 negative cells, which can obscure the results of molecular assays, a variation on the technique of immunohistoselective sequencing was developed. This is a highly selective approach, whereby immunostained sections of formalin fixed, paraffin wax embedded tissue are exposed to ultraviolet irradiation to damage the DNA in p53 negative cells. The DNA in positive cells remains unaffected because the dark immunostain protects their nuclei from ultraviolet light. Polymerase chain reaction single strand conformation polymorphism of samples enriched with p53 immunostain positive cells has shown that this method can produce pure samples of mutated DNA. The isolation of DNA from minority immunostain positive cells allows a wide range of molecular analyses to be carried out on these samples, which would otherwise be hampered by the problem of contaminating background cells.

DNA Damage↗

Is the newly described Vietnamese bovid Pseudonovibos spiralis a chamois (genus Rupicapra)?

The "Linh Duong" (Pseudonovibos spiralis), a newly described Vietnamese bovid, has been shown to be related to the Caprinae on the basis of the mitochondrial cytochrome b gene sequencing from horn fragments. To integrate the greatest available biodiversity we performed a new phylogenetic analysis including all genera of Caprinae. Unexpectedly, Pseudonovibos is found to be robustly associated with Rupicapra, and closer to the Alpine than to the Pyrenean chamois. Several clues led us to interpret this result as a carry-over DNA contamination of Pseudonovibos by Rupicapra.

Animals↗

Differential amplifying RT-PCR: a novel RT-PCR method to differentiate mRNA from its DNA lacking intron.

A major problem with reverse transcription-polymerase chain reaction (RT-PCR) is that the products amplified from RNA and DNA are not distinguishable. The use of a primer set targeted for an intron-containing sequence or RNA extract without contaminating DNA has been established to overcome this problem. However, an intron sequence does not always exist in the target region and complete removal of DNA during RNA extraction is not practical. For these reasons, we developed differential amplifying RT-PCR (DART-PCR) based on differences in reaction temperatures between RT and PCR, as well as in architectures between RNA and DNA. DART-PCR was designed to differentiate products amplified from RNA and DNA regardless of the presence of introns. DART-PCR can be readily applied for diagnosis of active infection of human cytomegalovirus by detection of glycoprotein B mRNA, which gene lacks introns. Other advantages of DART-PCR were as follows: there is no need for separation of RNA from DNA, simultaneous/differential detection in a single tube and possibility of determination of relative amounts of RNA and DNA.

Cell Line↗

Distinguishing reverse transcriptase of an RNA tumor virus from other known DNA polymerases.

Assays are described that permit one to distinguish the reverse transcriptase of RNA tumor viruses from known normal cellular DNA-instructed DNA polymerases. Template responses of purified reverse transcriptase were compared with those of similar preparations of the DNA polymerase I of Escherichia coli and of calf-thymus polymerase. All three enzymes responded well to the synthetic duplexes poly(dT).poly(A), poly(U).poly(A), and poly(dT).poly(dA). Hence, these duplexes can detect, but cannot distinguish reverse, transcriptase from the known normal DNA polymerases. However, certain oligomer-homopolymer complexes serve as excellent distinguishing agents. The reverse transcriptase responds very well to (dT)(10).poly(A) and very poorly to (dT)(10).poly(dA), whereas both cellular DNA polymerases do not exhibit this behavior.Purified single-stranded RNA also serves as a diagnostic device, since only reverse transcriptase gives a detectable response. To be definitive, a positive response to RNA must be accompanied by a demonstration via molecular hybridization that the DNA product is complementary to the RNA and not to some minor DNA contaminant.

Adenine Nucleotides↗

Use of DNase to eliminate contamination in ancient DNA analysis.

Using polymerase chain reaction (PCR) amplification, it is possible to analyze DNA from limited source template. This method has proved especially valuable in studies of ancient DNA and in forensic investigations. However, PCR reactions containing minimal or damaged source template are prone to contamination by DNA from a number of other sources. While standard protocols to prevent and/or detect contamination do exist, methods of eliminating contamination are needed to ensure the validity of results obtained. We present a method to eliminate sources of contamination in reagents and labware through the use of a DNase prior to PCR amplification without damaging even the minimal amounts of template present in ancient DNA samples. This method, suggested previously for forensics applications, appears to be effective in eliminating contamination without interfering with the amplification of ancient template.

Deoxyribonucleases↗

Formation of urothelial and hepatic DNA adducts from carcinogen 2-naphthylamine.

The carcinogen, 2-naphthylamine (2-NA), induces tumor formation in the urinary bladder but not the liver of several species, including humans and dogs. Since its proximate carcinogenic metabolite, N-hydroxy-2-NA, was known to react directly with DNA in vitro to give specific carcinogen-base adducts, we investigated the in vivo formation and persistence of (2-NA)-DNA adducts in the bladder and liver and attempted to determine whether or not these lesions correlated with tissue susceptibility. Male beagle dogs were administered [3H]2-NA and sacrificed after 2 or 7 days. The DNA was isolated from the liver and urothelium and hydrolyzed enzymatically. The (2-NA)-deoxyribonucleoside adducts, which were quantitated by high pressure liquid chromatographic analysis, were the same as those found in vitro, namely 1-(deoxyguanosin-N2-yl)-2-NA, 1-(deoxyadenosin-N6-yl)-2-NA, and an imidazole ring-opened derivative of N-(deoxyguanosin-8-yl)-2-NA. The major difference detected between target and non-target tissues was in the total level of binding to DNA, which was 4-fold higher in the urothelium at 2 days and 8-fold higher at 7 days after 2-NA dosing. Analysis of specific adducts suggested that this difference may be due to the relative persistence of the C-8-guanine adduct in the urothelium as compared to the liver. Similar experiments with the non-carcinogen, 1-naphthylamine, failed to reveal binding in urothelial DNA and indicated a 20-fold lower binding level in hepatic DNA. Evidence for binding of 2-NA to glycogen is also presented and problems associated with measuring total radioactivity in glycogen-contaminated DNA fractions are discussed. The data obtained in this study, through from a necessarily limited number of animals, are consistent with the hypothesis that the formation and persistence of DNA-carcinogen adducts may be important in the initiation of the neoplastic process.

1-Naphthylamine↗

Methods for rapid cloning and detection for sequencing of cloned inverse PCR-generated DNA fragments adjacent to known sequences in bacterial chromosomes.

Since the invention of PCR, many adaptation techniques have been developed for sequencing DNA fragments flanking known sequences. Of them, inverse PCR is a matter of interest because of the simplicity of its principle. However, the protocols for inverse PCR introduced so far consist of some time-consuming procedures, and with them, we cannot "walk" chromosomes too far since the number of suitable restriction enzymes is limited. Our experiments led to confirming simpler technical approaches applicable to the case of bacterial chromosomes, that is, designing two end-specific "contextual" sequences with which we can quickly detect the desired clones of targeted DNA fragments by simply analyzing PCR products, employing "the minimum value of the desired fragments" as a "discriminating minimum" value to decrease contaminant DNA fragments, and creating a new tandem of two cleaved end fragments of a known sequence ("reordering") for PCR amplification in combination with cloning of the inverse PCR-generated DNA. With the improvements, we could both simplify the procedures and broaden the capacity of the inverse PCR in "walking" chromosomes.

Chromosomes, Bacterial↗

Characterization of a DNA primase from rat liver mitochondria.

A DNA primase was partially purified from rat liver mitochondria and separated from the bulk of DNA polymerase gamma and mtRNA polymerase by heparin-agarose chromatography. The primase was distinguished from mtRNA polymerase by its response to pH, monoand divalent cations, and ATP concentrations. In the absence of an active DNA polymerase and using poly(dT) as template, primase synthesized mixed polynucleotide products consisting of units of oligo(A) 1-12 alternating with units of oligo(dA)25-40. Contributions to these products by contaminating DNA polymerase gamma were eliminated by the addition of dideoxy-ATP. Addition of 50 microM dATP to the primase reaction caused a 50% inhibition of AMP incorporation as compared to reactions containing low levels of dATP present only as a contaminant of the ATP added. The inhibition was due primarily to a reduction of new chain initiations. The dATP did not "lock" the primase reaction into the DNA mode of synthesis since the proportion of internal and 3'-terminal RNA segments was little affected. However, the addition of both 50 microM dATP and exogenous DNA polymerase to the primase reaction greatly reduced the amount of internal and 3'-terminal RNA segments, presumably due to the displacement of primase by DNA polymerase. Our data are consistent with the hypothesis (Hu, S.-Z., Wang, T.S.-F., and Korn, D. (1984) J. Biol. Chem. 259, 2602-2609) that the physiologically significant primer is a mixed 5'-oligoribonucleotide-3'-oligodeoxyribonucleotide and that the formation of the RNA to DNA junction is inherently a primase function.

Adenosine Triphosphate↗

High-yield production of pBR322-derived plasmids intended for human gene therapy by employing a temperature-controllable point mutation.

Production of large quantities of highly purified plasmid DNA is essential for gene therapy. A low-copy-number pBR322-derived plasmid (VCL1005) was converted to a high-copy-number plasmid (VCL1005G/A) by incorporating a G-->A mutation that affects initiation of DNA replication from the ColE1 origin of replication. Because the phenotypic effect of this mutation is enhanced at an elevated temperature, a further increase in yield was achieved by changing the growth temperature from 37 degrees C to 42 degrees C at mid-log phase during batch and fed-batch fermentation. The combined effect of the single base-pair change and the elevated growth temperature produced an overall yield of 2.2 grams of plasmid DNA available for recovery from a 10-liter fed-batch fermentation compared to 0.03 grams from a 10-liter batch fermentation, a 70-fold increase in yield. The plasmid DNA isolated from this process contained lower levels of RNA and chromosomal DNA contaminants, simplifying downstream processing.

DNA, Bacterial↗

Biochemical engineering approaches to the challenges of producing pure plasmid DNA.

Plasmid-based genes offer promise for a new generation of vaccines and for gene therapy, but the size and character of plasmids pose new challenges to biochemical engineers. By acknowledging these and using bioprocess-design information based on fundamental studies of the system's properties, it will be possible to create efficient and consistent processes for these materials. This review addresses the purity required, the key issue of the sensitivity of the chromosomal DNA contaminant and larger plasmids to hydrodynamic forces, and the impact of this and other characteristics of plasmids on the recovery and purification of DNA for pharmaceutical purposes.

Biotechnology↗

c-MYC mRNA is present in human sperm cells.

Stage-specific expression of proto-oncogenes, including c-myc, has been demonstrated during spermatogenesis in testis. Some of these proto-oncogenes are expressed postmeiotically, especially in the round spermatid stage. Recently, we demonstrated the presence of c-myc protein in mature ejaculated sperm cells with a possible role in sperm cell function. Since the half-life of c-myc protein has been shown to be short, we suspected the presence of c-myc mRNA in human sperm cells. In the present study, the presence of the c-myc mRNA transcript in human sperm cells was investigated by reverse transcriptase-polymerase chain reaction (RT-PCR) analysis and in situ hybridization. Total RNA, 5-10 micrograms, was extracted from 0.2-0.5 ml of pelleted human sperm cells by NP-40 lysis procedure, and was used to construct cDNA with pd(N)6 random primer and Moloney Murine Leukemia Virus (MMLV) reverse transcriptase. The PCR with sperm cDNA and primers #P1 and #P2, both from exon 3, resulted in amplification of the expected 322 bp product. Primers #P3 and #P4, which are located in exon 2 and exon 3, respectively, and are 1.37 kb apart, gave the expected PCR amplified 313 bp product ruling out the possibility of DNA contamination. The presence of c-myc mRNA in human sperm cells was further confirmed by in situ hybridization using a digoxigenin labelled DNA probe, containing exon 2 of the c-myc gene sequence. The c-myc specific DNA probe reacted with the postacrosomal mid-piece and tail regions of both noncapacitated as well as capacitated methanol-fixed sperm cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

Development of a rapid, small-scale DNA repair assay for use on clinical samples.

Double-strand breaks (DSBs) are the most lethal form of DNA damage. They can be repaired by one of two pathways, homologous recombination and non-homologous end joining (NHEJ). A NHEJ assay has previously been reported which measures joining using cell-free extracts and a linearised plasmid as DNA substrate. This assay was designed for 3 x 10(9) cells grown in vitro and utilised radioactively labelled substrate. We have scaled down the method to use smaller cell numbers in a variety of cell lines. Altering the cellular extraction procedure decreased background DNA contamination. The cleaner preparations allowed us to use SYBR Green I staining to identify joined products, which was as sensitive as 32P-end-labelled DNA. NHEJ was found in established tumour cell lines from different originating tissues, though actual levels and fidelity of repair differed. This method also allowed end joining to be assessed in clinical specimens (human blood, brain and bladder tumours) within 24 h of receiving samples. The application of this method will allow investigation of the role of DSB DNA repair pathways in human tumours.

Benzothiazoles↗

Measurement of serum DNA binding in chronic active hepatitis and systemic lupus erythematosus using the Farr assay.

Antibodies to double-stranded DNA (dsDNA), generally regarded as highly specific for systemic lupus erythematosus (SLE), have also been reported in chronic active hepatitis (CAH). Using the Farr assay and E. coli DNA, fractionated by benzoylated-naphthoylated-DEAE cellulose chromatography into dsDNA and dsDNA containing single-stranded regions, we compared the serum DNA binding of CAH and SLE patients. Although CAH sera were found to have dsDNA binding significantly above the normal control group such binding was of low level and we could find no evidence of markedly elevated dsDNA binding in CAH. However 12 of the 20 CAH sera studied did bind preferentially to dsDNA containing single-stranded regions suggesting the presence of anti-single-stranded DNA antibodies. We conclude that the description of elevated anti-dsDNA antibodies, as measured by the Farr assay, in CAH is due to the interaction of anti-single-stranded DNA antibodies or other serum components with single-stranded DNA contaminating dsDNA preparations.

Adult↗

Detection of Renibacterium salmoninarum in chinook salmon, Oncorhynchus tshawytscha (Walbaum), using quantitative PCR.

A quantitative polymerase chain reaction (QPCR) assay has been developed to detect varying levels of Renibacterium salmoninarum, the causative agent of bacterial kidney disease. This assay allows for the direct enumeration of bacterial DNA or RNA copy number within tissues and body fluids. The assay can be applied non-lethally and can be used to determine whether R. salmoninarum is transcriptionally active. The presence of R. salmoninarum in kidney tissues from 430 chinook salmon collected from five Idaho Fish and Game operated hatcheries was initially evaluated using the widely employed enzyme-linked immunosorbent assay (ELISA) with two sets of Kirkegaard and Perry Laboratories polyclonal antibodies, 'mother batches' 1 and 2. The same tissue samples were then analysed using the novel QPCR assay and the results compared. At moderate to high levels of infection [optical density (OD > 0.5)], ELISA values and estimated DNA copy number were highly correlated (r(2) > 0.80), although correlation to specific antibody batches varied. However, lower ELISA values (OD < 0.5) observed with either antibody batch did not correlate well with the QPCR assay (R(2) <or= 0.43). Negative controls, run concurrently with the PCR assay, did not indicate extraneous DNA contamination in the PCR samples.

Actinomycetales Infections↗