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At least 127 records · Page 7Linked to original sources

Detection and sequence-based typing of human adenoviruses using sensitive universal primer sets for the hexon gene.

The universal primer sets for identification of human adenovirus (HAdV) targeting hexon gene were designed and applied to 121 clinical samples suspected of HAdV infection. The primer sets amplified at least 20 HAdV reference strains of six species. Of these clinical samples, 81 (66.9%) samples were positive for HAdV. They were classified into 11 serotypes belonging to 5 HAdV species (B-F). The primer sets described here are sensitive and reactive to the broad spectrum of HAdV and are useful for rapid diagnosis of various HAdV infections.

Adenovirus Infections, Human↗

Sequence-based typing of HLA-A2 alleles using a primer with an extra base mismatch.

A PCR-SBT method using genomic DNA for HLA-A2 alleles was established. To achieve specific amplification for detecting a single base difference between A2 alleles and other HLA-A alleles, a primer having one extra mismatch at the second position from its 3'-end was designed. The primer exhibited a high specificity with annealing temperatures from 64 degrees C to 68 degrees C. Thirty-eight Japanese samples were screened using this method. The majority of Japanese A2 antigens were coded by A*0201. A*0206 and A*0207 were observed at relatively high frequencies. Serologically defined split antigens, A2S and A2AK, which we have recently identified, corresponded to A*0203 and A*0210, respectively. Moreover, A*0207 was strongly associated with B46 and DR8.1.

Alleles↗

Repetitive element sequence based polymerase chain reaction for typing of Brucella strains.

A collection of 40 Brucella strains, including 19 clinical B.canis isolates, was analyzed using ERIC-PCR and REP-PCR. PCR amplification using primers REP 1R-I and REP 2-I provided distinct patterns for Brucella spp. All Brucella strains could be discriminated at least to the species level. ERIC-PCR, employing ERIC 1R and ERIC 2 as primers was less discriminative for Brucella, only allowing a discrimination to the genus level with occasional discrimination between individual strains. It can be concluded that rep PCR is a promising fingerprinting method for the evaluation of an outbreak.

Animals↗

Development and cross-validation of sequencing-based assays for genotyping common polymorphisms of the CXCL5 gene.

BACKGROUND: Epithelial neutrophil activating peptide (ENA-78) is encoded by the polymorphic CXCL5 gene and is a recruiter and activator of neutrophils. Furthermore, ENA-78 may be involved in pathological inflammatory processes and variable drug responses. METHODS: To facilitate future disease-gene and pharmacogenetic investigation of ENA-78, we developed and cross-validated medium- to high-throughput genotyping assays for 2 commonly occurring CXCL5 polymorphisms (rs352046 and rs425535). Furthermore, we compared allele and genotype frequencies in a U.S. population with those of a previously studied European population. RESULTS: There was 100% genotype concordance between the 2 methods used (Pyrosequencing and TaqMan). Variant allele frequencies for rs352046 were consistent between the U.S. (16%) and European (16%) populations, while the rs425535 variant allele was more than twice as high in the European cohort (38% vs. 16%). There was complete linkage of genotypes at both loci in our population. CONCLUSIONS: The distribution of variant alleles for the 2 polymorphisms studied should be further evaluated in other populations. In addition, our data highlight the importance of assay validation using multiple platforms.

Alleles↗

Comparative evaluation of RT-PCR, nucleic acid sequence-based amplification (NASBA) and real-time RT-PCR for detection of noroviruses in faecal material.

Using different primer and probe sets, RT-PCR, NASBA and TaqMan RT-PCR molecular methods were compared to detect NoV GII in 13 clinical stool samples. The RT-PCR results observed by gel electrophoresis (Ando, Kageyama and Anderson amplification and probe systems), dot blot hybridization (Ando and Kageyama) and real-time TaqMan assay (Ando and Kageyama) were shown to be consistent and reproducible for the detection of NoV GII. Whereas, the NASBA assay using Ando primers showed some reproducibility discrepancies. Detection limits of the NoV GII/Kageyama system were found to be equal or significantly higher than the Ando system. Real-time TaqMan RT-PCR assay showed similar detection limits to that of NASBA with the Kageyama amplification and detection system, while it was 1log less sensitive than the Ando system. In a clinical context, RT-PCR, NASBA and real-time TaqMan RT-PCR methods using undiluted samples were all suitable for the detection of NoV GII, however the NASBA assay provided less consistent signals. The NoV GII Kageyama real-time TaqMan RT-PCR assay was reliable with a high analytical sensitivity and has shown the capability of detecting one genomic equivalent copy.

Base Sequence↗

DNA fingerprinting of thermophilic lactic acid bacteria using repetitive sequence-based polymerase chain reaction.

DNA fingerprints of lactic acid bacteria were generated by polymerase chain reaction using a primer based on the repetitive elements found in the genome of Streptococcus pneumoniae (BOX-PCR). The method made it possible to identify 37 isolates from raw milk. industrial starters and yogurt. Differentiation at species, subspecies and strain level was possible for Lactobacillus delbrueckii subsp. lactis, Lb. delbrueckii subsp bulgaricus and Str. thermophilus. BOX-PCR was also applied to studying the strain composition of a starter culture and the direct detection of strains in commercial fermented milk.

Animals↗

Colorimetric detection of DNA sequences based on electrostatic interactions with unmodified gold nanoparticles.

We find that single- and double-stranded oligonucleotides have different propensities to adsorb on gold nanoparticles in colloidal solution. We use this observation to design a hybridization assay based on color changes associated with gold aggregation. Because the underlying adsorption mechanism is electrostatic, no covalent functionalization of the gold, the probe, or the target DNA is required. Hybridization conditions can be optimized because it is completely separated from the detection step. The assay is complete within 5 min, and <100 femtomoles of target produces color changes observable without instrumentation. Single-base-pair mismatches are easily detected.

Adsorption↗

Principles of quantitation of viral loads using nucleic acid sequence-based amplification in combination with homogeneous detection using molecular beacons.

For quantitative NASBA-based viral load assays using homogeneous detection with molecular beacons, such as the NucliSens EasyQ HIV-1 assay, a quantitation algorithm is required. During the amplification process there is a constant growth in the concentration of amplicons to which the beacon can bind while generating a fluorescence signal. The overall fluorescence curve contains kinetic information on both amplicon formation and beacon binding, but only the former is relevant for quantitation. In the current paper, mathematical modeling of the relevant processes is used to develop an equation describing the fluorescence curve as a function of the amplification time and the relevant kinetic parameters. This equation allows reconstruction of RNA formation, which is characterized by an exponential increase in concentrations as long as the primer concentrations are not rate limiting and by linear growth over time after the primer pool is depleted. During the linear growth phase, the actual quantitation is based on assessing the amplicon formation rate from the viral RNA relative to that from a fixed amount of calibrator RNA. The quantitation procedure has been successfully applied in the NucliSens EasyQ HIV-1 assay.

Base Sequence↗

HLA-B*1819, a novel HLA-B allele identified by sequence-based typing.

In this brief communication, we describe a novel human leukocyte antigen-B (HLA-B) allele (HLA-B*1819). This allele, found in an Italian Caucasian individual, differs from HLA-B*180101 by three nucleotide changes in exon 3. These mutations are located at positions 527, 538, and 539 where a T, a C, and a T are substituted respectively, by an A, a T, and a G, leading to three aminoacidic substitutions at codon 152 from Valine to Glutamic Acid (GTG-->GAG), at codon 155 from Histidine to Glutamine (CAC-->CAG), and at codon 156 from Cysteine to Tryptophan (TGT-->TGG).

Base Sequence↗