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At least 181 records · Page 10Linked to original sources

On the base sequences of the promoters in transcription initiation.

The base sequence of a specific DNA region identified as the promoter is investigated by means of the quantity S(r) corresponding to "superdelocalizability" of oxygen ion of each phosphate for the ten DNA dimer units ([XY/Y'X']2-) and ([XY/Y'X']2- + H+)-complexes. A mechanism is proposed of how RNA polymerase can recognize its transcription site (phosphate), and is applied to the Escherichia coli promoters, lacUV5, recAp, rrnEpl, and rrnEp2. The result explains fairly well the character of the promoters experimentally found.

Base Sequence↗

Definition of new alleles of MIC-A using sequencing-based typing.

We have sequenced exons 2, 3 and 4 of MIC-A in 23 homozygous cell lines, 22 families and 54 unrelated individuals. This has led to the definition of seven polymorphic positions in exon 2, 13 in exon 3 and 12 in exon 4, yielding a total of 33 different MIC-A allelic specificities, of which 16 have not been described before. The newly defined sequences and those of the alleles defined before were entered into a database of the SCORE program (Helmberg et al., 1998, Tissue Antigens, 51, 587) for comprehensive genotyping analysis. In the tested sample, only one genotype present in two individuals gave rise to an ambiguous genotype. If all possible combinations of the 33 alleles are considered, 10 of 636 combinations are ambiguous. The MIC-A exon 2, 3 and 4 polymorphism is characterized by diallelic single base exchanges and by a considerable degree of exon shuffling. The majority of heterozygote positions identified are non-synonymous, i.e. five of seven in exon 2, 13 of 13 in exon 3 and eight of 12 in exon 4, suggesting an important function for the MIC-A polymorphism.

Adult↗

The influence of base sequence on the immunological properties of defined oligonucleotides.

To assess the influence of base sequence on the immunostimulatory activities of DNA, cell binding and mitogenicity of a series of 30-mer phosphodiester oligonucleotides were tested using murine spleen cells. These compounds consisted of either a single base or a six base CpG motif in the context of 5' and 3' flanking sequences of each base. Among fluoresceinated oligonucleotides, (dG)30 had the highest binding of single base compounds tested while the presence of dG flanks increased binding of compounds with six base motifs, whether active on inactive. In assays of mitogenesis including incorporation of thymidine and uridine as well as expression of cell surface CD69, (dG)30 induced the highest responses among single base compounds. Among compounds with an active six base motif, the extent of proliferation varied with flanking sequence, with dG flanks producing the greatest stimulation in all assays tested. Together, these findings indicate that a variety of base sequences may affect the immunomodulatory properties of DNA, with the activity of dG sequences perhaps resulting from the formation of variant DNA structures.

Animals↗

Base and base sequence specificity of the binding of 4-hydroxyaminoquinoline 1-oxide to DNA.

Synthetic and natural DNAs we;e reacted with 4-hydroxyaminoquinoline 1-oxide (4-HAQO) in an in vitro enzyme system. The amount of 4-HAQO bound to DNA varied significantly depending on the DNA used. The base sequence as well as the base composition affected the binding. Optical melting profiles of 4-HAQO-modified DNAs were examined. Decrease in the melting temperature and broadening of the transition width were commonly observed. Melting fine structure of lambda-phage DNA became less clear according to the modification. The shape of the melting curves of synthetic polynucleotides was little affected by binding, which suggests that the binding sites are distributed randomly along a DNA molecule. Binding of 4-HAQO to a purine base may distort the secondary structure of neighboring base pairs in a DNA molecule. Degree of the distortion can be estimated as a free energy increment associated with the binding. It was found that the free energy increment differs considerably among the polynucleotides with different base sequences.

4-Hydroxyaminoquinoline-1-oxide↗

Diagnostic yield of exome sequencing-based copy number variation analysis in Mendelian disorders: a clinical application.

Next-generation sequencing (NGS) coupled with bioinformatic tools has revolutionized the detection of copy number variations (CNVs), which are implicated in the emergence of Mendelian disorders. In this study, we evaluated the diagnostic yield of exome sequencing-based CNV analysis in 449 patients with suspected Mendelian disorders. We aimed to assess the diagnostic yield of this recently utilized method and expand the clinical spectrum of intragenic CNVs. The cohort underwent whole exome sequencing (WES) and clinical exome sequencing (CES). Using GATK-gCNV, we identified 12 pathogenic CNVs that correlated with their clinical findings and resulting in a diagnostic yield of 2.67%. Importantly, the study emphasizes the role of CNVs in the etiology of Mendelian disorders and highlights the value of exome sequencing-based CNV analysis in routine diagnostic processes.

Humans↗

Genomic fingerprinting of Proteus species using repetitive sequence based PCR (rep-PCR).

Three Proteus species P. vulgaris, P. mirabilis and P. penneri have been characterized by repetitive sequence-based PCR. Four families of repetitive sequence based primers REP, ERIC, BOXA1R and BOXA2R, give specific patterns for each Proteus species. Species differentiation was best afforded using BOXA2R for detection of P. mirabilis, either REP-Dt or BOXA1R primers for detection of P. penneri and ERIC primer pair for P. vulgaris.

Bacterial Typing Techniques↗

Identification of a novel DRB1-allele (DRB1*0106) by sequence-based typing.

We report herein the identification of a new DRB1 allele using sequence-based typing. The new allele, DRB1*0106, was detected during routine HLA typing of a patient undergoing bone marrow transplantation. DRB1*0106 is identical to DRB1*0101 except for two codons, 71 (AGG-->GCG) and 86 (GGT-->GTG), changing the encoded arginine to alanine and glycine to valine. Both sequences were confirmed by polymerase chain reaction with sequence-specific primers (PCR-SSP). The polymorphism at codon 71 has not been, until now, identified in DRB1*01 alleles, although it is present in all the DRB1*15 alleles as well as DRB1*1309 and DRB1*1424.

Alleles↗

Ambiguities of human leukocyte antigen-B resolved by sequence-based typing of exons 1, 4, and 5.

The elucidation of the sequences of human leukocyte antigen-B (HLA-B)-exons 1 through 5 has led to an increase of ambiguities with alleles having identical exon 2 and 3 sequences, but differences in other exons. At the moment, 26 HLA-B alleles show such ambiguities which can be resolved by sequencing the exons in which the differences are located. Here we report a sequence-based typing (SBT) strategy for heterozygous sequencing of exons 1, 4, and 5, in addition to the previously described exons 2 and 3. The strategy was validated against a panel of 25 individuals, carrying HLA-B alleles from 33 different allele groups. Correct assignment of all HLA-B alleles was obtained for exons 1 through 5. In addition, the SBT protocol was used to resolve ambiguities in 50 individuals. The ambiguous combinations studied were B*0705/06, B*0801/19N, B*1512/19, B*180101/17N, B*270502/13/0504, B*350101/42/40N, B*390101/0103, B*400102/0101, B*440201/19N/27, and B*510101/11N/0105/30/32. In all cases, sequencing revealed the first allele to be present, except for three individuals with B*07. One of them typed B*0705; the other two were B*0706. The described SBT protocol for sequencing exons 1, 4, and 5 is a valuable tool for resolving ambiguities of HLA-B alleles with differences in these exons, as well as for studying the polymorphism of HLA-B outside exons 2 and 3.

Base Sequence↗

Sequence-based approach to finding functional lipases from microbial genome databases.

A sequence-based approach was used to retrieve functional lipases from microbial genome databases. Many novel genes assigned as putative lipases were tested using the criteria of the typical lipase sequence rule, based on a consensus sequence of a catalytic triad (Ser, Asp, His) and oxyanion hole sequence (HG). To obtain the lipase genes satisfying the sequence rule, PCR cloning was performed, while the lipase activities were tested using a tributyrin/tricaprylin plate and p-nitrophenyl caproate. Among nine putative lipases from four strains, five functional lipolytic proteins were obtained from Archaeoglobus fulgidus, Deinococcus radiodurans, and Agrobacterium tumefaciens. All five lipases exhibited a relatively low sequence similarity (less than 26.7%) with known lipases and turned out to belong to different lipase families. Accordingly, the current results indicate that the proposed strategic approach based on the microbial genome is an efficient and rapid method for finding novel and functional lipases.

Agrobacterium tumefaciens↗

Two new HLA DPB1 alleles identified by sequence-based typing: DPB1*8201 and DPB1*8301.

Two new HLA DPB1 alleles were identified by sequence-based typing and are reported. Both alleles differ from DPB1*0402 by a single nucleotide: DPB1*8201 has a difference at position 359 (codon 91) leading to an amino acid change from arg to his, making this position a new polymorphic site; DPB1*8301 has a difference at position 280 (codon 65) changing the amino acid from ile to phe.

Alleles↗

Novel HLA-A*31 allele, A*3111 identified by sequence-based typing.

In this report, we describe the identification of an HLA-A*31 nucleotide sequence variant, a new HLA-A*3111, in three members of a Korean family by using sequence-based typing (SBT). The new allele was detected during routine HLA typing by high-resolution SBT. Allele A*3111 showed one nucleotide difference with A*310102 at codon 165 (GTG-->CTG) resulting in an amino acid change from valine to leucine (V165L). Serologic reactivity was shorter than normally expected.

Alleles↗

Detection and quantification of Plasmodium falciparum in blood samples using quantitative nucleic acid sequence-based amplification.

A quantitative nucleic acid sequence-based amplification (QT-NASBA) assay for the detection of Plasmodium parasites has been developed. Primers and probes were selected on the basis of the sequence of the small-subunit rRNA gene. Quantification was achieved by coamplification of the RNA in the sample with one modified in vitro RNA as a competitor in a single-tube NASBA reaction. Parasite densities ranging from 10 to 10(8) Plasmodium falciparum parasites per ml could be demonstrated and quantified in whole blood. This is approximately 1,000 times more sensitive than conventional microscopy analysis of thick blood smears. Comparison of the parasite densities obtained by microscopy and QT-NASBA with 120 blood samples from Kenyan patients with clinical malaria revealed that for 112 of 120 (93%) of the samples results were within a 1-log difference. QT-NASBA may be especially useful for the detection of low parasite levels in patients with early-stage malaria and for the monitoring of the efficacy of drug treatment.

Animals↗

Speeding disease gene discovery by sequence based candidate prioritization.

BACKGROUND: Regions of interest identified through genetic linkage studies regularly exceed 30 centimorgans in size and can contain hundreds of genes. Traditionally this number is reduced by matching functional annotation to knowledge of the disease or phenotype in question. However, here we show that disease genes share patterns of sequence-based features that can provide a good basis for automatic prioritization of candidates by machine learning. RESULTS: We examined a variety of sequence-based features and found that for many of them there are significant differences between the sets of genes known to be involved in human hereditary disease and those not known to be involved in disease. We have created an automatic classifier called PROSPECTR based on those features using the alternating decision tree algorithm which ranks genes in the order of likelihood of involvement in disease. On average, PROSPECTR enriches lists for disease genes two-fold 77% of the time, five-fold 37% of the time and twenty-fold 11% of the time. CONCLUSION: PROSPECTR is a simple and effective way to identify genes involved in Mendelian and oligogenic disorders. It performs markedly better than the single existing sequence-based classifier on novel data. PROSPECTR could save investigators looking at large regions of interest time and effort by prioritizing positional candidate genes for mutation detection and case-control association studies.

Algorithms↗

High variability of peptidylarginine deiminase 4 (PADI4) in a healthy white population: characterization of six new variants of PADI4 exons 2-4 by a novel haplotype-specific sequencing-based approach.

Seven single nucleotide polymorphisms (SNPs) of the peptidylarginine deiminase 4 (PADI4) gene have recently been reported to be strongly associated with rheumatoid arthritis in Japanese individuals. These SNPs are located in or close to exons 2-4 of PADI4 and are organized in at least four different haplotypes. However, a detailed sequencing-based characterization of the PADI4 gene in other populations is still lacking. We therefore analyzed exons 2-4 of the PADI4 gene in 102 healthy white Germans individuals by DNA sequencing and characterized new variants and haplotypes by a novel haplotype-specific sequencing-based approach. The haplotypes 2/3 (padi4_89*G, padi4_90*T, padi4_92*G, padi4_94*T, padi4_104*T, padi4_95*C, padi4_96*C), and haplotype 4 (padi4_89*G, padi4_90*T, padi4_92*G, padi4_94*T, padi4_104*C, padi4_95*G, padi4_96*T) conferring susceptibility to rheumatoid arthritis were detected at frequencies of 30.9% and 7.8%, respectively. In addition, three novel coding SNPs in exons 2, 3, and 4, and three SNPs in introns 2 and 3 located near the exon-intron boundaries were identified in 11 individuals (10.8%). The so-called nonsusceptibility haplotype 1 (padi4_89*A, padi4_90*C, padi4_92*C, padi4_94*C, padi4_104*C, padi4_95*G, padi4_96*T) occurred at a frequency of 58.3%. Additionally, we identified a closely related novel haplotype, haplotype 1B (2.9%), that differs from haplotype 1 only by padi4_92*G/padi4_96*C. This haplotype was not described in the Japanese population. Our results indicate that the PADI4 gene exhibits a remarkable variability and a rather complex haplotypic organization. Further studies on disease association of PADI4 should be performed by haplotype-specific sequencing-based approaches to identify the exact genotype of the PADI4 fragment of interest.

Exons↗

Development and evaluation of a nucleic acid sequence based amplification (NASBA) protocol for the detection of enterovirus RNA in cerebrospinal fluid samples.

A nucleic acid sequence based (NASBA) assay for the generic detection of enterovirus RNA in cerebrospinal fluid (CSF) samples was developed and compared with an established reverse transcription/nested polymerase chain reaction (PCR) protocol. The sensitivity of NASBA followed by detection of amplicons with a biotinylated oligonucleotide probe was < or = ten copies of enterovirus RNA, indicating that enterovirus NASBA achieves a similar sensitivity as nested PCR. Moreover, NASBA detected a panel of 22 different serotypes of the species poliovirus, human enterovirus A, human enterovirus B and human enterovirus C completely. For evaluating NASBA as a diagnostic tool, 61 CSF samples of patients suffering from aseptic meningitis were tested in parallel with NASBA and nested PCR. NASBA detected enterovirus RNA in four CSF samples, two of these were also positive by nested PCR and two other CSF samples were positive only by nested PCR (in total six positive samples). All other 55 of 61 CSF samples were concordantly enterovirus negative by both methods. In conclusion, the more simple to handle 'one step' NASBA is as sensitive as nested PCR and may be used as an alternative method for the detection of enterovirus RNA in CSF samples. Enterovirus NASBA is a 'one step' RNA amplification procedure that is less prone to cross-contamination compared to a three step nested PCR.

Base Sequence↗

Identification of a novel allele, B*15012, by polymerase chain reaction using sequence-specific primers (PCR-SSP) and sequence-based typing.

We report here a new allele, B*15012, identified by polymerase chain reaction using sequence-specific primers (PCR-SSP) and sequence-based typing (SBT). B*15012 differs to B*15011 (previously named B*1501) by a single nucleotide, at position 435 of codon 120. B*15011 encodes AAG and B*15012 encodes AAA at codon 120, this difference does not result in an amino acid change.

Alleles↗

Identification of a novel HLA-DRB1 allele (DRB1*1147)* by sequence-based typing in eight siblings.

We report here a novel DRB1 allele (DRB1*1147) identified by sequence-based typing. The DRB1*1147 allele was detected during routine human leukocyte antigen (HLA)-typing of a patient and his family prior to bone marrow transplantation. This allele was found in the patient and his two sisters and five brothers. The new allele is identical to DRB1*110601 at exon 2 except for a single-nucleotide substitution at codon 37 (TAC-->TCC), changing the encoded tyrosine to serine.

Alleles↗