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Intraspecific variation in the 16S rRNA gene sequences of Mycoplasma agalactiae and Mycoplasma bovis strains.

Intraspecific variation in the 16S rRNA genes of 17 Mycoplasma agalactiae and eight Mycoplasma bovis isolates was investigated to determine the degree of sequence variation in these two species and to determine whether the polymorphisms in the 16S rRNA genes could be used for the construction of an evolutionary tree and as epidemiological markers. A high degree of variation was found within isolates (between operons) and between isolates of both species. In contrast to M. capripneumoniae no distinct evolutionary pattern could be seen, probably because there are functional systems for gene conversion in M. agalactiae and M. bovis. However, the non-European isolates of M. agalactiae shared three characteristic nucleotides and European isolates from the same or neighbouring countries were very similar. Differences within isolates included both polymorphic positions and sequence length differences between operons. The amount of variation within isolates of the respective species ranged from zero to seven polymorphisms for M. agalactiae and from zero to four polymorphisms for M. bovis. The high degree of variation suggests the potential for misdiagnosis of species in diagnostic PCR assays based on the 16S rRNA gene sequences. All isolates of both species had a thymidine in position 912 (E. coli numbering) that causes streptomycin resistance in several bacterial species and which is characteristic for the members of the hominis group. As expected, when five M. agalactiae and three M. bovis isolates were tested for streptomycin susceptibility, they all demonstrated streptomycin resistance. M. agalactiae and M. bovis were found to have high intraspecific variation in their 16S rRNA gene and the polymorphisms patterns indicate that gene conversion takes place.

Animals↗

A comprehensive survey of genetic variants in neuroblastoma.

BACKGROUND: Neuroblastoma (NB) is the most common extracranial solid tumor in children and is characterized by marked clinical and molecular heterogeneity. Genomic alterations play a critical role in NB pathogenesis; however, population-specific mutational features remain insufficiently characterized, particularly among Chinese patients. METHODS: Whole-exome sequencing (WES) was performed on tumor, para-tumor, and matched peripheral blood samples from nine pathologically confirmed Chinese patients with NB. Somatic variant profiles were compared with four publicly available NB datasets from cBioPortal, published in 2012, 2013, 2015, and 2023. Mutational patterns, recurrently altered genes, and Gene Ontology (GO) enrichment were analyzed using R version 4.3.2 and clusterProfiler version 4.10.0. RESULTS: A total of 77 missense variants were identified in our cohort. Single-nucleotide polymorphisms (SNPs) represented the predominant variant type, and C > T substitutions were the most frequent nucleotide change. MAP1A variants, comprising two missense variants in one patient, and RBM33 variants, comprising two distinct variants in two patients, were detected in our cohort and, to the best of our knowledge, have not been previously reported in NB, although their frequencies were low. No MYCN amplification or variants in ALK, ATRX, or DAXX were detected. Comparative analysis with the cBioPortal datasets revealed no somatic variants universally shared across all cohorts. In addition, high-risk patients exhibited distinct mutational patterns, with enrichment of the Gene Ontology term "collagen-containing extracellular matrix." CONCLUSIONS: These findings highlight the molecular diversity of NB and suggest the presence of potential population-specific genetic features in Chinese patients. The low-frequency MAP1A and RBM33 variants identified in this cohort warrant further validation in larger, independent cohorts. Moreover, the enrichment of extracellular matrix-related pathways in high-risk NB supports further investigation of tumor-microenvironment interactions as potential therapeutic targets.

Extracellular matrix↗

A new polymorphism in exon 11 of the LDL receptor gene in healthy people and in familial hypercholesterolemia subjects.

We have screened exon 11 of the low density lipoprotein receptor (LDLR) gene from familial hypercholesterolemia (FH) heterozygotes for point mutations by using analysis of single strand conformation polymorphisms (SSCP). A variant pattern was observed in three out of 39 subjects. By DNA sequencing, this variant pattern was found to be due to a C-->T transition at nucleotide 1617 that affects the third base of codon 518. A PCR method was developed to screen FH heterozygotes and normal subjects for this mutation. The gene frequencies in FH heterozygotes and normal subjects were 4% and 4.5%, respectively. Thus, the mutation cannot be in linkage disequilibrium with a mutation that causes FH. Rather, the mutation may be a useful genetic marker at the LDLR locus. Haplotype analysis at the LDLR locus in two FH families where the proband possessed the mutation revealed that the mutation was on two different haplotypes. This finding is consistent with the mutation occurring at a mutational hot spot.

Base Sequence↗

Analysis of the genetic polymorphism of Paracoccidioides brasiliensis and Paracoccidioides cerebriformis "Moore" by random amplified polymorphic DNA (RAPD) and 28S ribosomal DNA sequencing--Paracoccidioides cerebriformis revisited.

Our purpose was to compare the genetic polymorphism of six samples of P. brasiliensis (113, 339, BAT, T1F1, T3B6, T5LN1), with four samples of P. cerebriformis (735, 741, 750, 361) from the Mycological Laboratory of the Instituto de Medicina Tropical de São Paulo, using Random Amplified Polymorphic DNA Analysis (RAPD). RAPD profiles clearly segregated P. brasiliensis and P. cerebriformis isolates. However, the variation on band patterns among P. cerebriformis isolates was high. Sequencing of the 28S rDNA gene showed nucleotide conservancy among P. cerebriformis isolates, providing basis for taxonomical grouping, and disclosing high divergence to P. brasiliensis supporting that they are in fact two distinct species. Moreover, DNA sequence suggests that P. cerebriformis belongs in fact to the Aspergillus genus.

Base Sequence↗

Inferring the evolutionary histories of the Adh and Adh-dup loci in Drosophila melanogaster from patterns of polymorphism and divergence.

The DNA sequences of 11 Drosophila melanogaster lines are compared across three contiguous regions, the Adh and Adh-dup loci and a noncoding 5' flanking region of Adh. Ninety-eight of approximately 4750 sites are segregating in the sample, 36 in the 5' flanking region, 38 in Adh and 24 in Adh-dup. Several methods are presented to test whether the patterns and levels of polymorphism are consistent with neutral molecular evolution. The analysis of within- and between-species polymorphism indicates that the region is evolving in a nonneutral and complex fashion. A graphical analysis of the data provides support for a hypothesized balanced polymorphism at or near position 1490, site of the amino acid replacement difference between Adhf and Adhs. The Adh-dup locus is less polymorphic than Adh and all 24 of its polymorphisms occur at low frequency--suggestive of a recent selective substitution in the Adh-dup region. Adhs alleles form two distinct evolutionary lineages that differ one from another at a total of nineteen sites in the Adh and Adh-dup loci. The polymorphisms are in complete linkage disequilibrium. A recombination experiment failed to find evidence for recombination suppression between the two allelic classes. Two hypotheses are presented to account for the widespread distribution of the two divergent lineages in natural populations. Natural selection appears to have played an important role in governing the overall patterns of nucleotide variation across the two-gene region.

Alcohol Dehydrogenase↗

High frequency of polymorphism but no mutations found in the GLUT1 glucose transporter gene in NIDDM and familial obesity by SSCP analysis.

To evaluate whether a structural defect in the human glucose transporter gene GLUT1 could be involved in the aetiology of insulin resistance, a key factor of non-insulin-dependent diabetes mellitus (NIDDM) and obesity, we performed single-strand conformation polymorphism (SSCP) analysis in 40 subjects (20 NIDDM patients and 20 subjects with familial obesity). The GLUT1 gene, which is involved in basal glucose transport in most tissues, consists of ten exons and encodes a 492 amino acid protein. Population studies have shown a strong association between the X1 allele of an XbaI restriction fragment length polymorphism of the GLUT1 gene and NIDDM. We therefore performed SSCP analysis in NIDDM subjects known to carry at least one X1 allele. Variant SSCP patterns were detected in exons 2, 4, 5 and 9. Sequence analysis of the SSCP variants revealed the presence, in all exons examined, of silent mutations consisting of single-nucleotide substitutions with no amino acid changes. Both NIDDM and obese patients showed a high frequency of polymorphism in the sequence (50% and 35%, respectively). We conclude that the GLUT1 gene is unlikely to play a role in the aetiology of NIDDM and obesity. However, the strong association between the GLUT1 gene and NIDDM, together with the recent family studies showing linkage between chromosome 1p and NIDDM warrant further studies on this chromosomal region.

Adult↗

Polymorphism of the human muc genes.

Mucins encoded by the MUC genes share the common feature of having an extensive tandem repeat region that encompasses a large proportion of the coding sequence. In many of the genes this tandem repeat region shows a great deal of allelic length variation and recently studies have demonstrated person to person variation in pattern of nucleotide or amino-acid changes in the repeat units. The length and sequence variability will be discussed in this review, as will its role in disease susceptibility.

Humans↗

Differentiation of Castor fiber and Castor Canadensis by noninvasive molecular methods.

The aim of the study was to develop a simple and reliable method for differentiation of the two phenotypic, very similar Eurasian and North American beavers. Hair bulbs were plucked as tissue samples from the fur of living animals. The mitochondrial cytochrome b locus was amplified by polymerase chain reaction and sequenced. The fragments of the two species differed at 44/41 nucleotide sites. RsaI recognised two mutations, resulting in a restriction fragment length polymorphism that seems to be species specific, as could be revealed by the banding pattern. Zoo Biol 19:511-515, 2000. Copyright 2000 Wiley-Liss, Inc.

Journal Article↗

Multiplex Pyrosequencing.

We describe here the development of a new and simple single-tube multiplex Pyrosequencing assay. Genomic DNA or cDNA was employed to PCR amplify region(s) using biotinylated and normal primer(s). Subsequent to capture of PCR products on streptavidin-coated beads, single-stranded DNA separation and hybridization of multiple sequencing primers, Pyrosequencing was performed. The obtained pyrogram resulted in a unique pattern in which the intensity of the signal determined the number of incorporated nucleotide(s). Here, we demonstrate the use of this multiplex Pyrosequencing for single nucleotide polymorphisms genotyping and microbial typing.

Animals↗

Sequencing and detection of polymorphisms in the 5' end of the human endogenous retroviral element, HRES-1.

Fragments of the 5' long terminal repeat (LTR) of the human endogenous retroviral element, HRES-1, were amplified. Single strand conformation analysis of these fragments in combination with sequencing revealed two polymorphic nucleotides, namely a HindIII and an Eco571 polymorphic site. Moreover, a number of differences from the previously published HRES-1 LTR sequence were detected. The linkage pattern of the two polymorphisms suggested the existence of three allelic forms of HRES-1. The frequencies of the genotypes and alleles of HRES-1 were determined in 158 individuals. The detection of HRES-1 markers may be useful to study associations between this endogenous retrovirus and various diseases.

Base Sequence↗

A novel haplotype of the endogenous retrovirus, HRES-1, in patients with multiple sclerosis and healthy individuals.

In this study we searched for genetic variation in a segment of the human endogenous retrovirus, HRES-1, which encodes a potential autoantigen of 28 kDa. The purpose was to further investigate a possible association between this endogenous retrovirus and multiple sclerosis (MS). Fragments amplified from the HRES-1 region in question were subjected to single strand conformational analysis (SSCP analysis) and sequencing if the SSCP migration pattern suggested presence of polymorphisms. Using this approach a synonymous G --> C substitution, creating an NciI site, was found. Our sequence data also revealed an additional nucleotide in the region encoding the 28-kDa protein, i.e. a nucleotide not present in the first published sequence. This finding has implications for future studies of the 28-kDa HRES-1 protein since the additional nucleotide changes the reading frame of this protein. The detection of the Nci polymorphism allowed us to define a novel haplotype of HRES-1 distinct from the three previously known HRES-1 haplotypes. On comparison of the distribution of these four haplotypes in MS patients and healthy individuals we found a statistically significant difference (P = 0.03) but the contribution from the novel haplotype to this was modest.

Alleles↗

High and intermediate resolution DNA typing systems for class I HLA-A, B, C genes by hybridization with sequence-specific oligonucleotide probes (SSOP).

DNA typing systems for alleles of the HLA class I loci A, B, C at intermediate (IR) and high resolution (HR) levels were developed. The approaches combine locus-specific amplification of genomic DNA by the polymerase chain reaction (PCR) and hybridization with sequence-specific oligonucleotide probes (SSOP). The SSOP were designed to match nucleotide sequences at all polymorphic sites of exons 2 and 3 at these loci. Alleles and genotypes for these loci are assigned by their unique hybridization patterns. Some genotypes with particular allele combinations resulted in the same hybridization pattern. These genotype ambiguities were resolved by performing additional group-specific amplifications with appropriate GSA primers and hybridization with informative SSOP. At intermediate resolution level, many groups of alleles of HLA-A and B with the same serologic equivalence resulted in the same hybridization pattern. Both HR and IR typing approaches required the design, validation and testing of locus- and group-specific primers and sequence-specific oligonucleotide probes (SSOP). Single locus-specific amplification and hybridization with sets of 67 SSOP for HLA-A, 99 for HLA-B and 57 for HLA-C allowed us to identify unequivocally the majority of A, B, C alleles at HR level. To resolve ambiguous genotypes at HLA-B, we performed 4 GSA with 5' primers at codon 45-46 and hybridization with selected sets of SSOP. About 22,415 high resolution typing results were obtained (4,953A, 6,621B, 10,841C). In these samples, 63 HLA-A, 170 HLA-B and 40 HLA-C alleles were observed. In the course of these studies, more than 30 new alleles have been identified. In IR testing, sets of 39 SSOP for HLA-A typing and 59 SSOP for HLA-B typing allowed us to obtain maximal resolution of the majority of common genotypes. To achieve IR level, the majority of SSOP selected were those that span codons encoding amino acid residues located in the alpha helical segments of the class I molecules. A total of 50,522 samples were typed for HLA-A and B at IR level. Approximately 2.0% of them carried ambiguous genotypes associated with alternative switches of Bw4/w6 related sequences. All these ambiguities were resolved by Bw4/Bw6 GSA by 2 primer pairs (77N-IALR-83/3B.1; 77S-DLRG-83/3B.1) and hybridization with 9 selected SSOP Testing was performed by individual hybridization of replicate dot blot membranes with the SSOP of the corresponding set. The approach was robust and cost-effective in large-scale HLA class I molecular typing. The resolution provided by HLA-A, B IR reached serologic split-level or higher. The description of primers and probes for HLA class I typing may be utilized as starting elements for development of second generation methods with a more rapid turn around time.

DNA↗

Multiple glucose 6-phosphate dehydrogenase-deficient variants correlate with malaria endemicity in the Vanuatu archipelago (southwestern Pacific).

In studying the relationship between genetic abnormalities of red blood cells and malaria endemicity in the Vanuatu archipelago in the southwestern Pacific, we have found that of 1,442 males tested, 98 (6.8%) were G6PD deficient. The prevalence of GdPD deficiency varied widely (0%-39%), both from one island to another and in different parts of the same island, and generally correlated positively with the degree of malaria transmission. The properties of G6PD from GdPD-deficient subjects were analyzed in a subset of 53 samples. In all cases the residual red-blood-cell activity was < 10%. There were three phenotypic patterns. PCR amplification and sequencing of the entire coding region of the G6PD gene showed that the first of these patterns corresponded to G6PD Union (nucleotide 1360C-->T; amino acid 454Arg-->Cys), previously encountered elsewhere. Analysis of samples exhibiting the second pattern revealed two new mutants: G6PD Vanua Lava (nucleotide 383T-->C; amino acid 128Leu-->Pro) and G6PD Namoru (nucleotide 208T-->C; amino acid 70Tyr-->His); in three samples, the underlying mutation has not yet been identified. Analysis of the sample exhibiting the third pattern revealed another new mutant: G6PD Naone (nucleotide 497G-->A; amino acid 166Arg-->His). Of the four mutations, G6PD Union and G6PD Vanua Lava have a polymorphic frequency in more than one island; and G6PD Vanua Lava has also been detected in a sample from Papua New Guinea. G6PD deficiency is of clinical importance in Vanuatu because it is a cause of neonatal jaundice and is responsible for numerous episodes of drug-induced acute hemolytic anemia.

Adolescent↗

[Mutation and polymorphism in exon 4 of tuberous sclerosis complex gene].

OBJECTIVE: To study the characteristic of mutation and polymorphism in exon 4 of tuberous sclerosis complex gene(TSC1) in Chinese. METHODS: Twenty-five TSC patients and 23 parents from 21 families were enrolled. The mutation of exon 4 in these subjects was identified by polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP) and further confirmed by direct sequencing. RESULTS: The normal controls had the same SSCP bands. In 25 TSC patients, a sporadic case was found to display variant banding pattern and be heterozygous for 352 insA mutation by sequencing. In 23 parents who were normal on clinical examination, another bandshift was found on a mother who had two affected children, which was confirmed as 347A-->C(Val42Val) single nucleotide polymorphism(SNP) by sequencing. CONCLUSION: The 352 insA mutation is a new causative mutation and the 347A-->C is a rare single nucleotide polymorphism.

Adolescent↗

Fitness of Toxoplasma gondii is not related to DHFR single-nucleotide polymorphism during congenital toxoplasmosis.

Factors that regulate the pathogenesis of Toxoplasma gondii in humans are poorly understood. When acquired during pregnancy, toxoplasmosis can be disastrous, leading to fetal loss or conversely to subclinical disease. In congenitally infected infants, evolution is highly unpredictable. Genotype based virulence patterns have been described in mice, but in humans this classification does not correlate with the gravity of the disease. Mutations on DHFR-TS loci have recently been reported to confer T. gondii fitness cost. In this study, we investigated the relationship between the virulence of the parasite, as measured by clinical outcome in the fetus or newborn, fitness, as measured by parasitic load in amniotic fluid, and allelic polymorphism in DHFR. Six cases of severe congenital toxoplasmosis and 23 cases of mild congenital infections were included in the study. Quantitative PCR was performed to evaluate total T. gondii DNA load in amniotic fluid and detection of mutations was carried out with a LightCycler using hybridisation probes. Parasitic load was significantly higher in severe infections than in mild diseases. Among isolates from severe or non-severe cases of congenital toxoplasmosis, no polymorphism could be detected at loci 36, 83 or 245 of the DHFR gene. The virulent RH strain presented the same melting temperature as the non-virulent PRU strain for codons 36, 83 and 245. Only mutated clones, M2M3 and M2M4 with allelic replacement at these positions, displayed different profiles allowing a clear distinction between wild and mutant types. We concluded that the DHFR gene mutations we investigated do not regulate T. gondii fitness in humans.

Animals↗

Genome and genetic resources from the Cancer Genome Anatomy Project.

The Cancer Genome Anatomy Project (CGAP) is a collaborative network of cancer researchers with a common goal: to decipher the genetic changes that occur during cancer formation and progression. The project brings together several recent technologies capable of high-throughput analysis to help achieve this goal. Automated sequencing of cDNA libraries is a primary focus and is geared towards providing a comprehensive and annotated set of human and mouse transcribed sequences. This effort includes full-length transcript sequence generated by CGAP's new Mammalian Gene Collection initiative. Single nucleotide polymorphisms (SNPs) within human gene sequences (Genetic Annotation Initiative) and chromosomal rearrangements within cancer cells (Cancer Chromosome Aberration Project) are also being cataloged as part of CGAP. Finally, to help determine gene expression patterns related to cancer, CGAP provides a quantitative catalog of data through its SAGEmap initiative. The genome and genetic analysis tools listed in this review are all freely distributed by CGAP (http://cgap.nci.nih.gov/) without restriction.

Animals↗

Aberrant genomic imprinting in rhesus monkey embryonic stem cells.

Genomic imprinting involves modification of a gene or a chromosomal region that results in the differential expression of parental alleles. Disruption or inappropriate expression of imprinted genes is associated with several clinically significant syndromes and tumorigenesis in humans. Additionally, abnormal imprinting occurs in mouse embryonic stem cells (ESCs) and in clonally derived animals. Imprinted gene expression patterns in primate ESCs are largely unknown, despite the clinical potential of the latter in the cell-based treatment of human disease. Because of the possible implications of abnormal gene expression to cell or tissue replacement therapies involving ESCs, we examined allele specific expression of four imprinted genes in the rhesus macaque. Genomic and complementary DNA from embryos and ESC lines containing useful single nucleotide polymorphisms were subjected to polymerase chain reaction-based amplification and sequence analysis. In blastocysts, NDN expression was variable indicating abnormal or incomplete imprinting whereas IGF2 and SNRPN were expressed exclusively from the paternal allele and H19 from the maternal allele as expected. In ESCs, both NDN and SNRPN were expressed from the paternal allele while IGF2 and H19 showed loss of imprinting and biallelic expression. In differentiated ESC progeny, these expression patterns were maintained. The implications of aberrant imprinted gene expression to ESC differentiation in vitro and on ESC-derived cell function in vivo after transplantation are unknown.

Alleles↗

Detection of alternatively spliced transcripts in leukemia cell lines by minisequencing on microarrays.

BACKGROUND: Recent genome-wide expression studies suggest that approximately 80% of the 25,000 human genes undergo alternative splicing. Alternative splicing may be associated with human diseases, particularly with cancer, but the molecular disease mechanisms are poorly understood. Convenient, novel methods for multiplexed detection of alternatively spliced transcripts are needed. METHODS: We devised a new approach for detecting splice variants based on a tag-microarray minisequencing system, originally developed for genotyping single-nucleotide polymorphisms. We established the system for multiplexed detection of 61 alternatively spliced transcripts in a panel of 19 cancer-related genes and used it to dissect the splicing patterns in cancer and endothelial cells. RESULTS: Our microarray system detected 82% of the splice variants screened for, including both simple and complex splice variants, in at least 1 of the leukemia cell types analyzed. The intraassay CV values for our method ranged from 0.01 to 0.34 (mean, 0.13) for 5 replicate measurements. Our system allowed semiquantitative comparison of the splicing patterns between the cell lines. Similar, but not identical, patterns of alternative splicing were observed among the leukemia cell lines. Size analysis of the PCR products subjected to the tag-array minisequencing system and real-time PCR with exon-junction probes verified the results from the microarray system. CONCLUSIONS: The microarray-based method is a robust and easily accessible tool for parallel detection of alternatively spliced transcripts of multiple genes. It can be used for studying alternative splicing in cancer progression and for following up drug treatment, and it may be a useful tool in clinical diagnostics for cancer and other disorders.

Alternative Splicing↗