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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↗

Molecular typing of Candida spp. by random amplification of polymorphic DNA and analysis of restriction fragment length polymorphism of ribosomal DNA repeats.

Random amplification of polymorphic DNA (RAPD) using an arbitrary oligonucleotide primer (5'-CGGTGCGACG) and analysis of restriction fragment length polymorphism of ribosomal DNA (rDNA-RFLP) after digestion of genomic DNA with restriction endonuclease EcoRI were investigated as tools for genotypic delineation beyond the species level of 91 Candida clinical isolates and four reference strains including 33 Candida albicans, 19 Candida tropicalis, 22 Candida krusei and 21 Candida (Torulopsis) glabrata. Results indicated that both techniques can be useful for typing isolates of the above species, although showing a variable discriminative potential with different species. As compared to RAPD fingerprinting, the discriminative potential of rDNA-RFLP appeared to be highest for C. albicans and lowest for C. glabrata, being overall similar for C. krusei and identical for C. tropicalis. A comparative analysis of the results obtained with the two typing techniques showed that, except for C. tropicalis, they were able to provide non-redundant information, and that their use in combination could enhance the discriminative potential for delineation among C. glabrata and C. krusei isolates.

Candida↗

[Application of randomly amplified polymorphic DNA on the DNA polymorphism of Staphylococcus aureus and Klebsiella pneumoniae].

By using short single oligomer primer with arbitrarily chosen sequences in polymerase chain reaction, randomly amplified polymorphic DNA (RAPD) was applied in differentiating clinical isolates of 52 Klebsiella pneumoniae and 28 Staphylococcus aureus. RAPD produced multiple polymorphic DNA bands when K. pneumoniae DNA was used as template. Using DNA fingerprints technique, the similarity coefficients values of 52 K. pneumoniae was measured and calculated, and dendrogram was drawn. The 52 Klebsiella pneumoniae were divided into 7 Patterns. But in the 28 Staphylococcus aureus, 3 characteristic lands were obtained. Minor differences in the RAPD fingerprints were detected. The research findings demonstrated that RAPD has a potential as a widely useful tool in providing genotypic characters for taxonomic descriptions and molecular epidemiology study.

DNA, Bacterial↗

Detection of isoniazid and rifampin resistance in Mycobacterium tuberculosis strains by single-strand conformation polymorphism analysis and restriction fragment length polymorphism.

Anti-Mycobacterium tuberculosis drug-resistance, mainly multi-drug resistance (MDR-TB), represents an important public health problem in several countries. Aim of our study is to identify the presence of these mutations in M. tuberculosis isoniazid- and rifampin-resistant strains isolated in our Institute; to evaluate linkage between type of mutation and level of resistance; to determine the usefulness of easy molecular techniques for rapid detection of such mutations on body specimens. Isoniazid- and rifampin-resistance was tested on 67 M. tuberculosis strains by Single-Strand Conformation Polymorphism (SSCP) and Polymerase Chain Reaction-Restriction Fragment Length Polymorphism (PCR-RFLP) assays, using HaeIII, PstuI, BsteII, BstuI enzymes. Drug-resistance of control strains was determined by cultural techniques (fluorimetry- BACTEC 9120). Cultural assay showed isoniazid- and rifampin-resistance in 6.12 and 2%, respectively (data confirmed by SSCP assay). Mutation of katG, linked to isoniazid resistance, was detected using BstuI enzyme, and mutation of rpoB, expression of reduced sensitivity to rifampin, using HaeIII. 15 body specimens, M. tuberculosis-positive to conventional assays, were tested by SSCP technique. Epidemiologic reports of numerous cases of tuberculosis due to MDR strains induce to detect quickly both Mycobacteria and drug-resistance, in order to start prompt effective therapy. On this basis, molecular assays are useful for a rapid therapeutic decision.

Antitubercular Agents↗

[DNA polymorphism in the Mongolian population. Restriction fragment length polymorphism analysis of DNA at seven loci of the nuclear genome].

Seven DNA markers from five genes and one chromosomal region were analysed in Mongolian population using the polymerase chain reaction. The frequencies of alleles of the polymorphisms detected with HindIII in the HBG-2, AvaII in the HBB, MspI and XbaI in the Apo-B, PstI in the D7S8, HincII in the LDLR and allele frequency of the minisatellite fragment in the AT-3 have been determined. The results of the RELP for Apo-B(MspI), LDLR, D7S8 and AT-3 are obtained for the first time among Mongoloids. DNA markers studied demonstrated high level of polymorphisms in the population of Mongolia, except for XbaI and MspI restriction sites at the Apo-B locus. The data obtained for Mongolian population and the literature data were compared.

Alleles↗

Restriction fragment length polymorphism of HLA and non-HLA genes in DR3/4 heterozygous Danish insulin-dependent diabetic patients and healthy individuals: reassessment of the influence of alpha DX and insulin-linked polymorphic loci, and new splits of DQw3 haplotypes.

We have investigated restriction fragment length polymorphism (RFLP) of HLA and non-HLA regions of the genome in the homogeneous Danish population. Insulin-dependent diabetes mellitus (IDDM) patients and healthy individuals were selected for being HLA-DR 3/4 heterozygous to evaluate the influence of genes other than DR on disease susceptibility. Five different probes were used: HLA alpha and beta DQ (chromosome 6), the Ins 310 genomic fragment which detects a polymorphic region 5' to the insulin gene (chromosome 11), and cDNA for the constant regions of the T cell receptor alpha and beta genes (chromosomes 14 and 7). Fifteen cells homozygous for the HLA-D region were used to obtain reference DNA patterns. This allowed us to describe four splits among the HLA-DQw3 haplotypes (DQw3.1 to DQw3.4). The two new haplotypes DQw3.3 and DQw3.4 do not code for the TA10 serological marker which is found on DQw3.1 positive cells. One-hundred per cent of IDDM patients were typed as DQw3.2 versus 68 per cent for controls (p = 0.003). However, our results do not indicate a role for the Ins 310 or for the alpha DX locus region in IDDM susceptibility, in contrast to previous reports by others. The restriction enzymes that we have used did not reveal significant differences between DNA patterns of patients and controls with probes for the constant region of the T cell receptor genes.

Biomarkers↗

Optimization of restriction fragment length polymorphism and single strand conformation polymorphism analysis for the detection of point mutations of ras oncogenes in paraffin-embedded tissues.

69 samples of formalin-fixed and paraffin-embedded tumor tissues (colon carcinomas n = 15, colon adenomas n = 15, transitional cell carcinomas of the urinary bladder n = 17, transitional cell papillomas of the urinary bladder n = 22) were investigated for point mutations of ras oncogenes using polymerase chain reaction (PCR) and nested-PCR followed by restriction fragment length polymorphism (RFLP) and single strand conformation polymorphism (SSCP), respectively. Results were proved by sequence analysis. Nested-PCR combined with SSCP analysis revealed five mutations of the Ki-ras oncogenes in five colon tumors. RFLP analysis revealed one point mutation in one sample of invasive transitional cell carcinomas. Using optimized PCR protocols, the methods described are applicable to paraffin- embedded tissues and offer a tool for mutation analysis in retrospective and prospective studies.

Base Sequence↗

A new three allele polymorphism at distal 21q22.3, a region relatively devoid of polymorphic markers. Mutations in brief no. 212. Online.

We amplified 305bp of the 3'UT region of COL18A1 from 62 healthy chromosomes from Caucasian individuals. SSCP analysis of these PCR products allowed us to identify 3 alleles which were confirmed through sequencing analysis and ASO. The heterozigosity found for this polymorphic region is 74.2%, and mendelian inheritance was demonstrated in 5 two/three generation families. This polymorphism, located in a region relatively devoid of microsatellites, will be very useful for linkage analysis, particularly for narrowing down candidate regions for genes mapped in this area.

3' Untranslated Regions↗

Detection of p53 gene mutations: analysis by single-strand conformation polymorphism and Cleavase fragment length polymorphism.

We have generated a collection of clones containing single point mutations within the exon 5-9 hot spot regions of the p53 gene by using polymerase chain reaction (PCR) to amplify select regions of the gene from characterized cell lines. These clones were then used to address the sensitivity of mutation detection using slab-gel single-strand conformation polymorphism (SSCP) and Cleavase fragment length polymorphism (CFLP) assay systems. Both methods exhibited high sensitivities for the detection of mutations in cloned p53 mutations in this study: 97% for CFLP and 94% for SSCP. In addition to resulting in higher sensitivity of mutation detection, CFLP has the capability to analyze longer fragments. In this study, CFLP identified five intronic mutations which were not investigated in the exon-specific SSCP assay. These results agree with those found elsewhere and demonstrate that CFLP scanning can have practical advantages when used for the identification of sequence alterations within the p53 gene.

Genes, p53↗

Maternal polymorphisms 677C-T and 1298A-C of MTHFR, and 66A-G MTRR genes: is there any relationship between polymorphisms of the folate pathway, maternal homocysteine levels, and the risk for having a child with Down syndrome?

This study was aimed at analyzing the effect of mutations in three non-synonymous SNP genes (677C > T and 1298A > C of the methylenetetrahydrofolate reductase (MTHFR) gene, and 66A > G in the MTRR gene) on total plasmatic homocysteine (Hcy), in 91 mothers of Down syndrome (DS) infants and 90 control mothers. The comparison of both groups of mothers is a new way to determine if those mutations and their interactions increase the risk for DS. Material came from the case-control network of the Spanish Collaborative Study of Congenital Malformations (ECEMC). Using a general lineal model in a backwards step, we performed the analyses including the different mutations, maternal age, the fact that each mother had a DS or a control infant, and all possible interactions of these variables, in the models, being maternal Hcy the continuous dependent variable. In another model, maternal folic acid intake during the third trimester of pregnancy was added. The results from both models were essentially the same: Hcy levels variability differs from case mothers to control ones, the presence of the MTHFR1298A > C polymorphism also affects significantly the Hcy variance, as it does the statistical interaction between the mutations MTRR66A > G and MTHFR1298A > C in the mother. In this sense, the interaction between different polymorphisms may totally modify their individual effects, and some of those effects are different in mothers of DS children and in controls' mothers. For instance, only two mutations in MTRR66 (GGAA) in mothers of control infants increase the reference maternal Hcy level in 4.66 units, and the individual effect of the genotype with only two mutations in the MTHFR1298 gene (AACC) increases the reference Hcy level in 12.74 units. However, the presence of the four mutations (GGCC) interacts giving a statistically significant decrease in 6.00 units in the level of Hcy in control mothers. On the contrary, in mothers of DS infants, the sole presence of two mutations in one of these two genes decreases the levels of Hcy (-2.31 units for GGAA genotype, and -3.43 units for AACC genotype), while the presence of the four mutations (GGCC) increases Hcy in 9.53 units. Taking into consideration that in the one-carbon metabolism cystathionine beta-synthase (CBS) catalyzes Hcy in an irreversible way, and that CBS gene is located in chromosome 21, fetuses and infants with DS have functional folate deficiency due to overexpression of CBS. This fact, as well as others influencing Hcy levels (such as nutrients interactions and lifestyle), together with the fetal genotype, suggest that their relationship with DS could be through an effect on fetal survival up to birth. Three possible mechanisms are considered by evaluating the results in the light of the present knowledge on cytology and molecular biology.

Case-Control Studies↗

Simple protocols for typing forensic biological evidence: chemiluminescent detection for human DNA quantitation and restriction fragment length polymorphism (RFLP) analyses and manual typing of polymerase chain reaction (PCR) amplified polymorphisms.

Methods for identity testing are described that enable extraction of DNA from biological samples, determination of the quantity of human DNA, and genetic analyses of the materials using restriction fragment length polymorphism (RFLP) typing and/or amplified fragment length polymorphism (AMP-FLP) typing of PCR products. The salient features of the procedures are simplicity, manual typing, nonradioactive chemiluminescent assays or silver staining for detection, and low cost. Most application-oriented laboratories involved in forensic and/or paternity testing should be able to implement these procedures.

Base Sequence↗

Multiplex amplified product-length polymorphism analysis of 36 mitochondrial single-nucleotide polymorphisms for haplogrouping of East Asian populations.

We present a reliable, rapid, and economical multiplex amplified product-length polymorphism (APLP) method for analyzing the haplogroup-diagnostic mitochondrial single-nucleotide polymorphisms (mtSNPs) in East Asian populations. By examining only 36 haplogroup-specific mtSNPs in the coding region by using four 9-multiplex polymerase chain reaction (PCR) and subsequent electrophoresis, we could safely assign 1815 individuals from 8 populations of Japanese, Korean, Chinese, and Germans to 45 relevant haplogroups. This multiplex APLP analysis of coding-region mtSNPs for haplogrouping is especially useful not only for molecular phylogenetic studies but also for large-scale association studies due to its rapid and economical nature. This is the first panel of mtSNPs in the coding region to be used for haplogrouping of East Asian populations.

Asian People↗

Polymorphisms and HNPCC: PMS2-MLH1 protein interactions diminished by single nucleotide polymorphisms.

Hereditary nonpolyposis colorectal cancer (HNPCC) is one of the most common autosomal dominant inherited diseases. Mutations in the human mismatch repair (MMR) proteins MLH1, MSH2, MSH6, PMS1, and PMS2 have been found to co-segregate with HNPCC. The MLH1 and MSH2 proteins have been demonstrated to interact with PMS1, PMS2, and MSH6 proteins. A previous study reported that missense mutations in specific regions of MLH1 can lead to defects in protein-protein interactions with PMS2. Here we report that three missense alterations previously identified as single nucleotide polymorphisms (SNPs) in PMS2 (P511K, T597S, and M622I) cause defective protein-protein interactions with MLH1, even though the alterations are not in the previously reported interaction domain. These results suggest that an additional domain in PMS2 affects MLH1-PMS2 interaction. This study also demonstrates that SNPs can result in gene alterations that indeed have a functional effect on protein phenotype. Thus, these three SNPs may ultimately represent variants with an increased risk factor for tumorgenesis in HNPCC. This study is one of the first to use a functional assay to appraise the role of SNPs and suggests that traditional definitions of polymorphisms and mutations are in need of reconsideration.

Adaptor Proteins, Signal Transducing↗

A criterion for the establishment of a stable polymorphism of higher order with an application to the evolution of polymorphism.

This note gives some further useful properties of the constant fitness selection model for multiple alleles which pertain to the effects of adding a new allele to n preexisting alleles in stable equilibrium. In particular the conditions are derived for the establishment of a stable equilibrium involving all n + 1 alleles. For 3 alleles (i.e. n = 2) I give a complete qualitative solution, including the case of the replacement of one diallelic polymorphism by another. As an application I discuss a possible mechanism for the evolution of polymorphism using Monte Carlo methods similar to Lewontin, Ginzburg and Tuljapurkar (1978).

Alleles↗

Human chromosomal polymorphism. I. Chromosomal Q polymorphism in Mongoloid populations of Central Asia.

A comparative study of frequencies and types of Q-polymorphic variants in seven autosome pairs (3, 4, 13-15, 21, and 22) was performed in three steppe Mongoloid populations of Central Asia (Kazakhs, Dunghans, Mongolians) and three highland Kirghiz populations of Pamir and Tien-Shan. The three steppe Mongoloid populations showed statistically significant homogeneity both in the frequency of Q-polymorphic variants and the distribution of homo- and heteromorphs, with complete agreement of observed frequencies with those theoretically predicted by the law of Hardy-Weinberg. Similar homogeneity was revealed in the three highland Kirghiz populations of Pamir and Tien-Shan. However, comparative analysis of highland and steppe Mongoloids revealed significant differences in the following variables: (1) mean number of Q variants per individual, 2.50 and 3.49 in the highland and steppe populations, respectively; (2) frequency of Q variants in 7 of the 12 autosomes studied; and (3) distribution of homo- and heteromorphs in four autosomal pairs (13-15, 21), with a preponderance of individuals with increased hemomorph (-/-) frequency in highlanders. The following questions are discussed: (1) the possible selective value of chromosomal Q-heterochromatin material in the adaptation of human populations to extreme environmental factors, in particular to the high-altitude environment of Pamir and Tien-Shan; (2) the existence of intraracial heterogeneity in Mongoloids living in different ecological zones; and (3) the possible taxonomic value of Q-variant inversion in chromosome 3.

Adolescent↗

Human chromosomal polymorphism. VIII. Chromosomal Q polymorphism in the Yakut of Eastern Siberia.

Chromosomal Q polymorphism was studied in 157 adolescents of Yakut nationality (67 males and 90 females) living in Eastern Siberia, on the territory of the Yakut ASSR. Of the 157 subjects, 123 had chromosomal Q variants while 34 (21.7%) had no Q-heterochromatin bands with fluorescence levels 4 and 5. The mean number of Q variants per individual ranged from 0 to 5, with a mean of 1.64. No differences were observed in the frequency of Q variants between sexes. The observed homo- and heteromorph frequencies always agreed with those predicted by the law of Hardy-Weinberg. Of the 157 subjects, four (2.55%) had pericentric inversion of the Q-heterochromatin band in chromosome 3. The following topics are discussed: possible selective value of chromosomal Q-heterochromatin material in the adaptation of human populations to extreme environmental factors, in particular to cold; the taxonomic value of chromosomal Q polymorphism in ethnic anthropology.

Adolescent↗

Human chromosomal polymorphism. IV. Chromosomal Q polymorphism in Russians living in Kirghizia.

Chromosomal Q polymorphism was studied in 200 Russian individuals (94 females and 106 males) living in Kirghizia. Of the 200 individuals, 191 had chromosomal Q polymorphic variants, while nine (4.5%) had no Q bands with fluorescence levels 4 and 5. The mean number of Q variants per individual ranged from 0 to 7, with a mean of 2.9. There were no differences in the frequency of Q variants between sexes. The observed homo- and heteromorphic frequencies completely agreed with those predicted by the law of Hardy-Weinberg. Of the 200 individuals, 12 (6.0%) had pericentric inversion of the Q band in chromosome 3, one individual (0.5%) having a homomorphic form of this inversion. The possible selective value of chromosomal Q heterochromatin material in the adaptation of human populations to extreme environmental factors, in particular to cold, and the possible taxonomic value of inverted Q heterochromatin bands in chromosome 3 in ethnic anthropology, are discussed.

Chromosome Banding↗