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[Detection of single nucleotide polymorphism of all coding regions in ABCA1 gene in patients with coronary heart disease].

OBJECTIVE: To study single nucleotide polymorphism (SNP) of all the coding region in ABCA1 gene in 112 patients with coronary heart diseases. METHODS: With polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) combining argentation and glue retrieval, DNA sequencing, and restriction fragment length polymorphism (RFLP), the SNP of the 50 exons in all the coding regions of ABCA1 gene was detected in 112 patients with established diagnosis of coronary heart disease. RESULTS: In the Chinese population with coronary heart disease, besides the SNP variation at R219K and M883I as widely reported, a new single base variation at A1092G in exon 7 was detected, which led to a conversion of the amino-side residue to M223V. This variation was confirmed to represent a novel SNP by RFLP in 108 normal subjects. CONCLUSIONS: The Chinese population with coronary heart disease has not only the reported SNP changes at the sites R219K and M883I, but also changes at the new SNP site of M233V, which is discovered for the first time in M233V of ABCA1 gene. This variation may increase the risks for coronary heart diseases, and its exact function awaits examination in further epidemiologic survey.

ATP Binding Cassette Transporter 1↗

Monocyte chemotactic protein-1 single nucleotide polymorphisms do not confer susceptibility for the development of adult onset polymyositis/dermatomyositis in UK Caucasians.

OBJECTIVES: Polymyositis (PM) and dermatomyositis (DM) form part of the idiopathic inflammatory myopathies (IIMs). The chemokine monocyte chemotactic protein-1 (MCP-1) is expressed at sites of the T cell inflammatory response in the IIMs. We thus investigate whether genetic markers in the MCP-1 gene confer disease susceptibility for the development of PM and DM. METHODS: DNA samples were analysed from a group of 195 UK Caucasian IIM patients, comprising 103 PM and 92 DM. Their results were compared with those of 162 ethnically matched controls. The polymorphic positions of three single nucleotide polymorphisms (SNPs) and one insertion-deletion sequence within regions coding for MCP-1 were tested. The SNPs examined were located in intron 1 (rs2857657, C/G), exon 2 (rs4586, A/G) and the 3 ' untranslated region (rs13900, C/T). The insertion-deletion sequence was located in intron 1 (rs3917887, AGCTCCTCCTTCTC/-). Each SNP was tested for Hardy-Weinberg equilibrium and allelic/genotypic associations. Haplotype frequencies were estimated using the Expectation/Maximization algorithm. RESULTS: There was strong linkage disequilibrium present between three out of these four markers. The majority of controls were in Hardy Weinberg equilibrium. No allelic, genotypic or haplotypic associations were detected when comparing PM or DM cases to controls, or when PM and DM were compared with each other. CONCLUSIONS: Genetic markers in the MCP-1 gene do not demonstrate significant genetic associations with the IIMs, and do not discriminate PM from DM in a UK Caucasian population.

Adolescent↗

Linkage analysis of the GAW14 simulated dataset with microsatellite and single-nucleotide polymorphism markers in large pedigrees.

Recent studies have suggested that a high-density single nucleotide polymorphism (SNP) marker set could provide equivalent or even superior information compared with currently used microsatellite (STR) marker sets for gene mapping by linkage. The focus of this study was to compare results obtained from linkage analyses involving extended pedigrees with STR and single-nucleotide polymorphism (SNP) marker sets. We also wanted to compare the performance of current linkage programs in the presence of high marker density and extended pedigree structures. One replicate of the Genetic Analysis Workshop 14 (GAW14) simulated extended pedigrees (n = 50) from New York City was analyzed to identify the major gene D2. Four marker sets with varying information content and density on chromosome 3 (STR [7.5 cM]; SNP [3 cM, 1 cM, 0.3 cM]) were analyzed to detect two traits, the original affection status, and a redefined trait more closely correlated with D2. Multipoint parametric and nonparametric linkage analyses (NPL) were performed using programs GENEHUNTER, MERLIN, SIMWALK2, and S.A.G.E. SIBPAL. Our results suggested that the densest SNP map (0.3 cM) had the greatest power to detect linkage for the original trait (genetic heterogeneity), with the highest LOD score/NPL score and mapping precision. However, no significant improvement in linkage signals was observed with the densest SNP map compared with STR or SNP-1 cM maps for the redefined affection status (genetic homogeneity), possibly due to the extremely high information contents for all maps. Finally, our results suggested that each linkage program had limitations in handling the large, complex pedigrees as well as a high-density SNP marker set.

Chromosome Mapping↗

SUMO4 and MAP3K7IP2 single nucleotide polymorphisms and susceptibility to rheumatoid arthritis.

OBJECTIVE: To explore the role of single nuclear polymorphisms (SNP) in 2 candidate genes, SUMO4 and MAP3K7IP2, in susceptibility to rheumatoid arthritis (RA). METHODS: Two cohorts from different Spanish towns totalling 635 patients with RA and 826 controls were studied. Six SNP were genotyped by matrix assisted laser desorption-ionization time-of-flight (MALDI-TOF) with the MassARRAY SNP genotyping system. RESULTS: We found no association with susceptibility to RA for any of the SNP including a previously described functional variant in the SUMO4 gene (163A-->G). RA susceptibility was independent of the haplotypes defined by the 6 SNP and there was also no association with clinical features of RA. Conclusion. SUMO4 and MAP3K7IP2 SNP did not significantly influence predisposition to and features of RA, in contrast to previous genetic and functional evidence that suggested their involvement.

Adaptor Proteins, Signal Transducing↗

[Single nucleotide polymorphisms of genes associated with high density lipoprotein metabolism in Chinese population].

OBJECTIVE: To study the single nucleotide polymorphisms in genes associated with the high density lipoprotein (HDL) metabolism in Chinese population. METHODS: Two hundred and nine normal Han ethnic subjects, aged 59+/-10 years, were recruited from 5 medical centers in western part of China. DNA was extracted by proteinase K digestion, phenol and chloroform extraction as well as isopropanol precipitation. The polymerase chain reaction (PCR)-restriction fragment length polymorphisms (RFLP) in conjunction with sequencing were employed to test the single nucleotide polymorphisms (SNPs) in ATP-binding cassette transporter (ABCA1), cholesteryl ester transfer protein (CETP) and lipoprotein lipase (LPL) genes. RESULTS: The allelic frequencies of A and G of ABCA1 gene are 53.4% and 46.6%; of B2 and B1 allele of CETP, 41.0% and 59.0%; of HindIII (-) and (+) allele of LPL, 18.9% and 81.1%; and of PvuII(+) and (-) allele of LPL, 66.0% and 34.0%, respectively. All genotype frequencies fit well with the Hardy-Weinberg equilibrium; the significant linkage disequilibrium exists between LPL HindIII(+)and PvuII(+) polymorphisms. All of the RFLP in these genes result from the single nucleic substitution in fragment recognized by corresponding restriction enzymes. CONCLUSION: The genetic polymorphisms of ABCA1, LPL-HindIII and LPL-PvuII in Chinese Han ethnic population are significantly different from Caucasians residing in USA or Europe.

ATP Binding Cassette Transporter 1↗

Single nucleotide polymorphisms of the protoporphyrinogen oxidase gene: inter-population heterogeneity of allelic variation.

Five single nucleotide polymorphisms (SNPs) in the protoporphyrinogen oxidase gene (PPOX) were used for inter-population comparisons of six South African populations and two non-South African Caucasian populations. Novel polymorphisms identified in the promoter region and exon 11 of the PPOX gene, as well as three known variants in exon 1 and intron 2, were analysed using single-strand conformation polymorphism (SSCP) and restriction enzyme analyses. Significant population differences were found for four of the five polymorphisms analysed. A G-to-A transition was found at nucleotide position -1081 and is the first polymorphism to be identified in the 5' promoter region of the gene. A novel A-to-C substitution at nucleotide position 3880 in exon 11 was not detected in subjects of European descent. This study represents the first inter-population comparison of allelic variation at the PPOX locus. The significant differences observed between populations demonstrate the importance of population considerations when marker association studies are performed at this locus.

Alleles↗

Identification of base pairs in single-nucleotide polymorphisms by MutS protein-mediated capillary electrophoresis.

Single-nucleotide polymorphisms (SNPs) are widespread genomic variations, which are associated with serious health disorders and drug resistance. Multiple clinical applications and studies of global population genetics require fast and informative analysis of SNPs. Most of conventional methods sense the presence of the SNP but cannot identify the base pair in it. Here we report simple identification of base pairs in SNPs without DNA sequencing. Our approach is based on the unique ability of MutS protein to bind different single-nucleotide mismatches in DNA with different affinities. Conceptually, the DNA in question is mixed with reference DNA, melted, and reannealed. If the DNA in question has an SNP, the products of reannealing will have two different single-nucleotide mismatches, which provide a base-pair-specific signature of the SNP. The products of reannealing are mixed with MutS, equilibrated, and separated by equilibrium capillary electrophoresis of equilibrium mixtures with MutS in the run buffer. The pattern of migration times of DNAs with mismatches is used for unequivocal identification of the base pair in the SNP. In addition to its ability to identify base pairs in SNPs, the new analytical approach is fast, simple, highly sensitive, and requires no quantitation. It will find applications in studies of heterogeneity of base pairs in known SNPs in large human populations.

Base Pairing↗

Identification of serovar-specific single-nucleotide polymorphisms of C. Trachomatis omp1 gene.

Complete sequences of omp1 gene encoding chlamydial main outer membrane protein were analyzed in 76 clinical strains of C. trachomatis. Thirty-four serovar-specific single-nucleotide polymorphisms were identified, 20 of them meet two criteria: unique position of the nucleotide and unique nucleotide substitution. Evaluation of serovar-specific single-nucleotide polymorphisms of omp1 gene can appreciably simplify and accelerate genetic diagnosis of C. trachomatis serovars.

Chlamydia trachomatis↗

New strategy to detect single nucleotide polymorphisms.

A great effort has been made to identify and map a large set of single nucleotide polymorphisms. The goal is to determine human DNA variants that contribute most significantly to population variation in each trait. Different algorithms and software packages, such as PolyBayes and PolyPhred, have been developed to address this problem. We present strategies to detect single nucleotide polymorphisms, using chromatogram analysis and consensi of multiple aligned sequences. The algorithms were tested using HIV datasets, and the results were compared with those produced by PolyBayes and PolyPhred using the same dataset. Our algorithms produced significantly better results than these two software packages.

Algorithms↗

Real-time closed tube single nucleotide polymorphism (SNP) quantification in pooled samples by quencher extension (QEXT).

Quencher extension (QEXT) is a novel single step closed tube real-time method to quantify SNPs using reporters and quenchers in combination with primer extension. A probe with a 5'-reporter dye is single base extended with a dideoxy nucleotide containing a quencher dye if the target SNP allele is present. The extension is recorded from the quenching (reduced fluorescence) of the reporter dye. This avoids the influence of the unincorporated dye-labeled nucleotides, resulting in high accuracy and a high signal-to-noise ratio. The relative amount of a specific SNP allele is determined from the nucleotide incorporation rate in a thermo-cycling reaction. We tested the QEXT assay using five SNPs in the Listeria monocytogenes inlA gene as a model system. The presence of the target SNP alleles was determined with high statistical confidence (P < 0.0005). The quantitative detection limits were between 0 and 5% for the targeted SNP alleles on a background of other SNP alleles (P < 0.05). The QEXT method is directly adaptable to current real-time PCR equipment and is thus suited for high throughput and a wide application range.

DNA Probes↗

Rapid characterization of DNA oligomers and genotyping of single nucleotide polymorphism using nucleotide-specific mass tags.

Using currently available MS-based methods, accurate mass measurements are essential for the characterization of DNA oligomers. However, there is a lack of specificity in mass peaks when the characterization of individual DNA species in a mass spectrum is dependent solely upon the mass-to-charge ratio (m/z). Here, we utilize nucleotide-specific tagging with stable isotopes to provide internal signatures that quantitatively display the nucleotide content of oligomer peaks in MS spectra. The characteristic mass-split patterns induced by the partially (13)C/(15)N-enriched dNTPs in DNA oligomers indicate the number of labeled precursors and in turn the base substitution in each mass peak, and provide for efficient SNP detection. Signals in mass spectra not only reflect the masses of particular DNA oligomers, but also their specific composition of particular nucleotides. The measurements of mass tags are relative in the mass-split pattern and, hence, the accuracy of the determination of nucleotide substitution is indirectly increased. For high sample throughput, (13)C/(15)N-labeled sequences of interest have been generated, excised in solution and purified for MS analysis in a single-tube format. This method can substantially improve the specificity, accuracy and efficiency of mass spectrometry in the characterization of DNA oligomers and genetic variations.

Base Composition↗

Association between a C/A single nucleotide polymorphism of the E-cadherin gene promoter and transitional cell carcinoma of the bladder.

PURPOSE: We investigated whether a C/A single nucleotide polymorphism at position -160 from the transcription start site of the E-cadherin gene promoter is associated with transitional cell carcinoma of the bladder (TCCB). MATERIALS AND METHODS: A hospital based case-control study was performed in 50 patients with TCCB, including 38 men and 12 women 33 to 72 years old (mean age 53.8 +/- 12.3), and 50 normal controls, including 31 men and 19 women 22 to 69 years old (mean age 48.9 +/- 13.1). Genomic DNA was extracted from subject blood samples. Genotypes were determined using polymerase chain reaction based restriction fragment length polymorphism technique. RESULTS: A allele frequencies at the -160 position of the E-cadherin gene promoter were significantly higher in TCCB than in normal controls (p <0.01). A allele carriers were at higher relative risk for TCCB than C only carriers (OR 4.16, 95% CI 1.74 to 9.93). AC and AA genotypes were associated with an increased risk of TCCB compared with CC genotypes (OR 3.48, 95% CI 1.26 to 9.63 and OR 4.91, 95% CI 1.79 to 13.45, respectively). A allele frequencies at the same position were also significantly higher in invasive TCCB than in superficial carcinoma (p <0.05). However, there was no statistical difference in A allele frequency between high and low TCCB pathological grades (p >0.05). CONCLUSIONS: The -160 C/A single nucleotide polymorphism of the E-cadherin gene promoter is associated with TCCB. This single nucleotide polymorphism may serve as a prognostic marker of TCCB.

Adult↗

PERB11 (MIC): a polymorphic MHC gene is expressed in skin and single nucleotide polymorphisms are associated with psoriasis.

The susceptibility genes for psoriasis remain to be identified. At least one of these must be in the major histocompatibility complex (MHC) to explain associations with alleles at human leucocyte antigen (HLA)-A, -B, -C, -DR, -DQ and C4. In fact, most of these alleles are components of just two ancestral haplotypes (AHs) designated 13.1 and 57.1. Although relevant MHC gene(s) could be within a region of at least 4 Mb, most studies have favoured the area near HLA-B and -C. This region contains a large number of non-HLA genes, many of which are duplicated and polymorphic. Members of one such gene family, PERB11.1 and PERB11.2, are expressed in the skin and are encoded in the region between tumour necrosis factor and HLA-B. To investigate the relationship of PERB11.1 alleles to psoriasis, sequence based typing was performed on 97 patients classified according to age of onset and family history. The frequency of the PERB11.1*06 allele is 44% in type I psoriasis but only 7% in controls (Pc = 0.003 by Fisher's exact test, two-tailed). The major determinant of this association is a single nucleotide polymorphism (SNP) within intron 4. In normal and affected skin, expression of PERB11 is mainly in the basal layer of the epidermis including ducts and follicles. PERB11 is also present in the upper keratin layers but there is relative deficiency in the intermediate layers. These findings suggest a possible role for PERB11 and other MHC genes in the pathogenesis of psoriasis.

Base Sequence↗

[Studies of single nucleotide polymorphism of PPAR gene and its associations with fattiness trait in chicken].

In this experiment, the AA broiler fat traits and three Chinese special breeds (Shiqiza, Beijing youji and Baier) were used to study the effect of PPAR-alpha gene on fat trait. Coding region of the gene was amplified by seven pairs of primers, and then single nucleotide polymorphisms (SNPs) were detected by the technique of single strand conformation polymorphism (SSCP) and finally confirmed by sequencing. One nucleotide variation was found, the result of chi 2 analysis showed that the distribution of three genotypes was very different among different breeds(P < 0.01). The result of variance analysis showed that the birds with BB genotype had a higher abdominal fat weight than the birds with other genotypes (AA and AB). It implied that PPAR-alpha gene could be a candidate locus or linked to a major gene to significantly affect abdominal fat traits in chicken.

Abdomen↗

Analysis of the transcobalamin II 776C>G (259P>R) single nucleotide polymorphism by denaturing HPLC in healthy elderly: associations with cobalamin, homocysteine and holo-transcobalamin II.

A relatively new method for the detection of single nucleotide polymorphisms is the use of denaturing high-performance liquid chromatography (DHPLC). DHPLC was used to analyse the transcobalamin II 776C>G polymorphism in DNA from 159 healthy elderly. Furthermore, cobalamin, folate, homocysteine and holo-transcobalamin II (holo-TC II) were measured. The allele frequency of the G-allele was 17% with n = 55 harbouring the CC genotype, n = 77 being heterozygous and n = 27 showing the GG genotype. Holo-TC II concentrations were significantly decreased in patients harbouring the GG genotype. There was no effect on cobalamin, methylmalonyl-CoA, folate or homocysteine concentrations. A new G>A variant at nucleotide position 810 in the TC II gene was detected by an altered peak pattern in the DHPLC and further elucidated by direct sequencing. The TC II G810A variant is a silent mutation without replacement of the corresponding amino acid (alanine) at position 270 in the TC II protein and was only found as a heterozygous genotype in a single patient. The new variant would have been undetected by other methods used for single nucleotide polymorphism detection, e.g., restriction fragment length polymorphism analysis. The results suggest that the common TC II 776C>G polymorphism has no major influence on vitamin B12 metabolism.

Aged↗

Treasure hunting in a new era: genotyping of single nucleotide polymorphisms and the search for complex disease genes by association scans.

Genotyping single nucleotide polymorphisms by technologies like those described in this issue are propelling us towards a new era in the study of human genetics. This new era promises improved prospects for mapping genes responsible for complex human diseases and other complex traits. In this article, I sketch empirical results and statistical theory that together form the scientific rationale for anticipating enhanced success in gene mapping in the new era that is now approaching.

Genetic Diseases, Inborn↗

Re-sequencing of multiple single nucleotide polymorphisms by liquid chromatography-electrospray ionization mass spectrometry.

Allelic discrimination of single nucleotide polymorphisms (SNPs) and, particularly, determination of the phase of multiple variations are of utmost importance in genetics. The physicochemical separation of alleles by completely denaturing ion-pair reversed-phase high-performance liquid chromatography and their on-line sequence determination by electrospray ionization mass spectrometry is demonstrated. Simultaneous genotyping of two and three simple sequence polymorphisms contained within 73-114 bp was accomplished with low femtomolar amounts of unpurified amplicons from polymerase chain reaction. Determination of allelic composition is enabled by the high accuracy (better than 0.019%) of intact mass measurements or by comparative sequencing using gas-phase fragmentation and tandem mass spectrometry in combination with fully automated, computer-aided data interpretation.

Chromatography, Liquid↗

Selection of single-nucleotide polymorphisms in disease association data.

We studied several methods for selecting single-nucleotide polymorphisms (SNPs) in a disease association study. Two major categories for analytical strategy are the univariate and the set selection approaches. The univariate approach evaluates each SNP marker one at a time, while the set selection approach tests disease association of a set of SNP markers simultaneously. We examined various test statistics that can be utilized in testing disease association and also reviewed several multiple testing procedures that can properly control the family-wise error rates when the univariate approach is applied to multiple markers. The set association methods were then briefly reviewed. Finally, we applied these methods to the data from Collaborative Study on the Genetics of Alcoholism (COGA).

Databases, Genetic↗