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Human complement C3b/C4b receptor (CR1) mRNA polymorphism that correlates with the CR1 allelic molecular weight polymorphism.

The human C3b/C4b receptor (CR1) is a Mr approximately equal to 200,000 single-chain integral membrane glycoprotein of human erythrocytes and leukocytes. It functions both as a receptor for C3b- and C4b-coated ligands and as a regulator of complement activation. Prior structural studies have defined an unusual molecular weight allelic polymorphism in which the allelic products differ in molecular weight by as much as 90,000. On peripheral blood cells there is codominant expression of CR1 gene products of Mr 190,000 (A), 220,000 (B), 160,000 (C), and 250,000 (D). Results of prior biosynthetic and tryptic peptide mapping experiments have suggested that the most likely basis for the allelic molecular weight differences is at the polypeptide level. In order to define further the molecular basis for these molecular weight differences, human CR1 was purified to homogeneity, tryptic peptide fragments were isolated by HPLC and sequenced, oligonucleotide probes were prepared, and a CR1 cDNA was identified. A subclone of this CR1 cDNA was used as a probe of RNA blots of Epstein-Barr virus-transformed cell lines expressing the allelic variants. Each allelic variant encodes two distinct transcripts. A mRNA size polymorphism was identified that correlated with the gene product molecular weight polymorphism. This finding, in addition to a prior report of several homologous repeats in CR1, is consistent with the hypothesis that the molecular weight polymorphism is determined at the genomic level and may have been generated by unequal crossing-over.

Alleles↗

Identification of the Hind III polymorphic site in the PAI-1 gene: analysis of the PAI-1 Hind III polymorphism by PCR.

The identification of the Hind III polymorphic site in the 3' end of the plasminogen activator inhibitor 1 (PAI-1) gene and a simple method to identify the Hind III polymorphism rapidly in the PAI-1 gene using PCR is described. The Hind III restriction site was identified by restriction site mapping and sequence analysis from a cosmid DNA clone. Genomic DNA was isolated from individual human umbilical cords and a 754-bp fragment of the human PAI-1 gene was amplified by PCR. Aliquots of the PCR products were digested with Hind III and analyzed by agarose gel electrophoresis. The presence of two fragments, 754 and 567 bp, was identified, and they were designated as 1/1 (750-bp band), 1/2 (754- and 567-bp bands), and 2/2 (567-bp band). The PCR method is considerably less time consuming than the conventional DNA genotyping using Southern blot analysis. To ensure that this new method identified the same PAI-1 genotypes as previously identified by Hind III restriction fragment length polymorphism (RFLP), samples were simultaneously genotyped by PCR and Southern blot analysis. Both methods identified the same Hind III genotypes in all the samples, confirming the reliability of this new PCR method for the rapid identification of the Hind III polymorphism in the human PAI-1 gene.

3' Untranslated Regions↗

Polymorphism at beta 85 and not beta 86 of HLA-DR1 is predominantly responsible for restricting the nature of the anchor side chain: implication for concerted effects of class II MHC polymorphism.

The first hydrophobic pocket, P1, of class II MHC has been shown to be an important site of peptide anchoring. Two polymorphisms occur in this pocket in the human class II MHC beta chain at position 85 and 86. beta 85 is usually Val, occasionally Ala, whereas beta 86 can be Gly or Val. However, Ala85 is found only in conjunction with Val86. The independent effect of the polymorphism at these two positions on the binding of normal and substituted antigenic peptides has never been examined. To do so, three soluble HLA-DR1 variants that contain the naturally occurring combinations of these side chains at these two positions were generated and tested with a panel of influenza matrix peptides varying at anchor P1. DR1 alleles differing only at position 86 are very similar in the binding of a panel of antigenic peptide, indicating that beta 86 does not substantially influence the peptide binding of DR1. In contrast, DR1 varying only at position beta 85 differ in their binding of substituted peptides containing Ala, Tyr or Trp at the P1 anchor position. Thus, beta 85 shows the predominant effect on the P1 anchor side chain preference of the P1 pocket in DR1. This is in contrast to other HLA-DR alleles where beta 86 has been shown to control the nature of the P1 anchor. These previous data together with our own imply that the role of polymorphism in P1 may be influenced by the contextual framework of the remaining allelic polymorphism.

Alleles↗

Failure to find associations of the CA repeat polymorphism in the first intron and the Gly-63/Glu-63 polymorphism of the neurotrophin-3 gene with schizophrenia.

This study aimed to replicate positive associations between polymorphisms of the neurotrophin-3 gene and schizophrenia. The reported associations, which were the results of searching for mutations in the locus in schizophrenics under the hypothesis of neurodevelopmental etiology of schizophrenia, are that the states carrying the (CA)23 allele of the CA repeat in the first intron have a 2.56-fold increased risk of schizophrenia and those carrying the allele Glu-63 instead of Gly-63 have a 2.6-fold increased risk of schizophrenia with onset before 25 years and with duration of the illness of more than 10 years. We analyzed these polymorphisms in 80 schizophrenics with onset before 25 years of age and with duration of illness of more than 10 years and 80 age-matched psychosis-free controls. With our sample size, there was a 90% chance of detecting odds ratios observed in initial positive reports. We found similar allele and genotype frequencies of both polymorphisms between the schizophrenic and control groups. We failed to support associations between the polymorphisms of the neurotrophin-3 gene analyzed and schizophrenia.

Adult↗

Double-strand DNA conformation polymorphisms as a source of highly polymorphic genetic markers.

The molecular basis for several apparent restriction fragment length polymorphisms of the porcine growth hormone gene was examined through DNA sequence analysis. Electrophoretic and sequence analysis suggest polymorphisms result from 1-3 base substitutions that affect double-strand DNA conformation and electrophoretic mobility. Two allelic forms of the porcine growth hormone 5' flank and four allelic forms of the second exon/intron region were identified. A marker system was developed which combined conformation polymorphisms with HaeII and DdeI RFLPs. Using this system, nine haplotypes were observed in samples from three US swine breeds. The data presented suggest that double-strand DNA conformation can be exploited in base substitution detection and development of highly polymorphic genetic marker systems.

Alleles↗

Detection of highly polymorphic microsatellite loci in a species with little allozyme polymorphism.

Microsatellite loci are regions of DNA containing tandem repeats of a short sequence motif; they occur abundantly in all eukaryotic genomes and have been shown to be a rich source of highly polymorphic genetic markers in humans and other mammals. These loci are particularly suitable for population studies because they can be relatively easily scored using a combination of polymerase chain reaction (PCR) amplification of each locus followed by electrophoresis to separate alleles. This paper details a method for finding these loci in any species. This method demonstrates that trinucleotide microsatellite loci are abundant and highly polymorphic in the social wasp Polistes annularis, whereas allozyme electrophoresis reveals very little polymorphism. The first six loci examined were all polymorphic with a mean observed heterozygosity of 0.62; in comparison average heterozygosity of 33 allozymes was 0.035. We suggest that this method can be used to detect variation where other methods have failed, making it an ideal tool for population and conservation geneticists who must deal with populations lacking other types of genetic variability.

Alleles↗

Construction of a high-density linkage map of Italian ryegrass (Lolium multiflorum Lam) using restriction fragment length polymorphism, amplified fragment length polymorphism, and telomeric repeat associated sequence markers.

To construct a high-density molecular linkage map of Italian ryegrass (Lolium multiflorum Lam), we used a two-way pseudo-testcross F1 population consisting of 82 individuals to analyze three types of markers: restriction fragment length polymorphism markers, which we detected by using genomic probes from Italian ryegrass as well as heterologous anchor probes from other species belonging to the Poaceae family, amplified fragment length polymorphism markers, which we detected by using PstI/MseI primer combinations, and telomeric repeat associated sequence markers. Of the restriction fragment length polymorphism probes that we generated from a PstI genomic library, 74% (239 of 323) of randomly selected probes detected hybridization patterns consistent with single-copy or low-copy genetic locus status in the screening. The 385 (mostly restriction fragment length polymorphism) markers that we selected from the 1226 original markers were grouped into seven linkage groups. The maps cover 1244.4 cM, with an average of 3.7 cM between markers. This information will prove useful for gene targeting, quantitative trait loci mapping, and marker-assisted selection in Italian ryegrass.

Chromosome Mapping↗

Detection of polymorphic loci in Arachis germplasm using random amplified polymorphic DNAs.

The development of easily scoreable genetic markers in Arachis will facilitate the introgression of desirable traits from wild species into adapted germplasm. We have used random amplified polymorphic DNAs (RAPDs) to identify polymorphic molecular markers in a range of wild and cultivated Arachis species. From a total of sixty 10-mer oligonucleotide primers, 49 polymorphic loci were identified between cultivated A. hypogaea type (TMV-2) and a synthetic amphidiploid (B x C)2 created from a A. batizocoi and A. chacoense cross. The inheritance of polymorphic markers, both in the amphidiploid and in the F1 progeny in a TMV-2 x (B x C)2 cross, has also been demonstrated. The potential exploitation of RAPD markers in groundnut improvement programs is discussed.

Arachis↗

Application of the random amplified polymorphic DNA technique for the detection of polymorphism among wild and cultivated tetraploid wheats.

Development of a high-density genetic linkage map of cultivated wheats using conventional molecular markers has lagged behind the other major food crops such as rice and tomato because of the large genome size and limited levels of genetic polymorphisms. Recently, random amplified polymorphic DNAs (RAPDs) have been suggested to provide an alternative to visualize more polymorphism. For the construction of a genetic linkage map in tetraploid wheats, one can use a strategy of intersubspecific crosses between the most dissimilar wild and cultivated tetraploid wheats that are easy to hybridize and result in fertile progeny. An assessment of the level of RAPDs among different accessions and varieties of wild and cultivated tetraploid wheats is required to fulfill this objective. We present here the data obtained using RAPD analysis of 40 primers in 20 accessions of wild tetraploid emmer wheats (Triticum turgidum L. ssp. dicoccoides) and 10 genotypes of cultivated tetraploid durum wheats (Triticum turgidum L. ssp. durum) selected from geographically diverse locations. We have observed a higher level of polymorphism among different accessions of wild emmer wheat from Israel. Turkey, and Jordan than the group of cultivated American, Turkish, and Syrian durum wheats. These data have been used to generate a dendrogram suggesting the genetic relationships among these genotypes, and the most dissimilar genotypes are identified for future mapping and gene tagging work.

Base Sequence↗

Monoamine oxidase A gene polymorphism, 5-HT 2A receptor gene polymorphism and incidence of nausea induced by fluvoxamine.

Selective serotonin reuptake inhibitors cause a side effect of nausea with high frequency, but there have been no accurate methods to predict its incidence. The authors first investigated whether a functional polymorphism in the monoamine oxidase A (MAOA-VNTR) and a -1438G/A polymorphism in the promoter region of the 5-HT(2A) gene were associated with the incidence of nausea induced by fluvoxamine. Fluvoxamine was administered for 6 weeks with a specific dosage plan (50-200 mg/day) in 66 Japanese major depressive patients. The frequency of MAOA-VNTR allele 1 was significantly higher in the patients without nausea than in ones with nausea in the statistical analysis including the patients whose plasma levels were below the average and who were considered to be pharmacodynamically more sensitive to nausea. This study showed that the genetic polymorphism of MAOA-VNTR might affect the incidence of nausea induced by SSRIs. If this finding is replicated in other studies with more subjects, MAOA-VNTR polymorphism would be of great clinical use to predict the incidence of nausea induced by SSRIs.

Adult↗

Non-random association of the polymorphic Taq I restriction site, located 3 KB 5' to the human delta-globin gene, with the polymorphic Hind III sites within the G gamma- and A gamma-globin genes.

During the study of the DNA from 25 beta-thalassemic subjects from mediterranean origin the polymorphic Taq I restriction site located 3-kb 5' to the human delta-globin gene, was found non-randomly associated to the polymorphic Hind III sites within the G gamma- and A gamma-globin genes. This indicates that the 3' limit of the linkage group of polymorphic restriction sites including the gamma-globin genes is located downstream to the polymorphic Taq I site.

Base Sequence↗

Association of the platelet Pl(A) polymorphism of glycoprotein IIb/IIIa and the fibrinogen Bbeta 448 polymorphism with myocardial infarction and extent of coronary artery disease.

BACKGROUND: Platelets and fibrinogen play an integral role in the development of thrombosis and are implicated in the process of atherosclerosis. The fibrinogen Bbeta 448 polymorphism and the Pl(A) polymorphism of platelet glycoprotein IIIa are reported to be independently associated with coronary artery disease. The aim of this study was to determine the association of the fibrinogen Bbeta 448 and the platelet glycoprotein IIIa Pl(A) polymorphisms in relation to extent of coronary atheroma as characterized by angiography and a past history of myocardial infarction (MI) as assessed by World Health Organization criteria. METHODS AND RESULTS: Caucasian patients (n=405) admitted for routine angiography for investigation of chest pain or suspected coronary artery disease were recruited. Caucasian control subjects (n=216) were recruited from local Family Health Services Authority general practice registers. Fibrinogen levels were higher (P=.04) in male patients (3.24 g/L; CI, 3.14 to 3.35) than male control subjects (3.06 g/L; CI, 2.91 to 3.21). There was a trend toward a difference (P=.06) in fibrinogen genotype distributions between female patients (1/1=93, 1/2=31, and 2/2=1) and female control subjects (1/1=67, 1/2=34, and 2/2=5). In logistic regression models the Pl(A2) genotype was associated with MI (odds ratio, 1.66; CI, 1.15 to 2.39; P=.007) and stenosis of more than one vessel (odds ratio, 1.5; CI, 1.01 to 2.26; P=.04). In men suffering an MI before the age of 47 years there was a 50% incidence of the Pl(A2) allele (P=.05), and in these subjects there was evidence of an interaction with cholesterol (P=.04). CONCLUSIONS: We found evidence of an association of the Pl(A2) polymorphism in MI and multiple-vessel stenosis. The association with MI was strongest in young men, in whom there was also evidence of an interaction with cholesterol.

Cardiovascular Diseases↗

Plasminogen activator inhibitor 1 4G/5G polymorphism and coagulation factor XIII Val34Leu polymorphism: impaired fibrinolysis and early pregnancy loss.

BACKGROUND: A successful outcome of pregnancy depends on proper placental formation. In the very beginning of this process, trophoblast invasion and fibrin deposition into the wall of the decidual veins play an important part. Two polymorphisms, coagulation factor XIII (FXIII) Val34Leu and plasminogen activator inhibitor 1 (PAI-1) 4G/5G, interfere with fibrin cross-linking and regulation of fibrinolysis and may therefore contribute to early pregnancy loss. METHODS: We enrolled 49 unrelated Caucasian women with a history of two consecutive or three to six nonconsecutive early pregnancy losses and 48 unrelated parous healthy controls without a history of pregnancy loss and evaluated them for the following genetic variants: the factor V Leiden and prothrombin G20210A gene mutations, the methylenetetrahydrofolate reductase C677T and A1298C polymorphisms, and the PAI-1 4G/5G and FXIII Val34Leu polymorphisms. RESULTS: For the isolated occurrence of PAI-1 4G/5G or FXIII Val34Leu, we found no statistically significant difference between cases and controls. For homozygosity of either or compound carrier status of both mutations, the overall relative risk for early pregnancy loss was significantly increased (odds ratio = 2.4; 95% confidence interval, 1.1-5.5; P = 0.032). We observed no statistically relevant association of any of the other tested mutations with early pregnancy loss. CONCLUSION: Homozygosity for PAI-1 4G or FXIII 34Leu polymorphisms as well as compound carrier status is associated with early pregnancy loss.

Abortion, Habitual↗

Determination of human angiotensin converting enzyme (ACE) gene polymorphisms in erectile dysfunction: frequency differences of ACE gene polymorphisms according to the method of analysis.

The D polymorphism of angiotensin converting enzyme (ACE) gene has been found to be associated with various diseases, and ACE may also be involved in the pathogenesis of erectile dysfunction. On the other hand, interpretation of the data on the association of DD genotype with various diseases is controversial, due to methodological and technical variations in detection of the polymorphisms. We investigated a possible association between the DD genotype and erectile dysfunction in a Korean population, and compared the frequency of ACEgenotypes using our multiplexed PCR method with those based on the conventional PCR method in a sample of erectile dysfunctional and control subjects. There was significant difference in the distribution of ACE genotypes between the erectile dysfunctional (conventional PCR) and the control subjects (multiplexed PCR) (chi2=7.395, p<0.05), but there was no significant difference in the distribution of the genotypes between both groups (chi2=0.815, p>0.05) when our multiplexed PCR method was used. Therefore our results suggest that especially the conventional PCR method for ACE gene polymorphism may require careful control and may need repeated testing to verify the insertion deletion (ID) heterozygotes, and that a multiplexed PCR method can markedly increase the detection rate of the I allele in ID heterozygotes. No association was found between I/D polymorphism and erectile dysfunctional subjects in the Korean population studied.

Adult↗

Estrogen receptor alpha gene polymorphisms Pvu II and Xba I influence association between leptin receptor gene polymorphism (Gln223Arg) and bone mineral density in young men.

OBJECTIVE: The peak bone mass is recognized as an important determinant in the development of osteoporosis. We investigated associations between bone mineral density (BMD) and polymorphisms of the leptin receptor (LEPR) and estrogen receptor alpha (ERalpha) genes in young men. DESIGN: BMD, anthropometric characteristics, and serum leptin concentrations were measured in young men and compared with regard to the LEPR and ERalpha genotype. METHODS: From 219 healthy volunteers aged 20-34 Years, we genotyped the Lys109Arg, Gln223Arg, Ser492Thr, Ala976Asp, and Pro1019Pro variants of LEPR and the PvuII and XbaI variants of ERalpha using the polymerase chain reaction-restriction fragment length polymorphism method. We determined serum leptin concentrations by radioimmunoassay (RIA) and BMD by dual energy X-ray absorptiometry. RESULTS: The subjects carrying the Gln223 allele of LEPR had higher BMD at the lumbar spine compared with the subjects without this allele. There were no significant differences in BMD among PvuII and XbaI genotypes of ERalpha. However, an association between LEPR and BMD was noted in the subjects carrying the PP homozygotes of PvuII or the X alleles of XbaI, but this was not significant in those without these genotypes. CONCLUSIONS: This study indicates that the Gln223Arg polymorphism of LEPR is important for determination of the peak bone mass in men and that it is influenced by ERalpha gene polymorphisms.

Adult↗

Human glucagon-like peptide-1 receptor gene. Localization to chromosome band 6p21 by fluorescence in situ hybridization and linkage of a highly polymorphic simple tandem repeat DNA polymorphism to other markers on chromosome 6.

Glucagon-like peptide-1 is a fragment of proglucagon secreted by intestinal L-cells. It has potent glucose-dependent insulin secretory effects and also suppresses gastric acid secretion in the stomach. The biological actions of GLP-1 are mediated by the GLP-1 receptor, the structure of which has recently been determined. Defects in insulin secretion are a common feature of NIDDM and as such the GLP-1 receptor is a candidate for contributing to the development of this clinically and genetically heterogeneous disorder. As a first step in determining the role of the GLP-1 receptor in the development of NIDDM, we have isolated the human GLP-1 receptor gene and mapped it to chromosome 6, band p21.1, using the technique of fluorescence in situ hybridization. We also identified a simple tandem repeat DNA polymorphism in the human GLP-1 receptor gene of the form (TG)n. This DNA polymorphism has 14 alleles and a heterozygosity of > 0.8. We have used this DNA polymorphism to localize the GLP-1 receptor gene within the genetic map of the short arm of chromosome 6. This DNA polymorphism will facilitate genetic studies of the contribution of the GLP-1 receptor gene to impaired beta-cell function and NIDDM.

Base Sequence↗

An integrated restriction fragment length polymorphism--amplified fragment length polymorphism linkage map for cultivated sunflower.

Restriction fragment length polymorphism (RFLP) maps have been constructed for cultivated sunflower (Helianthus annuus L.) using three independent sets of RFLP probes. The aim of this research was to integrate RFLP markers from two sets with RFLP markers for resistance gene candidate (RGC) and amplified fragment length polymorphism (AFLP) markers. Genomic DNA samples of HA370 and HA372, the parents of the F2 population used to build the map, were screened for AFLPs using 42 primer combinations and RFLPs using 136 cDNA probes (RFLP analyses were performed on DNA digested with EcoRI, HindIII, EcoRV, or DraI). The AFLP primers produced 446 polymorphic and 1101 monomorphic bands between HA370 and HA372. The integrated map was built by genotyping 296 AFLP and 104 RFLP markers on 180 HA370 x HA372 F2 progeny (the AFLP marker assays were performed using 18 primer combinations). The HA370 x HA372 map comprised 17 linkage groups, presumably corresponding to the 17 haploid chromosomes of sunflower, had a mean density of 3.3 cM, and was 1326 cM long. Six RGC RFLP loci were polymorphic and mapped to three linkage groups (LG8, LG13, and LG15). AFLP markers were densely clustered on several linkage groups, and presumably reside in centromeric regions where recombination is reduced and the ratio of genetic to physical distance is low. Strategies for targeting markers to euchromatic DNA need to be tested in sunflower. The HA370 x HA372 map integrated 14 of 17 linkage groups from two independent RFLP maps. Three linkage groups were devoid of RFLP markers from one of the two maps.

Chromosome Mapping↗

No influence of the MDR-1 C3435T polymorphism or a CYP3A4 promoter polymorphism (CYP3A4-V allele) on dose-adjusted cyclosporin A trough concentrations or rejection incidence in stable renal transplant recipients.

BACKGROUND: A substantial proportion of the variability in the absorption and clearance of cyclosporin A (CsA) after oral administration has been attributed to variability in liver cytochrome P-450 3A4 (CYP3A4) activity and intestinal P-glycoprotein (P-gp) concentration. A polymorphism in the CYP3A4 promoter region, termed "variant" allele CYP3A4-V, was postulated to be associated with altered CYP3A4 enzyme activity. A polymorphism in exon 26 (C3435T) of the multidrug resistance-1 (MDR-1) gene was correlated with intestinal expression and in vivo activity of P-gp. METHODS: We investigated the occurrence of both polymorphisms in 124 stable Caucasian renal transplant recipients (>6 months after transplantation) on CsA as the primary immunosuppressant. Real-time, rapid-cycle PCR methods were developed and used for genotyping. RESULTS: The estimated allele frequencies for the MDR-1 C3435T allele (54%) and the CYP3A4-V allele (4.8%) were similar to those reported for Caucasian populations. No significant differences were found for the CsA doses needed to maintain similar CsA trough concentrations in patients with and without the CYP3A4-V allele or in patients with different MDR-1 C3435T genotypes. Furthermore, neither of the polymorphisms investigated was associated with renal function as assessed by creatinine plasma concentration or, in a retrospective analysis, the incidence of acute rejection. CONCLUSIONS: These findings suggest that the MDR-1 C3435T mutation and the CYP3A4-V variant are not major determinants of CsA efficacy in renal transplant recipients.

ATP Binding Cassette Transporter, Subfamily B, Mem↗