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T Sander

Publications and source records attributed to T Sander.

At least 55 records · Page 3Linked to original sources

Association analysis between a Cys23Ser substitution polymorphism of the human 5-HT2c receptor gene and neuronal hyperexcitability.

Transgenic mice lacking a functional 5-HT2c receptor gene are extremely susceptible to audiogenic seizures, suggesting that 5-HT2c receptors mediate inhibition of neuronal network excitability. The present association study tested the hypothesis that a Cys23Ser substitution polymorphism within the human 5-HT2c receptor gene modulates neuronal excitability. Genotypes of the Cys23Ser polymorphism were assessed in 454 subjects of German descent, comprising: 1) 93 severely affected alcohol-dependent males with a history of alcohol withdrawal seizure or delirium, 2) 119 patients affected by an idiopathic generalized epilepsy, and 3) 242 controls. Both sexes were analyzed separately because of the X-chromosomal location of the 5-HT2c receptor gene. The allele frequencies of the Cys23Ser variants did not differ significantly between the controls and either the severely affected alcohol-dependent males (P = 0.34), or patients with idiopathic generalized epilepsy (P > 0.57). Our results suggest that the common Cys23Ser substitution polymorphism of the human 5-HT2c receptor gene does not confer susceptibility to neuronal hyperexcitability in either idiopathic generalized epilepsy or alcohol withdrawal seizure or delirium.

Adult↗

Evaluation of a putative major susceptibility locus for juvenile myoclonic epilepsy on chromosome 15q14.

Juvenile myoclonic epilepsy (JME) is a genetically determined common subtype of idiopathic generalized epilepsy (IGE). Significant evidence for linkage has been reported for a susceptibility locus for JME in the chromosomal region 15q14 that harbors the gene encoding the alpha7 subunit of the neuronal nicotinic acetylcholine receptor (CHRNA7). The present study was designed to test the earlier linkage finding and to explore whether this susceptibility locus is involved in the epileptogenesis of a broader spectrum of IGE syndromes. Multipoint parametric and nonparametric linkage analyses with seven microsatellite polymorphisms encompassing the region of the CHRNA7 gene were performed using two diagnostic schemes of JME-related traits in two groups of multiplex families ascertained through probands with either JME (n = 27) or idiopathic absence epilepsy (n = 30). The present linkage study failed to replicate evidence for a major susceptibility locus for JME in the region encompassing the CHRNA7 gene. In addition, we found no hint in favor of linkage to 15q14 under the broad diagnostic scheme in any of the sets of families. If genetic variation in this region confers susceptibility to JME, then its effect size might be too small or its occurrence too rare to be detected in the investigated families.

Adolescent↗

Comparison of detection platforms and post-polymerase chain reaction DNA purification methods for use in conjunction with Cleavase fragment length polymorphism analysis.

The removal of impurities and contaminants from PCR-amplified fragments is important for mutation detection methods which identify mutations based on shifts in electrophoretic mobility. This is particularly critical for assays and detection methods which use target DNA that is labeled prior to analysis and electrophoretic detection. We examined several procedures for purifying DNA amplified by the polymerase chain reaction (PCR) and their use in conjunction with a novel DNA scanning method, the Cleavase fragment length polymorphism (CFLP)* assay. In this study, a 480 bp DNA fragment, fluorescently labeled on the 5'-end of one strand, was amplified and subjected to various widely used purification procedures, including several commercially available clean-up kits. We demonstrate that visualization of the fluorescent label, as opposed to simple ethidium bromide staining, reveals the presence of considerable levels of labeled, truncated, amplification products. The various procedures were evaluated on the basis of their ability to remove these unwanted DNA fragments as well as on the degree to which they inhibited or promoted the CFLP reaction. Several procedures are recommended for use with CFLP analysis, including isopropanol precipitation, gel excision, and several commercially available spin columns. Concurrently, we evaluated (compared) a number of commonly used visualization platforms, including fluorescence imaging, chemiluminescence, and post-electrophoretic staining, for the ability to detect CFLP pattern changes. The advantages and disadvantages of different methods are discussed and amounts of DNA to be used for CFLP analysis on different detection platforms are recommended.

DNA↗

mu-opioid receptor variants and dopaminergic sensitivity in alcohol withdrawal.

OBJECT: The endogenous opioid system plays an important role in the reinforcing properties of alcohol by an interconnected activation of the mesolimbic dopamine system. The Asn40Asp substitution polymorphism of the human mu-opioid-receptor (OPRM) influences binding of opioids and signal transduction and may, thereby, contribute to the development of alcoholism. The present study tested whether the Asn40Asp substitution polymorphism of the OPRM gene is associated with a variation in central dopaminergic sensitivity during alcohol withdrawal in alcoholics. METHOD: Sensitivity of central dopamine receptors was assessed by apomorphine-induced growth hormone (GH) secretion in 97 alcohol-dependent patients before and 1 week after alcohol cessation, and in a subgroup of 19 alcoholics after 3 months of abstinence. GH response was defined as area under the hormone/time curve. Comparisons of the GH response were conducted between alcoholics carrying the Asn40Asp genotype versus those with the Asn40Asn genotype using U-test statistics. RESULTS: Marginal differences in apomorphine-induced GH response were found between both genotype groups before detoxification (P = 0.799 (n = 97)/P = 0.459 (n = 19)) and after 3 months of abstinence (P = 0.331 (n = 19)). In contrast, the GH response measured seven days after alcohol withdrawal was significantly increased in alcoholics with the Asn40Asp genotype compared with those carrying the Asn40Asn genotype (P = 0.013 (n = 97)/P = 0.026 (n = 19)). CONCLUSION: Our results suggest that genetic variation of the mu-opioid receptor modulates the central dopaminergic sensitivity during acute alcohol withdrawal.

Adult↗

Length variation of a polyglutamine array in the gene encoding a small-conductance, calcium-activated potassium channel (hKCa3) and susceptibility to idiopathic generalized epilepsy.

The present association study tested whether length variations of two adjacent polymorphic CAG repeats in the coding sequence of a small-conductance, calcium-activated potassium channel (hKCa3) confer susceptibility to common subtypes of idiopathic generalized epilepsy (IGE). We found no significant difference in the allelic length distribution of the CAG repeats between 290 healthy German controls and the entire sample of 126 German IGE patients (Wilcoxon rank-sum test, P = 0.44) or two subgroups, comprising either 78 patients with juvenile myoclonic epilepsy (Wilcoxon rank-sum test, P = 0.74) or 59 patients with idiopathic absence epilepsies (Wilcoxon rank-sum test, P = 0.44). Moreover, the allelic distribution in parents-child trios of 46 IGE offspring did not differ significantly between the transmitted and non-transmitted parental alleles (Wilcoxon rank-sum test, P = 0.48). Therefore, our association study provides no evidence that length variations of polyglutamine arrays in the N-terminus of the hKCa3 channel exert a frequent and relevant effect in the epileptogenesis of common subtypes of IGE.

Adult↗

Association analysis of a regulatory promoter polymorphism of the PAX-6 gene with idiopathic generalized epilepsy.

The PAX-6 gene is a member of the paired-box-containing (PAX) gene family, encoding a transcriptional activator, that plays an important role in the development of the central nervous system. The present association study tested the hypothesis that length variation of a novel regulatory dinucleotide repeat polymorphism in the promoter region of the PAX-6 gene (PAX-6 gene-linked polymorphic region, PAX-6LPR) confers susceptibility to the epileptogenesis of common subtypes of idiopathic generalized epilepsy (IGE). The repeat length of the regulatory dinucleotide repeat polymorphism was assessed in 354 German control subjects and 125 German IGE patients, comprising 70 patients with juvenile myoclonic epilepsy (JME) and 55 patients with an idiopathic absence epilepsy (IAE). The allelic distribution of the PAX-6LPR did not deviate significantly between the controls and the IGE patients (Wilcoxon Rank-Sum test: P > 0.76), or both subgroups of either JME patients (P > 0.78) or IAE patients (P > 0.87). Our results do not provide evidence that length variation of the polymorphic dinucleotide sequence in the PAX-6LPR contributes a frequent and relevant effect to the pathogenesis of common subtypes of IGE.

Alleles↗

Association analysis of exonic variants of the gene encoding the GABAB receptor and alcohol dependence.

The present association study tested whether genetic variation of the GABAB receptor (GABABR1) gene confers vulnerability to alcohol dependence. The genotypes of three DNA sequence variants in exons 1a1, 7 and 11 of the GABABR1 gene were assessed in 234 German controls and 350 German alcohol-dependent subjects, including three more homogeneous subgroups of alcoholics, marked by (1) history of parental alcoholism (n = 121); (2) history of alcohol withdrawal seizure or delirium (n = 108); and (3) comorbidity of dissocial personality disorder (n = 60). The allele frequencies of none of the investigated GABABR1 variants differed significantly between the controls and the groups of alcoholics when a correction for multiple testing was taken into account (P > 0.004). However, trends (P < 0.10) towards an excess of the Ser489 allele of the exon 7 polymorphism were found in the subgroups of alcoholics, and of the common allele of the exon 11 polymorphism in the entire sample of alcoholics (P = 0.032), alcoholics with parental alcoholism (P = 0.084) and the dissocial alcoholics (P = 0.037). Our findings suggest that the investigated GABABR1 variants do not contribute a substantial effect (RR > 3) to the genetic variance of alcohol dependence. Nevertheless, the hints towards potential allelic associations of the exon 7 and 11 polymorphisms with dissocial alcoholism emphasize further studies to test more defined phenotype-genotype relationships.

Adult↗

Association analysis of sequence variants of GABA(A) alpha6, beta2, and gamma2 gene cluster and alcohol dependence.

Quantitative trait analyses in mice suggest a vulnerability locus for physiological alcohol withdrawal severity on a chromosomal segment that harbors the genes encoding the alpha1, alpha6, beta2, and gamma2 subunits of the gamma-aminobutyric acid type-A receptor (GABR). We tested whether genetic variation at the human GABA(A) alpha6, beta2, and gamma2 gene cluster on chromosome 5q33 confers vulnerability to alcohol dependence. The genotypes of three nucleotide substitution polymorphisms of the GABRA6, GABRB2, and GABRG2 genes were assessed in 349 German alcohol-dependent subjects and in 182 ethnically matched controls. To eliminate some of the genetic variance, three more homogeneous subgroups of alcoholics were formed by: (1) a history of alcohol withdrawal seizure or delirium (n = 106); (2) a history of parental alcoholism (n = 120); and (3) a comorbidity of dissocial personality disorder (n = 57). We found no evidence that any of the investigated allelic variants confers vulnerability to either alcohol dependence or severe physiological alcohol withdrawal symptoms or familial alcoholism (p > 0.05). The frequency of the T allele of the GABRA6 polymorphism was significantly increased in dissocial alcoholics [f(T) = 0.799] compared with the controls [f(T) = 0.658; p = 0.002; OR(T+) = 7.26]. Taking into account the high a priori risk of false-positive association findings due to multiple testing, further replication studies are necessary to examine the tentative phenotype-genotype relationship of GABRA6 gene variants and dissocial alcoholism.

Adult↗

Lack of an allelic association between polymorphisms of the dopamine D2 receptor gene and alcohol dependence in the German population.

Our study examined recent claims of an association of the TaqI A1 allele and the functional -141C Ins allele of the dopamine D2 receptor (DRD2) gene with alcohol dependence. Genotypes of the TaqI A and -141C insertion/deletion polymorphisms were assessed in 196 German nonalcoholic controls and 310 German alcohol-dependent subjects, including two more homogeneous subgroups selected by either a history of parental alcoholism (n = 108) or by a history of severe physiological alcohol withdrawal symptoms (n = 99). We found no association between any of the biallelic variants or the A1/Ins haplotype and alcohol dependence (p > 0.05). Our present association results failed to replicate evidence that either the TaqI A1 allele or the functional Ins allele or the A1/Ins haplotype of the DRD2 gene confers vulnerability to alcohol dependence in the German population.

Alcoholism↗

Serotonin transporter gene variants in alcohol-dependent subjects with dissocial personality disorder.

BACKGROUND: We tested the hypothesis that a functional biallelic repetitive element in the 5' regulatory region of the human serotonin transporter gene (SLC6A4) confers susceptibility to serotonin-related personality traits underlying alcohol dependence with dissocial behavior. METHODS: The association study was focused on 64 alcohol-dependent subjects with a dissocial personality disorder (according to ICD-10) who were derived from 315 German alcohol-dependent subjects. The Tridimensional Personality Questionnaire (TPQ) was applied to assess personality dimensions in 101 alcohol-dependent men, including 39 dissocial alcoholics. RESULTS: Our association analyses revealed a trend towards a higher frequency of the short (S) allele of the SLC6A4 polymorphism in dissocial alcoholics compared to 216 German controls (chi 2 = 2.81, df = 1, p = 0.094). Dissocial alcoholics carrying the S/S genotype exhibited significant lower scores of harm avoidance compared to those lacking it (U-test, p = 0.015). Significantly higher novelty seeking scores were obtained in dissocial alcoholics carrying the S allele relative to those lacking it (U-test, p = 0.021). CONCLUSIONS: Our tentative association findings in dissocial alcoholics suggest that the S allele of the 5' regulatory SLC6A4 polymorphism confers susceptibility to a temperamental profile of high novelty seeking and low harm avoidance that has been postulated to underlie dissocial (type-2) alcoholism according to Cloninger's neurogenetic theory of personality.

Adult↗

Serotonin transporter (5-HTT) gene polymorphisms are not associated with susceptibility to mood disorders.

In a population-based association study, we tested the hypothesis that allelic variants of the human serotonin transporter (5-HTT) gene confer susceptibility to mood disorders. Both a biallelic repeat polymorphism in the 5' promotor region that differentially modulates gene expression and a second intron variable-number-tandem-repeat (VNTR) marker were genotyped in 294 controls and 115 patients with mood disorders. Subjects were of West European descent and included 36 patients with major depressive disorder (MDD) and 79 patients with bipolar I disorder (BD). No significant differences in genotype or allele frequencies were found at either locus between controls and combined patients, nor between controls and MDD or BD patients separately. Thus, our data do not support the association between depressive disorder and a nine-repeat allelic variant of the 5-HTT VNTR marker recently reported by Ogilvie et al. (Lancet 347:731-733, 1996). More importantly, no association between alleles conveying functional differences in 5-HTT gene expression and MDD or BD could be found. Taken together, our data suggest that the 5-HTT gene is not commonly involved in the susceptibility to mood disorders.

Alleles↗

Mapping, genomic structure, and polymorphisms of the human GABABR1 receptor gene: evaluation of its involvement in idiopathic generalized epilepsy.

Neurophysiological and pharmacological studies suggest a major role of the GABAB receptor in the epileptogenesis of absence seizures. The gene encoding the human GABABR1 receptor (GABABR1) has recently been mapped to human chromosome 6p21.3 by in situ hybridization, a region that harbors a susceptibility locus (EJM1) for idiopathic generalized epilepsy (IGE). We investigated the hypothesis that the GABABR1 gene (GABBR1) represents a candidate gene for EJM1 by: (1) defining the precise localization approximately 130 kilobases telomeric to the HLA-F locus, (2) by characterizing its genomic organization, and (3) by mutation screening of the entire coding region of GABBR1 in 18 German patients with juvenile myoclonic epilepsy (JME) who were derived from families with evidence for linkage to chromosome 6p21.3 (cumulative lod score Z=3.17 at HLA-DQ). The GABAB receptor gene consists of 22 translated exons. The two alternative transcripts, GABABR1a and GABABR1b, are derived from the same locus but they differ in their alternative 5'-exons. Mutation analyses in JME revealed several DNA sequence polymorphisms, two of which result in amino acid changes occurring in all IGE-affected members of two families. However, clinically unaffected relatives did carry the same variations, excluding these amino acid substitutions as the cause for IGE in these families.

Amino Acid Substitution↗

The gene encoding the alpha1A-voltage-dependent calcium channel (CACN1A4) is not a candidate for causing common subtypes of idiopathic generalized epilepsy.

Mutations in the gene encoding the alpha1A-calcium channel subunit play a causative role in the epileptogenesis of absence seizures in tottering mutant mice. The present family-based association and non-parametric linkage study tested the hypothesis that allelic variants of the homologous human gene (CACN1A4) confer susceptibility to common subtypes of idiopathic generalized epilepsy (IGE). An expressed polymorphic CAG trinucleotide repeat in the 3' end of the CACN1A4 gene was assessed in 70 families ascertained through members with either childhood (CAE) and juvenile absence epilepsy (JAE), or juvenile myoclonic epilepsy (JME). Our association analysis using the haplotype-based haplotype relative risk statistic provided no evidence for an allelic association of the CAG repeat polymorphism with either IGE, or CAE and JAE, or JME. We found no relation between the CAG repeat length and susceptibility neither to IGE, nor to CAE and JAE, nor to JME. Non-parametric linkage analysis revealed no evidence for linkage of IGE traits with the CACN1A4 locus in 42 families of patients with either CAE or JAE. A weak trend towards an excess of allele sharing (identity by descent) among family members affected by an IGE was obtained in 26 families of JME patients (Z[NPL] = 1.25 at theta = 0.000, p = 0.057). Taken together, we found no statistically significant evidence that genetic variants of the CACN1A4 gene play a causative role in the pathogenesis of common subtypes of IGE in humans.

Alleles↗

Possible allelic association of a tyrosine hydroxylase polymorphism with vulnerability to alcohol-withdrawal delirium.

Recently, an association has been reported between schizophrenia and a rare allele containing 10-repeats (A10) of a polymorphic tetranucleotide motif in the first intron of the tyrosine hydroxylase (TH) gene. The present association analysis tested the hypothesis that the A10 candidate allele confers vulnerability to alcohol-withdrawal delirium with visual hallucinations. The genotype of the TH tetranucleotide polymorphism was assessed in 204 German controls and 311 German alcohol-dependent subjects, including 63 alcoholics with a history of visual hallucinations during withdrawal delirium. The frequency of the A10 allele was significantly increased in the alcoholics with withdrawal delirium (3.2%) compared with that in the controls (0.5%; Fisher's exact test: P = 0.03, two-tailed; OR (A10+) = 6.85, 95% confidence interval: 1.52-30.79). The possible allelic association suggests that allelic variation at the TH locus mediates vulnerability to alcohol-withdrawal delirium in a small proportion of alcohol-dependent subjects.

Adult↗

Replication analysis of a putative susceptibility locus (EGI) for idiopathic generalized epilepsy on chromosome 8q24.

PURPOSE: The present replication study was designed to test the validity of a previously mapped susceptibility locus (EGI) for common subtypes of idiopathic generalized epilepsy (IGE) in chromosomal region 8q24. METHODS: Thirty-eight multiplex families of probands with common IGE syndromes were included in the present study. Parametric and nonparametric multipoint linkage analyses were conducted between the IGE trait (either "idiopathic" generalized seizure or generalized spike-wave EEG discharges) and three microsatellite polymorphisms (D8S256, D8S284, D8S1128) encompassing the putative EGI locus. RESULTS: Parametric and nonparametric multipoint linkage analysis provided no evidence for linkage between the IGE trait and the markers encompassing the putative EGI locus. Moreover, we noted no indication favoring linkage to this chromosomal region in two distinct subsets of families subdivided by the absence (n = 18) or presence (n = 20) of family members with juvenile myoclonic epilepsy (JME). CONCLUSIONS: We failed to replicate evidence of a major locus (EGI) for common familial IGE in chromosome region 8q24. On the contrary, our present parametric linkage results provide evidence against linkage across the region under a broad range of genetic models. If there is a susceptibility locus for IGE in this region, the effect size or the proportion of linked families is too small to detect linkage in these families. Taking into account the problems in replicating initial linkage claims in oligogenic traits, further linkage studies in additional family sets are necessary to evaluate the validity of the previous linkage finding.

Chromosome Mapping↗

Modification of alcohol withdrawal by the A9 allele of the dopamine transporter gene.

OBJECTIVE: Determinants of individual vulnerability to alcohol withdrawal symptoms are largely unknown. Because of the substantial role of monoaminergic transporters in limiting time and space effects of synaptic neurotransmission, the dopamine transporter gene (DAT1; locus symbol: SLC6A3) was studied as a candidate gene possibly related to symptoms of uncomplicated alcohol withdrawal. METHOD: In 48 chronically intoxicated alcoholics (diagnosed according to ICD-10), withdrawal symptoms were examined and the presence of a variable-number tandem repeat in the 3' untranslated region of the DAT1 gene was determined. RESULTS: Withdrawal syndromes were more pronounced in the 22 patients carrying the nine-copy repeat than in the 26 patients without this variant. Multiple regression analysis revealed that 4% of the variance of withdrawal was explained by this genotype, whereas 16% was due to the amount of alcohol the patients reported having consumed in the month before detoxification. CONCLUSIONS: The A9 allele of the dopamine transporter gene is associated with more severe effects of alcohol withdrawal, possibly because of modifications of the brain's capacity to compensate for long-term effects of ethanol on cerebral function.

Adult↗

Human mu-opioid receptor variation and alcohol dependence.

Mu-Opioid receptor-mediated neurotransmission is involved in the reward, tolerance, and withdrawal effects of alcohol. The present association study tested the hypothesis that the common Asn40Asp substitution polymorphism in the N-terminal domain of the human mu-opioid receptor (OPRM) confers vulnerability to subtypes of alcohol dependence. The genotypes of the Asn40Asp substitution polymorphism were assessed in 327 German alcohol-dependent subjects (according to ICD-10) and in 340 control subjects of German descent, using an assay based on allele-specific polymerase chain reaction. To select alcoholics with a presumed high genetic load, three subgroups were delineated, marked by (1) a family history of parental alcoholism (n = 114); (2) the inability to abstain from alcohol before the age of 26 years (n = 73); and (3) a history of alcohol withdrawal seizure or delirium (n = 107). The frequency of the Asp40 allele did not differ significantly between the controls [f(Asp40) = 0.078] and either the entire group of alcoholics [f(Asp40) = 0.107; p = 0.066], or the alcoholics with parental alcoholism [f(Asp40) = 0.114; p = 0.094], or the early-onset alcoholics [f(Asp40) = 0.096; p = 0.471,[ or the alcoholics with severe withdrawal symptoms [f(Asp40) = 0.098; p = 0.350]. Our results do not provide evidence that the common Asn40Asp substitution polymorphism of the OPRM gene contributes a major effect to the pathogenesis of alcohol dependence.

Adult↗

Dopamine D4 receptor exon III alleles and variation of novelty seeking in alcoholics.

A dysfunction of dopaminergic neurotansmission has been implicated in alcohol-seeking behavior. Recently, a significant association between the seven-repeat allele (DRD4*7R) of a 16 amino acid motif in the third exon of the dopamine D4 receptor gene (DRD4) and the personality trait of novelty seeking has been reported. Our population-based association study tested the hypothesis that the DRD4*7R variant predisposes to high levels of novelty seeking, which may underlie alcohol-seeking behavior. The genotypes of the expressed DRD4 exon III polymorphism were determined in 197 German controls and 252 German alcohol-dependent males, of whom 92 alcoholics completed the tridimensional personality questionnaire. We found no significant differences in the DRD4*7R frequencies between controls and alcoholics, including two subgroups (56 alcoholics with dissocial personality disorder according to ICD-10 and 89 alcoholics with severe withdrawal symptoms) with a high level of novelty seeking. The novelty-seeking scores did not differ significantly between alcoholics (including both subgroups) carrying long alleles with six or more repeats compared with those lacking long alleles. The present results do not provide evidence that the DRD4*7R allele contributes a common and relevant effect to alcohol-seeking behavior in our sample of alcoholics.

Alcoholism↗