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T Sander

Publications and source records attributed to T Sander.

At least 73 records · Page 4Linked to original sources

Possible association of a silent polymorphism in the neuronal nicotinic acetylcholine receptor subunit alpha4 with common idiopathic generalized epilepsies.

The alpha4 subunit gene of the neuronal nicotinic acetylcholine receptor (CHRNA4) has recently been identified as the first gene underlying an idiopathic partial epilepsy syndrome in human, autosomal-dominant nocturnal frontal lobe epilepsy (ADNFLE). CHRNA4 is located in the candidate region for benign familial neonatal convulsions and low-voltage EEG on chromosome 20q. In the present study, we examined the possible role of CHRNA4 in common subtypes of idiopathic generalized epilepsy (IGE), comprising childhood and juvenile absence epilepsy and juvenile myoclonic epilepsy (JME), by systematically screening the coding region of the gene for sequence variants. We present here a population-based association study testing the hypothesis that variants of the CHRNA4 gene confer genetic susceptibility to common subtypes of IGE. The missense mutation (Ser248Phe), associated with ADNFLE, and four silent polymorphisms in the CHRNA4 gene were genotyped in 103 IGE patients and 92 controls by polymerase chain reaction and subsequent restriction analysis. Without correction for multiple testing, the frequency of the T-allele of the silent CfoI bp595 polymorphism was increased in the entire group of IGE patients (f(T) = 0.085) compared to that in the controls (f(T) = 0.027). The allelic association was not restricted to any subgroup of IGE with either JME or idiopathic absence epilepsies. This result suggests that variation of the CHRNA4 gene, or so-far-undetected sequence variants near the CHRNA4 locus, confer susceptibility to the common IGE syndromes.

Alleles↗

Allelic association of juvenile absence epilepsy with a GluR5 kainate receptor gene (GRIK1) polymorphism.

Juvenile absence epilepsy (JAE) is a common subtype of idiopathic generalized epilepsy (IGE). Hereditary factors play a major role in its etiology. The important function of glutamate receptors (GluRs) in excitatory neurotransmission, synaptic plasticity, and neurodevelopment suggests their involvement in epileptogenesis. A tetranucleotide repeat polymorphism in the non-coding region of the kainate-selective GluR5 receptor gene (GRIK1) on chromosome 21q22.1 provides the tool to investigate this candidate gene. The present association and linkage study tested the hypothesis that allelic variants of GRIK1 confer genetic susceptibility to the pathogenesis of JAE. Our family-based association analysis using the haplotype-based haplotype relative risk statistic revealed an association of JAE with the nine-repeat containing allele of the GRIK1 tetranucleotide polymorphism (chi2 = 8.31, df = 1, P = 0.004). Supportive evidence for linkage to a JAE related IGE spectrum (Zmax = 1.67 at GRIK1) under an autosomal dominant mode of inheritance and significant allele sharing (P < 0.05) among the affected family members suggest that allelic variants of GRIK1 contribute a major genetic determinant to the pathogenesis of JAE-related phenotypes.

Alleles↗

Allelic association of a dopamine transporter gene polymorphism in alcohol dependence with withdrawal seizures or delirium.

Hereditary factors confer susceptibility to alcohol dependence. Alcohol mediates its reinforcing effects by enhancing dopamine activity in the mesolimbic dopamine system. The role of the dopamine transporter in terminating dopaminergic activity in synaptic neurotransmission suggests that variants of the dopamine transporter gene (DAT1) might contribute to individual differences in vulnerability to addictive behavior. Our population-based association study investigated whether variants of DAT1 confer susceptibility to alcohol dependence in 293 alcoholics and clinically more homogeneous subgroups formed by: positive family history, early age-at-onset, delirium, withdrawal seizures, antisocial tendencies, type 1 and 2 alcoholics. Analyzing a VNTR polymorphism in the 3' untranslated region of DAT1, we found a significantly increased prevalence of the nine-repeat allele in 93 alcoholics displaying withdrawal seizures or delirium, compared with 93 ethnically matched nonalcoholic controls (p = 0.003; OR = 2.44; 95% confidence interval: 1.35-4.43). Our data provide evidence that a major genetic determinant of DAT1 influences vulnerability to severe alcohol withdrawal symptoms.

Adult↗

Influence of the dopamine D2 receptor (DRD2) genotype on neuroadaptive effects of alcohol and the clinical outcome of alcoholism.

The present study was performed to test the hypotheses that allelic variants at the human dopamine D2 receptor gene locus (DRD2) confer susceptibility to alcoholism or are associated with clinical subtypes of alcoholism. We investigated an A --> G substitution polymorphism in the 3'-untranslated region of exon 8 (E8) of DRD2 with allele frequencies of f(G) = 0.295 - 0.329. No significant association of the DRD2 genotype or allele frequencies with alcoholism was found in an association study including 283 alcoholics and 146 non-alcoholic controls. However, the frequent homozygous E8 A/A genotype with f(AA) = 0.47 - 0.48 was associated with increased anxiety and depression scores in alcoholics during the follow up after clinical detoxification treatment. In addition, E8 A/A was associated with increased suicide attempts and showed a tendency towards more severe withdrawal symptoms, early relapse and reduced responsiveness to the dopaminergic agonist apomorphine. Regression analysis revealed the DRD2 E8 genotype as the only significant factor determining withdrawal severity in female alcoholics. The findings suggest an influence of the DRD2 genotype on the neuropharmacological effects of chronic alcohol exposure and the clinical course of alcoholism.

Adaptation, Physiological↗

A novel allelic variant of the human serotonin transporter gene regulatory polymorphism.

Allelic variation of the human serotonin transporter gene (SLC6A4) has recently been shown to modulate anxiety-related traits. A tandemly repeated sequence in close proximity to the promoter was found to be represented by a long (L) and short (S) variant, differentially modulating gene expression in vitro. Specifically, allele S, generated by a deletion of 44 bp involving repeats VI to VIII, reduced transcriptional efficiency, gene expression, and 5-hydroxytryptamine uptake and was associated with increased neuroticism scores. We have now identified a novel allelic variant of this promoter-linked polymorphism that is significantly larger than the L allele and which we have designated allele XL (for "extra large"). Sequence analysis revealed that XL arose through duplication of an internal segment composed of repeat elements VI to IX, comprising 85 bp in total, and, most notably, including the segments deleted in the S allele. Additional allelic variants larger than human allele L were observed predominantly in various nonhuman primates. Preliminary data indicated that these variable allelic extensions similarly originate from this specific repeat region. These allelic variants may serve as a valuable model system to further elucidate the relationship between repeat structure, regulatory properties, and behavioral correlates. Finally, allelic variants were found to vary significantly among different human populations, with allele XL being uniquely present in individuals of African origin, allele L most frequent in Africans and Caucasians of Western European descent, and allele S most abundant in East Asians.

Africa↗

Refined mapping of the epilepsy susceptibility locus EJM1 on chromosome 6.

Juvenile myoclonic epilepsy (JME) is a genetically determined common subtype of idiopathic generalized epilepsy. Linkage to the HLA complex on chromosome 6p21.3 and an allelic association with HLA-DR13 and -DQB1 alleles suggest that a susceptibility locus for JME, designated as "EJM1," is located within or near the HLA region. However, further studies revealed controversial results, and genetic heterogeneity has been suspected. The present study was designed to evaluate the validity of the association and linkage findings and to refine the map position of EJM1. Our association analysis showed no significant difference of the frequency of HLA-DR13 carriers in 62 German JME patients compared with that in 77 German controls (X2 = 0.98, df = 1, p = 0.161, one-tailed). Multipoint linkage analysis with use of microsatellite markers from the chromosomal region 6p25-q13 in 29 German families of JME patients provided significant evidence that an epilepsy locus (EJM1) close to the HLA locus confers susceptibility to "idiopathic" generalized seizures (Zmax = 3.27 at theta max = 0.033 centromeric to the HLA-DQ locus), assuming an autosomal dominant mode of inheritance with 70% penetrance. Haplotype analyses revealed key recombinations in five families, which locate EJM1 to the centromeric side of the HLA-DQ locus. This study confirms a causative role of EJM1 in the pathogenesis of idiopathic generalized seizures in the majority of German families of JME patients and refines a candidate region of 10.1 cM in the chromosomal region 6p21 between the flanking loci HLA-DQ and D6S1019. A possible explanation for the current controversial results in families of different populations might be ethnic variation of interfering polygenic effects that could be permissive for heterogeneous susceptibility alleles.

Alleles↗

Linkage analysis between idiopathic generalized epilepsies and the GABA(A) receptor alpha5, beta3 and gamma3 subunit gene cluster on chromosome 15.

INTRODUCTION: We tested the hypothesis that genetic variants within the GABA(A) alpha5, beta3 and gamma3 subunit gene cluster on chromosome 15q11-q13 confer genetic susceptibility to common subtypes of idiopathic generalized epilepsy (IGE). MATERIAL AND METHODS: Ninety-four families were selected from IGE patients with either juvenile myoclonic epilepsy (JME), juvenile (JAE) or childhood absence epilepsy (CAE). Cosegregation was tested between dinucleotide polymorphisms associated with the human GABA(A) alpha5, beta3 and gamma3 subunit gene cluster and three different IGE trait models. RESULTS: Evidence against linkage to the GABA(A) alpha5, beta3 and gamma3 subunit gene cluster was found in the entire family set and subsets selected from either CAE or JAE. In 61 families of JME patients, a maximum lod score (Zmax=1.40 at Theta(max)=0.00) was obtained for a broad IGE spectrum ("idiopathic" generalized seizure or generalized spike and wave discharges in the electroencephalogram) assuming genetic heterogeneity (alpha=0.37; P=0.06) and an autosomal recessive mode of inheritance. CONCLUSION: The possible hint of linkage in families of JME patients emphasizes the need for further studies to determine whether a recessively inherited gene variant within the GABA(A) alpha5, beta3 and gamma3 subunit gene cluster contributes to the pathogenesis of "idiopathic" generalized seizures and associated EEG abnormalities in a proportion of families.

Chromosomes, Human, Pair 15↗

Association analysis of a regulatory variation of the serotonin transporter gene with severe alcohol dependence.

The present study tested the hypothesis that the short, low activity variant of a biallelic polymorphism in the 5' regulatory region of the human serotonin transporter (5-HTT) gene confers susceptibility to severe alcohol dependence marked by severe withdrawal symptoms. Applying a phenotype-genotype strategy, our population-based association analysis included 216 German controls and an extreme sample of 103 severely affected alcoholics who were selected from 315 German alcohol-dependent subjects by a history of alcohol withdrawal seizure or delirium. The frequency of the short allele (S) was significantly increased in the severely affected alcoholics, compared with that in the controls (X2 = 3.87, df = 1, nominal p = 0.049). The post-hoc exploration indicated that this allelic association resulted exclusively from a significant excess of the S/S genotype in the severely affected alcoholics (p = 0.035), suggesting a recessively acting effect. Consistently, we found a weak but significant correlation (p = 0.013) between the frequency of the S/S genotype and severity of withdrawal symptoms (WDS): no WDS [18.3%, odds ratio (OR) = 1.16], vegetative WDS only (21.8%, OR = 1.44), and severe WDS with either withdrawal seizure only or delirium only (25.0%, OR = 1.69), and both withdrawal seizure and delirium (30.8%, OR = 2.30). Further studies are required to test whether the tentative genotype-phenotype relationship occurred by chance or reflects a real genotypic association between a recessively modifying effect of the short variant of the functional 5-HTT promoter polymorphism and alcohol withdrawal vulnerability.

Adult↗

Dopamine D2 receptor gene (DRD2) haplotypes in Caucasians.

The human dopamine D2 receptor gene (DRD2) is considered a candidate gene for neuro-psychiatric diseases. We typed three new DNA sequence variants in DRD2 intron 4, intron 6 and exon 8, in combination with the known TaqI A restriction fragment length polymorphism (RFLP) and exon 7 311Ser/Cys in 106 unrelated psychiatrically healthy Caucasians. Based on the genotypic data we delineated 10 distinct DRD2 haplotypes and their genetic relationship. Our data provide evidence that the Taq A1 allele and the 311Cys variant are components of different groups of haplotypes though both variants have been speculated to be associated with alcoholism or schizophrenia in recent studies. Therefore we conclude that the prior knowledge of the frequencies and genetic relationships of DRD2 haplotypes will lead to the selection of more suitable intragenic markers for future association studies.

Gene Frequency↗

Systematic screening for mutations in the human serotonin 1F receptor gene in patients with bipolar affective disorder and schizophrenia.

Using single strand conformational analysis we screened the complete coding sequence of the serotonin 1F (5-HT1F) receptor gene for the presence of DNA sequence variation in a sample of 137 unrelated individuals including 45 schizophrenic patients, 46 bipolar patients, as well as 46 healthy controls. We detected only three rare sequence variants which are characterized by single base pair substitutions, namely a silent T-->A transversion in the third position of codon 261 (encoding isoleucine), a silent C-->T transition in the third position of codon 176 (encoding histidine), and an C-->T transition in position -78 upstream from the start codon. The lack of significant mutations in patients suffering from schizophrenia and bipolar affective disorder indicates that the 5-HT1F receptor is not commonly involved in the etiology of these diseases.

Base Sequence↗

Common subtypes of idiopathic generalized epilepsies: lack of linkage to D20S19 close to candidate loci (EBN1, EEGV1) on chromosome 20.

Hereditary factors play a major role in the etiology of idiopathic generalized epilepsies (IGEs). A trait locus (EBN1) for a rare subtype of IGEs, the benign neonatal familial convulsions, and a susceptibility gene (EEGV1) for the common human low-voltage electroencephalogram have been mapped close together with D20S19 to the chromosomal region 20q13.2. Both loci are potential candidates for the susceptibility to IGE spectra with age-related onset beyond the neonatal period. The present study tested the hypothesis that a putative susceptibility locus linked to D20S19 predisposes to spectra of IGEs with age-related onset from childhood to adolescence. Linkage analyses were conducted in 60 families ascertained through IGE patients with juvenile myoclonic epilepsy, juvenile absence epilepsy or childhood absence epilepsy. Our results provide evidence against linkage of a putative susceptibility gene for four hierarchically broadened IGE spectra with D20S19 assuming tentative single-locus genetic models. The extent of an "exclusion region" (lod scores below-2) varied from 0.5 cM up to 22 cM on either side of D20S19 depending on the trait assumed. These results are contrary to the expectation that a susceptibility gene in vicinity to D20S19 confers a common major gene effect to the expression of IGE spectra with age-related onset from childhood to adolescence.

Chromosome Mapping↗

Exclusion of linkage between idiopathic generalized epilepsies and the GABAA receptor alpha 1 and gamma 2 subunit gene cluster on chromosome 5.

Hereditary factors play a major role in the etiology of idiopathic generalized epilepsies (IGEs). The pivotal function of ionotropic gamma-aminobutyric acid type A receptors (GABRs) in inhibitory neurotransmission in the mammalian central nervous system suggests that they may be involved in epileptogenesis and genetic predisposition to IGEs. Dinucleotide repeat polymorphisms associated with the human GABAA receptor alpha 1 (GABRA1) and gamma 2 subunit (GABRG2) gene cluster on chromosome 5q32-q35 offer the opportunity to test whether these candidate genes confer susceptibility to IGEs. Our linkage analyses in 63 families ascertained through IGE patients with either juvenile myoclonic epilepsy, juvenile absence epilepsy or childhood absence epilepsy do not support the hypothesis that variants within the GABRA1 and GABRG2 gene cluster contribute a frequent major gene effect to the expression of the common familial IGEs.

Base Sequence↗

Lack of linkage between idiopathic generalized epilepsies and the gene encoding the neural cell adhesion molecule.

Hereditary factors play a major role in the etiology of idiopathic generalized epilepsies (IGEs). The frequent neuropathological occurrence of microdysgeneses in the brain of IGE patients implies that genes regulating neural migration and cell adhesion might be involved in epileptogenesis of age-related generalized seizures. Our present linkage study tested the hypothesis that DNA sequence variants associated with the gene encoding the neural cell adhesion molecule (NCAM) confer genetic susceptibility to IGE traits in 57 families ascertained through patients with either juvenile myoclonic epilepsy, juvenile or childhood absence epilepsy. Our consistently negative results provide evidence against a common major effect of NCAM gene variants to the expression of IGEs with age-related onset from childhood to adolescence.

Adult↗

The genetics of idiopathic generalized epilepsy: implications for the understanding of its aetiology.

Epilepsy is one of the most common neurological disorders. Both inherited and acquired factors contribute to its multifactorial pathogenesis. A genetic predisposition plays a major role in the aetiology of the common idiopathic generalized epilepsies. Susceptibility genes for two syndromes of idiopathic generalized epilepsies, the benign familial neonatal convulsions and juvenile myoclonic epilepsy, have been assigned to the chromosomal regions 20q13 (EBN1), 8q24 (EBN2) and 6p21 (EJM1). Positional cloning of the mutations causing these traits will help to elucidate the molecular pathways of epileptogenesis and will imply a classification on a neurobiological basis. Insights into the underlying impairment of neuronal excitability should provide new concepts for the development of rational treatment strategies.

Animals↗

No association of the structural dopamine D2 receptor (DRD2) variant 311Cys with alcoholism.

The human dopamine D2 receptor (DRD2) has been implied in the vulnerability for alcoholism and/or the modification of its severity. This is supported through animal experimental and pharmacological data. We analyzed the DRD2 311Ser/Cys polymorphism in 312 German alcoholics and 131 ethnically matched controls to investigate the association of genetic DRD2 variants with alcoholism or clinical characteristics of homogeneous subgroups of alcoholics. We observed no association between the 311Cys variant and alcoholism, and none of the clinical characteristics evaluated was significantly associated with 311Cys. The allele frequencies of the 311Cys variant were 0.026 and 0.031 in the alcoholics and controls, respectively. These are the highest reported 311Cys frequencies in Caucasians. The DRD2 TaqI A1/A2 restriction fragment length polymorphism was analyzed simultaneously in our samples. In most cases, the 311Cys allele is associated with the TaqI A2-allele. Data do not suggest a clinical relevance of the 311Cys variant in alcoholism. However, the relevance of this variant in other diseases or the existence of other DRD2 variants with altered receptor function or expression cannot be excluded.

Adult↗

Lack of allelic association of dopamine D1 and D2 (TaqIA) receptor gene polymorphisms with reduced dopaminergic sensitivity to alcoholism.

Our study tested the hypothesis of whether the sensitivity of central dopamine receptors corresponds to the genotypic constitution of DNA-polymorphisms of the dopamine D1 and D2 receptor (DRD1, DRD2) genes and is associated with poor treatment outcome. Therefore, 97 alcohol-dependent patients were assessed according to their sensitivity of central dopamine receptors (apomorphine-induced secretion of growth hormone), clinical outcome during a 6-month observation period, and genotypic constitution of the TaqIA restriction fragment length polymorphism (RFLP) at the DRD2 locus and of the Bsp1286I RFLP at the DRD1 locus. On the 1st day of detoxification, dopamine receptor hyposensitivity was found in treatment nonresponders, but not in responders. Apomorphine-induced growth hormone release did not differ significantly in alcoholics with different genotypes of the DRD1 and DRD2 RFLPs. Neither did we find a significant allelic association with treatment response. Thus, we did not find evidence for a genetic determination of dopamine receptor hyposensitivity in alcoholics with poor treatment outcome.

Adult↗

The phenotypic spectrum related to the human epilepsy susceptibility gene "EJM1".

Linkage studies of families ascertained through patients with juvenile myoclonic epilepsy (JME) suggest that an HLA-linked susceptibility gene on chromosome 6, designated "EJM1," predisposes to a group of idiopathic generalized epilepsies (IGEs) comprising JME, juvenile absence epilepsy (JAE), childhood absence epilepsies (CAE), and epilepsies with generalized tonic-clonic seizures (GTCS). To explore the EJM1-related phenotypic spectrum, we conducted linkage studies with HLA-DQ alpha restriction fragment length polymorphisms in 44 families ascertained through patients with CAE or JAE. Our results for the entire group of families provide evidence against a major susceptibility locus for idiopathic absence epilepsies and broader spectra of IGEs in the HLA region. Lod scores less than -2 were obtained for a region from 10 cM up to 23 cM on either side of the HLA-DQ alpha locus, depending on the assumed trait model. Suggestive evidence for linkage was found only for a subgroup of families with JME patients assuming an autosomal dominant mode of inheritance with 70% penetrance. A maximum lod score was obtained when family members with JME, JAE, CAE, and idiopathic GTCS were included into the affection status. Our results demonstrate that (1) the genetic susceptibility to idiopathic absence epilepsies and broader spectra of IGEs is heterogeneous, (2) the gene effect of EJM1 depends on the familial genetic background, and (3) EJM1 confers genetic susceptibility to idiopathic absence epilepsies and broader spectra of IGEs in the presence of family members with JME.

Disease Susceptibility↗

Dopamine D1, D2 and D3 receptor genes in alcohol dependence.

Hereditary factors play a substantial role in the etiology of alcohol dependence. Alcohol mediates its reinforcing effects by an activation of the mesolimbic dopamine system. These findings suggest that the genes encoding the dopamine receptor (DR) subtypes represent high-ranking candidates for susceptibility genes to addictive disorders. Our present population-based association study investigated whether sequence variants of the dopamine D1, D2 and D3 receptor genes confer susceptibility to alcohol dependence in 278 alcoholics, and clinically more homogeneous subgroups ascertained through positive family history, early age at onset, delirium, withdrawal seizures and antisocial tendencies. No evidence for an allelic association was found for the PCR-based TaqA RFLP fo the DRD2 gene and a Bsp1286I RFLP of the DRD1 gene. Without correction for multiple testing, we found a significantly increased allele frequency of a common DRD3 gene variant expressing a serine at position 9 in the extracellular N-terminal part of the receptor protein in 55 alcohol-dependent individuals with delirium (chi 2 = 4.1, df = 1, p = 0.042). Further studies have to examine whether this amino acid substitution or a nearby mutation confers genetic susceptibility to at least a subgroup of alcohol-dependent individuals with delirium.

Adult↗