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G Stöber

Publications and source records attributed to G Stöber.

At least 37 records · Page 2Linked to original sources

Splitting schizophrenia: periodic catatonia-susceptibility locus on chromosome 15q15.

The nature of subtypes in schizophrenia and the meaning of heterogeneity in schizophrenia have been considered a principal controversy in psychiatric research. We addressed these issues in periodic catatonia, a clinical entity derived from Leonhard's classification of schizophrenias, in a genomewide linkage scan. Periodic catatonia is characterized by qualitative psychomotor disturbances during acute psychotic outbursts and by long-term outcome. On the basis of our previous findings of a lifetime morbidity risk of 26.9% of periodic catatonia in first-degree relatives, we conducted a genome scan in 12 multiplex pedigrees with 135 individuals, using 356 markers with an average spacing of 11 cM. In nonparametric multipoint linkage analyses (by GENEHUNTER-PLUS), significant evidence for linkage was obtained on chromosome 15q15 (P = 2.6 x 10(-5); nonparametric LOD score [LOD*] 3.57). A further locus on chromosome 22q13 with suggestive evidence for linkage (P = 1.8 x 10(-3); LOD* 1.85) was detected, which indicated genetic heterogeneity. Parametric linkage analysis under an autosomal dominant model (affecteds-only analysis) provided independent confirmation of nonparametric linkage results, with maximum LOD scores 2.75 (recombination fraction [theta].04; two-point analysis) and 2.89 (theta =.029; four-point analysis), at the chromosome 15q candidate region. Splitting the complex group of schizophrenias on the basis of clinical observation and genetic analysis, we identified periodic catatonia as a valid nosological entity. Our findings provide evidence that periodic catatonia is associated with a major disease locus, which maps to chromosome 15q15.

Catatonia↗

Linkage and family-based association study of schizophrenia and the synapsin III locus that maps to chromosome 22q13.

The human synapsin III gene (synapsin III) is a member of a neuron-specific phosphoprotein gene family involved in short-term neurotransmitter release. We mapped synapsin III to chromosomal region 22q13 (13.1-13.31) by fluorescence in situ hybridization, a region that has been identified as a potential schizophrenia susceptibility locus. The dinucleotide repeat marker D22S280 located in intron 5 of synapsin III was genotyped in a linkage and family-based association study to assess the role of the synapsin III locus in the etiology of schizophrenia. In 12 pedigrees with periodic catatonia comprising 135 individuals, we found exclusion of linkage of marker D22S280 using lod score analysis with autosomal dominant/recessive models as well as affected only LOD score methods with dominant/recessive models. In a family-based association study of 61 unrelated parent-offspring trios with schizophrenia (according to the the Diagnostic and Statistical Manual of Mental Disorders, fourth edition [DSM-IV, American Psychiatric Association, 1994]), we found no association of individual D22S280 alleles to disease. Results of a multiallelic transmission/disequilibrium test (TDT(max) = 3.00; P = 0.55) challenged the possibility that D22S280 alleles appear with DSM-IV schizophrenia more frequently than expected. In addition, no evidence for gender differences or parent-of-origin effects were found. Thus, the synapsin III locus at chromosome 22q13 is not likely to contain a schizophrenia susceptibility gene.

Adult↗

[Differential diagnosis, course and outcome of postpartum psychoses. A catamnestic investigation].

In a polydiagnostic study, a systematically recruited collective of 34 women with a first-episode postpartum psychosis was reexamined after a period of 6-26 years (averaging 12.6 years) in order to establish lifetime-diagnoses according to ICD-10 and Leonhard's classification, and to determine course and outcome. According to ICD-10, unipolar depressive disorders (32%) and acute polymorphous psychotic disorders (28%) represented the most frequent diagnoses. Applying Leonhard's classification revealed a marked predominance of cycloid psychoses (62%) with the subform of motility psychosis being the most frequent diagnosis (38%). Schizophrenias occurred rarely according to both classifications. Investigating the long-term course, we found in 59% multiphasic disorders. The mean number of episodes per patient was 2.5 (range 2-6) with a mean duration of 9.8 weeks (SD = 5.2). 6 patients (18%) had undergone a monophasic course, in 4 cases (12%) the course was not determinable. 17 women (50%) had 19 further deliveries during the follow-up period. The frequency of relapses in connection with a further delivery was 47%. Administering the Strauss-Carpenter-Outcome-Scale revealed a favourable outcome with a mean value of 14.1 (SD = 2.83) for our total sample. Only 4 patients (12%) had never recovered fully since the onset of the illness. Our findings suggest that cycloid psychoses, in particular motility psychoses, account for the majority of postpartum psychoses, and do not support the hypothesis of a nosological independence of postpartum psychoses. They provide further evidence of a favourable prognosis of severe postpartum psychiatric disorder despite a relatively high rate of non-puerperal and especially puerperal relapses.

Adult↗

hKCNN3 which maps to chromosome 1q21 is not the causative gene in periodic catatonia, a familial subtype of schizophrenia.

The human calcium-activated potassium channel gene (hKCNN3, hSKCa3) contains two tandemly arranged, multiallelic CAG repeats located in exon 1 which result in short to moderate polyglutamine stretches of unknown functional significance. Case-control and family-based association studies suggested an association of hKCNN3 repeats with susceptibility for schizophrenia. Twelve multiplex pedigrees with periodic catatonia, a schizophrenia subtype with major gene effect and patterns of anticipation, were genotyped using the multiallelic hKCNN3 repeat polymorphism. Using a dominant model of inheritance with sex- and age-dependent penetrance classes, cumulative results showed exclusion of linkage of hKCNN3 to periodic catatonia under the assumption of genetic homogeneity with lod score of -48.01 at zero recombination fraction. Our results provide evidence that hKCNN3 is not the causative gene in the familial schizophrenia subtype of periodic catatonia. By fluorescent in situ hybridization we confirmed the assignment of hKCNN3 to chromosome 1q21 near the heterochromatin region. Linkage mapping showed segregation with marker D1S498 (theta = 0.05) and placed hKCNN3 in the genetic linkage map in a cluster of genes near the centromeric region of chromosome 1.

Adult↗

Pharmacological properties of naturally occurring variants of the human norepinephrine transporter.

The human norepinephrine transporter (hNET) gene has five sequence polymorphisms that predict amino acid substitutions in the transporter protein: Val69Ile, Thr99Ile, Val245Ile, Val449Ile, and Gly478Ser. In order to functionally characterize the naturally occurring transporter variants, we used site-directed mutagenesis to establish the hNET variants and compared some basic pharmacological properties (uptake of norepinephrine and its inhibition by the tricyclic antidepressant desipramine) in COS-7 cells transiently expressing variant hNETs and wild-type hNET. None of the hNET variants displayed changes in the potency (Ki) of desipramine for inhibition of norepinephrine uptake. Furthermore, variants Val69Ile, Thr99Ile, ValZ45Ile, and Val449Ile did not affect kinetic constants (Km, Vmax) of norepinephrine uptake. However, COS-7 cells expressing the hNET variant Gly478Ser displayed an approximately four-fold increase in the Km for norepinephrine, while the Vmax was unaffected. The increase in the Km, which is equivalent to a four-fold reduction in the affinity of the variant hNET for its natural substrate norepinephrine, indicates that the glycine in position 478 is part of a substrate recognition domain. The reduced clearance of released norepinephrine by reuptake through the Gly478Ser variant might cause an increase in the synaptic and the circulating concentration of norepinephrine. Elevated norepinephrine concentrations have been associated with human diseases and it will be interesting to explore a possible contribution by the Gly478Ser variant to certain disease states.

Amino Acid Substitution↗

Exonic variants of the GABA(B) receptor gene and panic disorder.

The enhancement of GABAergic neurotransmission has been closely linked to antipanic drug efficacy. This is the first study to investigate a putative association of exonic sequence variants of the human GABA(B) receptor 1 (GABA(B)R1) gene and susceptibility to panic disorder. Three DNA sequence variants in exons 1a1, 7 and 11 were assessed by polymerase chain reaction-based restriction fragment length polymorphism in a case-control study among patients with panic disorder with and without agoraphobia (DSM III-R criteria) and blood donors. There was no indication of an increased vulnerability to panic disorder or agoraphobia with respect to the allelic variants under study.

Agoraphobia↗

Polymorphic MAO-A and 5-HT-transporter genes: analysis of interactions in panic disorder.

Recurrent panic attacks, anticipatory anxiety and phobic avoidance characterise panic disorder. The influence of genetic factors on liability to the disease has been the object of several linkage and association studies and appears to relate to an oligo- or polygenic rather than a monogenic mode of inheritance. Recently, an excess of high activity monoamine oxidase A (MAO-A) gene promoter alleles was found in female patients with panic disorder. An analysis of possible synergistic effects of the MAO-A gene promoter variant and the short serotonin transporter (5-HTT) gene promoter variant in panic disorder was performed in a German and an Italian sample (combined panic disorder n = 144, combined controls n = 175). There was no significant difference in odds ratios, suggesting that the observed increase of genetic liability by the long MAO-A gene promoter allele is not modified by the 5-HTT gene promoter polymorphism.

Adult↗

Functional PAX-6 gene-linked polymorphic region: potential association with paranoid schizophrenia.

BACKGROUND: Early differentiation of the nervous system and adult CNS neuroplasticity is modulated by PAX-6. We have shown previously that a highly polymorphic, functional AC/AG repeat in the 5' regulatory region of the gene showed significantly increased promoter activity, if containing > or = 29 repeats, and that the heterozygous genotype (< or = 28/> or = 29) revealed increased mRNA PAX-6 levels in human brain tissue compared to the homozygous short variant. METHODS: In a case-control study of 655 unrelated individuals, allele frequencies and genotype distributions of the functional PAX-6 promoter polymorphism were investigated comprising patients with DSM-IV schizophrenia, patients with affective disorders, and population controls. RESULTS: No allelic or genotypic association of the PAX-6 promoter polymorphism to affective disorder or to schizophrenia as one disease entity was observed. After subtyping schizophrenia into paranoid and nonparanoid forms, potential evidence was found for a genotypic association of the high-activity variant with the paranoid subtype of schizophrenia (p = .02). The estimated odds ratio was 1.7 (95% CI .98 to 2.95) for those heterozygous and 1.4 (95% CI .82 to 2.42) for those heterozygous or homozygous for the high-activity variant compared to the homozygous low-activity variant. CONCLUSIONS: Our finding indicates that early developmental genes may be involved in the etiopathogenesis of schizophrenia subtypes via variable transcriptional regulation in the developing and adult human brain.

Adult↗

Tourette syndrome and the norepinephrine transporter gene: results of a systematic mutation screening.

Tourette syndrome (TS) is a complex inherited neuropsychiatric disorder characterized by multiple motor and phonic tics. Involvement of central norepinephrine mechanisms is suggested by central norepinephrinic hyperactivity in patients with TS and by the therapeutic effects of the presynaptic alpha2-adrenergic agonist clonidine. The norepinephrine transporter gene (NET) was systematically screened by single-strand conformation analysis for genetic variants, including the whole coding region and adjacent exon-intron boundaries in 43 patients with TS and 46 healthy controls. We detected 12 DNA sequence variants, among them four missense mutations (Val69Ile, Thr99Ile, Va1245Ile, and Gly478Ser). The observed missense mutations may alter conformational rearrangements during gating of the transporter, assembly of subunits, and norepinephrine-specific uptake affinity. Allele frequency and genotype distribution of the genetic variants showed no differences between TS patients and controls. No mutation of likely functional significance was found that distinguished TS patients from healthy controls, indicating that genetic variants of the NET gene are not causally related to Tourette syndrome.

Adolescent↗

Functional characterization of the human PAX3 gene regulatory region.

Spatiotemporal expression of the PAX3 gene is tightly regulated during development. We have isolated and sequenced the 5'-flanking regulatory region of human PAX3. Primer extension and ribonuclease protection mapping revealed that transcription is initiated from a single start site downstream of a TATA-like motif in human brain and peripheral tissues. Functional dissection of the gene's 5'-flanking region, which had been fused to a luciferase reporter gene and transiently expressed in rhabdomyosarcoma (RD) and cos-7 cells, indicated that the upstream region of PAX3 contains multiple positive and negative cis-acting regulatory elements. While the basal promoter is likely to be driven by two CCAAT boxes located at nucleotide positions -90 and -135, a cluster of regulatory elements acting as a strong repressor was detected between nucleotides -1200 and -650. Comparison of human and murine sequences revealed more than 90% identity in this segment. A polymorphic (CA)n repeat sequence and a G/C substitution are located 337 bp and 328 bp upstream of the transcription start site, respectively. PCR-based systematic screening for length variations in 225 unrelated individuals of a Caucasian population showed a bimodal distribution of multiple alleles containing between 13 and 30 repeat units. Although the (CA)25 variant of this PAX3 gene-linked polymorphic region (PAX3LPR) conferred lower transcriptional efficiency on the PAX3 promoter, a regulatory impact of the PAX3LPR on PAX3 expression related to brain plasticity and function remains to be demonstrated.

Alleles↗

[Agenesis septum pellucidum in a schizophrenic patient].

Absence of the septum pellucidum is a rare developmental disorder of the human brain. Previous reports focused on the association with other cerebral anomalies. We present MRI scans showing an isolated absence of the septum pellucidum. The patient was suffering from a schizophrenic psychosis. Mental retardation or epileptic seizures, which are often found in more complex developmental brain disorders, were not observed. The septal area is part of the limbic system and aplasia of the septum pellucidum could indicate developmental anomalies of the limbic system. The concept of cerebral maldevelopment and the limbic system in schizophrenic psychosis is discussed.

Adolescent↗

Mosaicism for a serotonin transporter gene promoter-associated deletion: decreased recombination in depression.

Transcriptional activity of the human serotonin transporter gene (5HTT) is modulated by complex interaction of multiple genomic and cellular factors. Variability of a polymorphic repetitive element (5HTTLPR) is associated with anxiety, depression, and aggression-related traits and may influence the risk to develop affective spectrum disorders. 5HTTLPR variants display a unique DNA secondary structure that has the potential to regulate the transcriptional activity of the associated 5HTT promoter. The structure of the 5HTTLPR is also likely to precipitate a 381-bp somatic deletion in the 5HTT's promoter region [del(17)(q11.2)] that is observed in 20-60% of genomic DNA isolated from mononuclear blood cells and postmortem brain. The localization of the deletion breakpoints adjacent to identical putative signal sequences (CAGCC) suggests a V(D)J recombinase-like rearrangement event. In comparison with healthy controls, del(17)(q11.2)/wildtype sequence ratios showed a decrease of the deleted variant in recurrent unipolar depression. Our results also suggest that mosaicism of del(17)(q11.2) is likely to be regulated by tissue-specific as well as 5HTTLPR-dependent mechanisms. The findings confirm that the pericentric region of human chromosome 17 is highly unstable and furnishs additional evidence for intricate complexity of 5HTT regulation under physiological condition and in disease.

Adult↗

Schizophrenia and complications of pregnancy and labor: an individual patient data meta-analysis.

Several epidemiological studies have reported an association between complications of pregnancy and delivery and schizophrenia, but none have had sufficient power to examine specific complications that, individually, are of low prevalence. We, therefore, performed an individual patient meta-analysis using the raw data from case control studies that used the Lewis-Murray scale. Data were obtained from 12 studies on 700 schizophrenia subjects and 835 controls. There were significant associations between schizophrenia and premature rupture of membranes, gestational age shorter than 37 weeks, and use of resuscitation or incubator. There were associations of borderline significance between schizophrenia and birthweight lower than 2,500 g and forceps delivery. There was no significant interaction between these complications and sex. We conclude that some abnormalities of pregnancy and delivery may be associated with development of schizophrenia. The pathophysiology may involve hypoxia and so future studies should focus on the accurate measurement of this exposure.

Case-Control Studies↗

Peripheral-type benzodiazepine receptors in diagnostic subtypes of schizophrenic patients.

The peripheral-type benzodiazepine receptor (pBZD-R; also called the omega-3 receptor or the mitochondrial benzodiazepine receptor) seems to play a critical role in the production of neurosteroids, which are able to alter the electrical properties of neuronal membranes and thus the firing patterns of neurons. Putative endogenous ligands are the diazepam-binding inhibitor and its processing products, as well as porphyrins, some of them, in the case of porphyria, are well known to give rise to certain aspects of neuropsychiatric disorders, such as schizophrenic-like symptoms. Previous findings of altered benzodiazepine binding sites in post-mortem brain samples and platelets from small samples of schizophrenic patients have been inconclusive. Therefore we investigated characteristic binding parameters (Bmax, Kd) of the granulocytic pBZD-R by using the selective ligand PK11.195 in 53 subjects, fulfilling ICD-10 and DSM-IV criteria of schizophrenia. The binding parameters in our total group of 53 schizophrenic patients did not differ from those in healthy subjects. However, Bmax values were significantly reduced in schizophrenic patients with predominantly negative symptoms (residual type) compared to schizophrenic patients with predominantly positive symptoms, i.e. paranoid (-50%) and catatonic subtype (-38%). Moreover, only residual type schizophrenics exhibited a significantly reduced binding capacity compared to healthy subjects (-38%). More studies are warranted to clarify the functional significance of this binding site in the pathogenesis of negative symptoms.

Adult↗

Short CAG repeats within the hSKCa3 gene associated with schizophrenia: results of a family-based study.

In a family-based association study we investigated transmission of a multiallelic CAG repeat in a novel neuronal potassium channel gene, hSKCa3, in 59 parent/ offspring trios. In contrast to recent reports of an association of moderately large repeats with schizophrenia in case-control studies, our findings indicate that short CAG repeats (< or=19 repeats) are transmitted at an increased frequency to schizophrenic offspring (p=0.014), particularly among familial cases (p=0.007). No evidence for a parent-of-origin effect was found. Multiallelic TDT procedure showed no association of individual CAG repeats to schizophrenia. Further studies using family-based designs should clarify whether hSKCa3 is a susceptibility factor to schizophrenia or co-segregates with a major disease gene in tight linkage.

Adolescent↗

A promoter-associated polymorphic repeat modulates PAX-6 expression in human brain.

The PAX-6 gene plays a critical role in neurodevelopment and brain plasticity. While transcription of human PAX-6 is regulated by alternate usage of two distinct promoters termed A and B, expression in adult human brain is primarily controlled by promoter B. We now report that a novel polymorphic dinucleotide repeat sequence with the structure (AC)m(AG)n is located approximately 1 kb upstream of the transcription initiation site associated with promoter B. PCR-based systematic screening for length variations in a caucasian population showed a skewed distribution of multiple alleles containing between 24 and 36 repeat units. In 217 unrelated individuals, the frequency of alleles in the range between 25 and 29 repeats was 90%, with the 26 repeat allele alone accounting for 50%; the heterozygosity rate was 65%. Variants of this PAX-6 gene-linked polymorphic region (PAX-6LPR) had different transcriptional efficiencies when fused to a luciferase reporter gene and transfected into Cos-7 cells. Promoter activity of variants with >/=29 repeats was 4- to 9-fold higher than that of the 26 repeat allele. The influence of the PAX-6LPR on PAX-6 expression was confirmed in postmortem cerebellum from individuals with different genotypes. mRNA levels were 2-fold higher in genotypes with long alleles compared to those with short alleles. Allelic variation in PAX-6 expression may be a determinant of interindividual differences in brain plasticity and function.

Alleles↗

High ethanol tolerance in young adults is associated with the low-activity variant of the promoter of the human serotonin transporter gene.

Central serotonergic neurotransmission has been implicated in the aetiology of ethanol tolerance and dependence. Cellular expression of the serotonin transporter and serotonin reuptake is modulated via a polymorphic, repetitive element in the 5'-flanking regulatory region of the serotonin transporter gene (5-HTTLPR). We report the association of the low-activity, short variant of the 5-HTTLPR with high ethanol tolerance among young adults in a case-control association study (n = 713). The low-activity 5-HTTLPR showed a significantly increased allele frequency (chi2 = 7.30; df = 2; P = 0.007) and genotype frequency among young adults (< or =26 years) with high ethanol tolerance homozygous for the short allele (chi2 = 7.58; df = 1; P = 0.02). The estimated odds ratio for the homozygous short variant compared to the homozygous long variant was 2.82 (95% CI 1.30-6.11). This indicates that the low-activity 5-HTTLPR may be involved in the neuronal mechanisms responsible for ethanol tolerance and dependence.

Adult↗