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Biomedical subjects

Harvey S Singer

Publications and source records attributed to Harvey S Singer.

At least 19 recordsLinked to original sources

Distinct patterns of de novo coding variants contribute to Tourette Syndrome etiology.

Tourette syndrome (TS) is a highly heritable childhood-onset neuropsychiatric disorder characterized by persistent motor and vocal tics. While both common and rare variants contribute to TS susceptibility, the role of rare de novo mutations (DNMs) remains incompletely characterized. Here, we report findings from the largest TS whole-exome sequencing study to date, analyzing 1,466 TS trios alongside 6,714 autism spectrum disorder (ASD) trios and 5,880 unaffected sibling controls from the Simons Simplex Collection (SSC) and SPARK cohorts. Leveraging a trio-based design across these cohorts enabled calibrated assessment of DNM burden while controlling for background mutation rates. We observed a significant exome-wide enrichment of protein-truncating DNMs in TS probands, particularly within genes intolerant to loss-of-function variation (pLI ≥ 0.9), with little contribution from damaging missense variants. Notably, TS probands did not exhibit enrichment in previously implicated ASD or developmental delay (DD) genes, but elsewhere in the genome, suggesting a distinct rare variant architecture. Using a Bayesian statistical framework that integrates both de novo and rare inherited coding variants, we identified three candidate TS risk genes with FDR ≤ 0.05: PPP5C , EXOC1 , and GXYLT1 . Literature shows that they have prior links to neurodevelopmental and psychiatric disorders. These findings reveal a rare variant burden in TS that is genetically distinguishable from ASD, underscore the importance of loss-of-function mutations in TS risk, and nominate novel candidate genes for future functional investigation.

Journal Article↗

Dopaminergic polymorphisms in Tourette syndrome: association with the DAT gene (SLC6A3).

Tourette syndrome (TS) is a chronic neuropsychiatric disorder characterized by involuntary motor and phonic tics. The pattern of inheritance and associated genetic abnormality has yet to be fully characterized. A dopaminergic abnormality in this disorder is supported by response to specific therapies, nuclear imaging, and postmortem studies. In this protocol, dopaminergic polymorphisms were examined for associations with TS and attention-deficit hyperactivity disorder (ADHD). Polymorphisms investigated included the dopamine transporter (DAT1 DdeI and DAT1 VNTR), dopamine receptor (D4 Upstream Repeat and D4 VNTR), dopamine converting enzyme (dopamine beta-hydroxylase), and the acid phosphatase locus 1 (ACP1) gene. DNA was obtained from 266 TS individuals +/- ADHD and 236 controls that were ethnicity-matched. A significant association, using a genotype-based association analysis, was identified for the TS-total and TS-only versus control groups for the DAT1 DdeI polymorphism (AG vs. AA, P = 0.004 and P = 0.01, respectively). Population structure, estimated by the genotyping of 27 informative SNP markers, identified 3 subgroups. A statistical re-evaluation of the DAT1 DdeI polymorphism following population stratification confirmed the association for the TS-total and TS-only groups, but the degree of significance was reduced (P = 0.017 and P = 0.016, respectively). This study has identified a significant association between the presence of TS and a DAT polymorphism. Since abnormalities of the dopamine transporter have been hypothesized in the pathophysiology of TS, it is possible that this could be a functional allele associated with clinical expression.

Adolescent↗

Maternal antibrain antibodies in autism.

Autism is a neurodevelopmental disorder of prenatal onset that is behaviorally defined. There is increasing evidence for systemic and neuroimmune mechanisms in children with autism. Although genetic factors are important, atypical prenatal maternal immune responses may also be linked to the pathogenesis of autism. We tested serum reactivity in 11 mothers and their autistic children, maternal controls, and several groups of control children, to prenatal, postnatal, and adult rat brain proteins, by immunoblotting. Similar patterns of reactivity to prenatal (gestational day 18), but not postnatal (day 8) or adult rat brain proteins were identified in autistic children, their mothers, and children with other neurodevelopmental disorders, and differed from mothers of normal children, normal siblings of children with autism and normal child controls. Specific patterns of antibody reactivity were present in sera from the autism mothers, from 2 to 18 years after the birth of their affected children and were unrelated to birth order. Immunoblotting using specific antigens for myelin basic protein (MBP) and glial acidic fibrillary protein (GFAP) suggests that these proteins were not targets of the maternal antibodies. The identification of specific serum antibodies in mothers of children with autism that recognize prenatally expressed brain antigens suggests that these autoantibodies could cross the placenta and alter fetal brain development.

Adolescent↗

Antibrain antibodies in children with autism and their unaffected siblings.

Serum autoantibodies to human brain, identified by ELISA and Western immunoblotting, were evaluated in 29 children with autism spectrum disorder (22 with autistic disorder), 9 non-autistic siblings and 13 controls. More autistic subjects than controls had bands at 100 kDa in caudate, putamen and prefrontal cortex (p<0.01) as well as larger peak heights of bands at 73 kDa in the cerebellum and cingulate gyrus. Both autistic disorder subjects and their matched non-autistic siblings had denser bands (peak height and/or area under the curve) at 73 kDa in the cerebellum and cingulate gyrus than did controls (p<0.01). Results suggest that children with autistic disorder and their siblings exhibit differences compared to controls in autoimmune reactivity to specific epitopes located in distinct brain regions.

Autistic Disorder↗

Norepinephrine transporter polymorphisms in Tourette syndrome with and without attention deficit hyperactivity disorder: no evidence for significant association.

Noradrenergic abnormalities have been proposed in the pathophysiology of Tourette syndrome and attention-deficit hyperactivity disorder. Patients with Tourette syndrome with (n=115) and without (n=110) attention-deficit hyperactivity disorder were evaluated for association with two single nucleotide polymorphisms of the norepinephrine transporter gene (SLC6A2); a T-182C single nucleotide polymorphism located in the 5' flanking promoter region and a silent mutation (G1287A) occurring in exon 9. A polymerase chain reaction restriction enzyme assay was developed for the T-182C single nucleotide polymorphism based on a prior sequencing methodology. In this case-control study, no association was identified between either polymorphism and Tourette syndrome or attention-deficit hyperactivity disorder. In a small subset, these NET polymorphisms did not predict therapeutic response to the noradrenergic transporter inhibitor atomoxetine. Further research with additional NET polymorphisms and larger sample sizes are indicated in the pursuit of biomarkers for therapeutic responders.

Attention Deficit Disorder with Hyperactivity↗

Behavioral therapy for treatment of stereotypic movements in nonautistic children.

Although typically described in autistic, mentally retarded, and sensory-deprived individuals, motor stereotypies also occur in normal children. In this preliminary report, the behavior modification techniques of habit reversal and differential reinforcement of other behavior were evaluated as a therapeutic modality for the suppression of stereotypic movements in nonautistic subjects. Twelve children, ages 6 to 14 years, with physiologic stereotypies were treated using a standardized treatment protocol. Clinical outcomes were based on differences between assessments obtained at baseline and on telephone follow-up. Evaluation scales included measures of the frequency, intensity, interference, and number of stereotypies (Stereotypy Severity Scale motor portion and Stereotypy Linear Analog Scale) and assessment of global function (Child Global Assessment Scale and Stereotypy Severity Scale global portion). The results were correlated with the child's level of motivation and the number of treatment sessions. After a mean follow-up of 12.1 months, motor stereotypies showed significant improvement on the Stereotypy Linear Analog Scale and Stereotypy Severity Scale total score, P = .009 and P = .046, respectively. Both scales showed a relationship between the number of treatment sessions attended and a reduction in movements. The Child Global Assessment Scale also improved with therapy, but there was no correlation with the number of treatment sessions. Highly motivated patients had greater improvement on the Stereotypy Linear Analog Scale and Stereotypy Severity Scale scales compared with less motivated patients, but motivation had no impact on the Child Global Assessment Scale. The combined use of habit reversal and differential reinforcement of other behavior is beneficial in reducing motor stereotypies in nonautistic children.

Adolescent↗

Tic disorders: neural circuits, neurochemistry, and neuroimmunology.

The neuroanatomy and neurochemistry underlying tic disorders are thought to involve corticostriatothalamocortical circuits and dysregulation of their component neurotransmitter systems. Tourette syndrome is a tic disorder that begins in childhood and follows a waxing and waning course of tic severity. Although it is generally believed to have a genetic component, its etiology has not been fully elucidated. The clinical entity pediatric autoimmune neuropsychiatric disorders associated with streptococcal infection (PANDAS) has led some to suggest that the pathophysiology of tics in some individuals might involve a postinfectious autoimmune component. We review the neural circuits and neurochemistry of Tourette syndrome and evaluate the evidence for and against a role for autoimmunity in the expression of tics.

Animals↗

Sequence variants in SLITRK1 are associated with Tourette's syndrome.

Tourette's syndrome (TS) is a genetically influenced developmental neuropsychiatric disorder characterized by chronic vocal and motor tics. We studied Slit and Trk-like 1 (SLITRK1) as a candidate gene on chromosome 13q31.1 because of its proximity to a de novo chromosomal inversion in a child with TS. Among 174 unrelated probands, we identified a frameshift mutation and two independent occurrences of the identical variant in the binding site for microRNA hsa-miR-189. These variants were absent from 3600 control chromosomes. SLITRK1 mRNA and hsa-miR-189 showed an overlapping expression pattern in brain regions previously implicated in TS. Wild-type SLITRK1, but not the frameshift mutant, enhanced dendritic growth in primary neuronal cultures. Collectively, these findings support the association of rare SLITRK1 sequence variants with TS.

3' Untranslated Regions↗

Serum autoantibodies do not differentiate PANDAS and Tourette syndrome from controls.

BACKGROUND: An autoimmune-mediated mechanism has been proposed for both pediatric autoimmune neuropsychiatric disorder associated with streptococcal infection (PANDAS) and Tourette syndrome (TS). Confirmatory evidence has, in part, been based on controversial findings of autoantibodies in the sera of children with these disorders. OBJECTIVE: To compare antineuronal antibody profiles in subjects with TS and PANDAS to age-matched controls. METHODS: Sera were obtained from 48 children with PANDAS, 46 with TS, and 43 age-matched controls. Serum autoantibodies were measured by use of ELISA and Western immunoblotting against a variety of epitopes, including human postmortem caudate, putamen, and prefrontal cortex (Brodmann area 10). Immunoreactivity was also measured against commercially available alpha- and gamma-enolase, aldolase C, and pyruvate kinase M1. Several assays were repeated after preabsorption of sera with M6 strain streptococci. RESULTS: Median ELISA optical density readings were similar among the groups. Western blot analyses showed complex staining patterns with no differences in any tissue region based on the number of bands, reactivity peaks at molecular weights 98, 60, 45, and 40 kDa, or total area under ScanPack (Biometra, Gottingen, Germany)-derived peaks. Immunoreactivity against four putative pathologic antigens did not differentiate the clinical groups. Repeat immunoblotting after serum preabsorption with streptococci showed no loss of reactivity. ELISA values exceeding a specified cutoff did not predict changes in binding to either brain epitopes or commercial antigens. CONCLUSIONS: Results do not support the hypothesis that PANDAS and Tourette syndrome are secondary to antineuronal antibodies. Longitudinal studies are required to determine whether autoantibodies correlate with fluctuations in clinical activity.

Adolescent↗

Microinfusion of antineuronal antibodies into rodent striatum: failure to differentiate between elevated and low titers.

An autoimmune-mediated mechanism has been proposed for several pediatric movement disorders. In a three-center (Brown, Yale, and Johns Hopkins) collaborative effort, serum antineuronal antibodies (ANAb) were measured by use of ELISA or immunohistochemical techniques on 35 children (mean age 11.4 years) with Tourette syndrome, attention deficit hyperactivity disorder, and/or obsessive compulsive disorder. Eight sera, 4 containing the highest and 4 the lowest levels of ANAb, were identified at each institution. Selected sera (total of 9 with elevated and 7 with low ANAb) were re-encoded and sent to each center for infusion into the ventrolateral striatum of 16 male Sprague-Dawley rats. Animals were observed for behavioral abnormalities for 3 days before the start of infusion, during infusion on days 2-4, and for 2 days after infusion. Combined stereotypy scores increased after antibody infusion, but there was no significant effect based on serum titer (p=0.85). Scores differed among centers, but analyses based on individual institutional data again failed to show an effect based on elevated or low ANAb values (Brown, p=0.95; Yale and Johns Hopkins, p=0.81). Post hoc studies with sham surgery and infusion of phosphate-buffered saline support suggestions of nonspecific behavioral effects unrelated to antibody titer. This report emphasizes that any conclusions about antibody-mediated movement disorders that are based upon results from the rodent infusion model must be considered with caution.

Adolescent↗

Frontal white matter reductions in healthy males with complex stereotypies.

The pathophysiologic mechanism for stereotypic, bilateral repetitive movements involving the arms and hands (complex motor stereotypies) is unknown. This study used volumetric magnetic resonance imaging to compare cerebral lobes and caudate nucleus in six males with complex stereotypies and average intelligence to age-matched control subjects. Results indicated volumetric reductions in frontal white matter, disproportionate to total cerebral white volume, and in the left and right caudate nuclei. These preliminary data suggest a possible dysfunction of cortico-striatal-thalamo-cortical circuitry in children with nonautistic, physiologic motor stereotypies.

Arm↗

Tourette's syndrome: from behaviour to biology.

Tourette's syndrome (TS) is a chronic neuropsychiatric disorder characterised by motor and vocal tics. Diagnosis is based solely on clinical criteria. The prevalence of this syndrome is estimated to be between one and ten per 1000 children and adolescents and the outcome is generally favourable; most patients improve by their late teens or early adulthood. Affected individuals are at increased risk of various comorbid neurobehavioural problems, the negative effects of which commonly exceed those of tics. Despite evidence that TS is an inherited disorder, the exact genetic abnormality is unknown. Environmental factors might have an important role in the expression of tics, and a poststreptococcal autoimmune cause has been proposed but is unproven. Brain imaging, neurophysiological, and post-mortem studies support involvement of cortical-striatal-thalamocortical pathways, but the definitive pathophysiological mechanism or neurotransmitter abnormality is unknown. Recent evidence, however, suggests a prefrontal dopaminergic abnormality. Traditional neuroleptics are the standard treatment for TS, but there is increasing interest in non-neuroleptic drugs, behavioural therapies, and surgical approaches.

Comorbidity↗

Methodologic factors affect the measurement of anti-basal ganglia antibodies.

An autoimmune etiology has been proposed for a variety of movement disorders, making the detection of autoantibodies a high investigative priority. Recognizing the existence of different methodologic approaches to identify these antibodies, we sought to investigate the effects of tissue preparation, antibody selection, and Western immunoblot detection methods on outcome. ELISA and immunoblotting studies were performed in healthy controls evaluating non-pathogenic autoantibodies. Our results indicate that enhanced data can be obtained by using fresh, rather than frozen, postmortem tissue homogenates for Western immunoblots and enzyme-linked immunosorbent assays and support the use of electrochemiluminescent detection for Western immunoblots. Molecular localization is significantly affected by the selected standard. Removal of lipids from homogenates does not affect anti-basal ganglia antibody (ABGA) results. Methodological variables should be taken into consideration when performing and interpreting neuroimmunological assays using sera or isolated IgG.

Adult↗

Microarray analysis in Tourette syndrome postmortem putamen.

Gene expression patterns in the postmortem putamen of patients with Tourette syndrome (TS) were investigated using cDNA microarrays. A cDNA neuroarray comprising 1537 genes known to be related to neurological or neuropsychiatric disorders was used to compare patient samples (n=3) with those from control subjects (n=4). Z test and Z ratio were used to analyze results; seven genes were found to be upregulated according to our definition (P<0.1, two-tailed, for Z test; P<0.05 for Z ratio) and three were found to be downregulated. Validation experiments were performed using reverse transcription polymerase chain reaction (RT-PCR) and semiquantitative Western blot analyses. RT-PCR showed concordance with microarray in seven of nine selected genes. In contrast, Western blot analyses performed with five proteins showed that only two of five had similar trends between protein content and level of gene expression. The authors note the inherent difficulty in applying microarray technology to complex neurological disorders such as the TS and conclude that further investigations are required to understand how altered expression of these genes is related to the pathophysiology of the disorder.

Adult↗