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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↗

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↗

Increased prefrontal D2 protein in Tourette syndrome: a postmortem analysis of frontal cortex and striatum.

The precise neuropathological mechanism underlying Tourette syndrome (TS) is unknown. In order to evaluate a variety of proposed dopaminergic abnormalities, postmortem tissue samples were obtained from three individuals with TS (two typical males with childhood onset, ages 29 and 77, and a 62-year-old female with adult-onset) and three age- and sex-matched controls. Samples from caudate, putamen, ventral striatum, and prefrontal cortex (Brodmann's area 9, BA9) were analyzed by semiquantitative immunoblotting for relative densities of dopamine receptors (D1, D2), transporter (DAT), monoamine terminals (vesicular monoamine transporter type 2), vesicular docking and release proteins (VAMP-2, synaptotagmin, SNAP-25, syntaxin, synaptophysin), and receptors inhibiting dopamine release (alpha 2-adrenergic receptors, alpha-2A). Concentrations of monoamine neurotransmitters and their metabolites were assessed by high performance liquid chromatography. Data from each TS sample was calculated as a percent value of its control. Results showed that prefrontal cortex, rather than striatum, had the greatest number of changes in the two typical TS cases, including increases for D2, DAT, VAMP-2, and alpha-2A. All three TS subjects had increased densities of prefrontal D2 receptor protein, greater than 140% of their matched control. These results suggest the presence of a prefrontal-dopaminergic abnormality in TS and emphasize the need for a more specific focus on the frontal lobe.

3,4-Dihydroxyphenylacetic Acid↗

Striatal microinfusion of Tourette syndrome and PANDAS sera: failure to induce behavioral changes.

Rodent striatal microinfusions have been suggested as a model for assessing the behavioral effects induced by antineuronal antibodies. We used this approach to evaluate the proposed autoimmune etiology for Tourette syndrome (TS) and pediatric autoimmune neuropsychiatric disorders associated with streptococcal infection (PANDAS). Sera were assessed from patients with TS (n = 9) preselected based on the presence of elevated enzyme-linked immunosorbent assay optical densities against putamen homogenate and sera from patients with PANDAS (n = 8), selected from a larger group assayed for antibodies against a putamen synaptosomal preparation. The effect of antibodies against the streptococcal M5 protein were also studied. A total of 44 Fischer rats received bilateral infusion of sera: 23 ventral striatum (5 PANDAS, 5 TS, 5 anti-M5 protein, and 8 control); 21 ventrolateral striatum (5 PANDAS, 5 TS, 5 anti-M5 protein, and 6 controls). Cannulas were placed bilaterally and symmetrically by stereotactic techniques. After animals were allowed to recover for 1 week, sera were microinfused for 3 days. Animal behavior was then simultaneously quantified by daily observation and monitoring using automated activity boxes for 10 days after infusion. No significant alterations in stereotypic behavior or movement were observed between the PANDAS, TS, or anti-M5 protein and control groups. Our findings are in contrast to previous reports, and suggest the need for further investigations to determine the validity of the model and of autoimmune-mediated hypotheses for pediatric movement disorders.

Animals↗

Anti-basal ganglia antibodies in PANDAS.

An autoimmune-mediated mechanism involving molecular mimicry has been proposed for a variety of pediatric movement disorders that occur after a streptococcal infection. In this study, anti-basal ganglia antibodies (ABGA) were measured in 15 children with the diagnosis of pediatric autoimmune neuropsychiatric disorder associated with streptococcal infection (PANDAS) and compared with those in 15 controls. ELISA and Western immunoblotting (WB) methods were used to detect ABGA against supernatant (S1), pellet (P2), and synaptosomal preparations from adult postmortem caudate, putamen, and globus pallidus. ELISA optical density values did not differ between PANDAS patients and controls across all preparations. Immunoblotting identified multiple bands in all subjects with no differences in the number of bands or their total density. Discriminant analysis, used to assess mean binding patterns, showed that PANDAS patients differed from controls only for the caudate S1 fraction (Wilks' lambda = 0.0236, P < 0.0002), with PANDAS-primarily tic subjects providing the greatest discrimination. Among the epitopes contributing to differences between PANDAS and control in the caudate S1 fraction, mean binding to the epitope at 183 kDa was the most different between groups. In conclusion, ELISA measurements do not differentiate between PANDAS and controls, suggesting a lack of major antibody changes in this disorder. Further immunoblot analyses using a caudate supernatant fraction are required to completely exclude the possibility of minor antibody repertoire differences in PANDAS subjects, especially in those who primarily have tics.

Adolescent↗

Repetitive arm and hand movements (complex motor stereotypies) in children.

OBJECTIVE: To characterize clinical features, associated problems, and outcomes for children with complex motor stereotypies who do not have mental retardation or pervasive developmental disorders. STUDY DESIGN: We performed a record review for 40 children (63% male) aged 9 months to 17 years with complex motor stereotypies between 1993 and 2003. RESULTS: Age at onset was at or before 3 years in 90% of the sample. Symptoms occurred at least once daily in 90%. Excitement was identified as a trigger in 70%. Movements stopped when cued in 98%, and none had stereotypies during sleep. A total of 25% had comorbid attention deficit hyperactivity disorder (ADHD), and 20% had a learning disability. Family history of stereotypies was identified in 25%, tics in 33%, ADHD in 10%, and mood-anxiety disorder in 38%. Pharmacotherapy to target associated conditions was used in 40%, and behavioral therapy was used in 23%. A total of 53% identified symptoms for more than 5 years. Movements resolved in 5% of the children, improved in 33%, were unchanged in 50%, and worsened in 13%. CONCLUSIONS: The clinical course of complex motor stereotypies appears chronic. Better understanding of the clinical features of complex stereotypies in primary care settings is essential for early diagnosis and management.

Adolescent↗

Restless legs syndrome: association with streptococcal or mycoplasma infection.

Group A beta-hemolytic streptococcal infections have been reported to cause neuropsychiatric symptoms, such as chorea, tics, and obsessive-compulsive disorder, presumably through autoimmune damage to basal ganglia. Mycoplasma pneumoniae infections have also been reported to cause damage to the basal ganglia. Restless legs syndrome is a movement disorder with focal restlessness, an irresistible desire to move, and exacerbation by long periods of sitting or lying. We present three children with transient restless legs syndrome-like symptoms possibly associated with group A beta-hemolytic streptococcal infection or Mycoplasma pneumoniae infection. One of three patients had persistently elevated enzyme-linked immunosorbent optical density values against human caudate and putamen.

Adolescent↗

PANDAS: a commentary.

PANDAS is an acronym for Pediatric Autoimmune Neuropsychiatric Disorders Associated with Streptococcal infection. As defined, the criteria include prepubertal children with either a tic or obsessive-compulsive disorder in whom a Group A beta-hemolytic streptococcal infection (GABHS) triggers the abrupt onset or exacerbation of tics/obsessive-compulsive behaviors. Pathophysiologically, it is proposed that antibodies produced against GABHS cross-react with neuronal cells, in a process involving molecular mimicry. Although PANDAS has received widespread notoriety, the existence of this condition has been questioned. This commentary reviews clinical and laboratory issues pertinent to the diagnosis of this entity. We conclude that PANDAS is an intriguing hypothesis that requires further confirmation.

Antibodies, Bacterial↗

Anti-basal ganglia antibody abnormalities in Sydenham chorea.

Anti-basal ganglia antibodies (ABGA) were measured in nine children with Sydenham chorea (SC) and compared to nine controls. Enzyme-linked immunosorbent assay (ELISA) and Western blot (WB) methods were used to detect ABGA against supernatant (S1), pellet, and synaptosomal preparations from adult and pediatric postmortem caudate, putamen, and globus pallidus. ELISA optical density (OD) values were higher in SC patients than controls across all preparations, but did not reach a level of significance. Although WB identified multiple bands in all subjects, discriminant analysis showed that the mean binding patterns of SC patients were significantly different from control, most notably in the caudate S1 fraction (Wilks' lambda=0.011, p<0.0001). Numerous antigens contributed to differences between groups; the two most defining molecular masses were at 126 and 113 kDa. In contrast to WB with discriminant analysis, ELISA measurements did not significantly differentiate between the SC group and controls.

Adolescent↗

Neurobiology of Tourette's syndrome: concepts of neuroanatomic localization and neurochemical abnormalities.

Despite a preponderance of evidence suggesting an organic rather than psychogenic origin for Tourette syndrome, the precise neurobiological abnormality remains speculative. Neuroanatomically, there is expanding confirmation that cortico-striato-thalamo-cortical pathways represent the site of origin for tics and accompanying neuropsychiatric problems. Pathophysiological hypothesis are generally defined based on involvement of (1) a specific anatomical site (striato-thalamic circuits, striatal compartments), (2) physiologic abnormality (excess thalamic excitation, impaired intracortical inhibition), or (3) involvement of a specific neurotransmitter or synaptic component. This review provides information essential for understanding current and future proposals pertaining to the neurobiology of this intriguing disorder.

Brain↗

Antistreptococcal, neuronal, and nuclear antibodies in Tourette syndrome.

Previous studies have suggested associations between Tourette syndrome and attention-deficit-hyperactivity disorder and antistreptococcal antibodies and between Tourette syndrome and antinuclear antibodies. In this study, antistreptolysin O, antideoxyribonuclease B, antinuclear, and antineuronal antibodies were measured in 41 children with Tourette syndrome and 38 controls, selected without regard to history of streptococcal infection. Results revealed that mean antistreptococcal titers did not differ between diagnostic groups. In addition, multiple regression analysis was unable to predict antistreptococcal antibody titers according to age and diagnosis. The frequency of elevated antistreptolysin O titers, based on a cutoff of 1:240, was significantly higher (P = 0.04) in patients with attention-deficit-hyperactivity disorder (64%) than in the group without attention-deficit-hyperactivity disorder (34%) but not when dichotomized according to age-matched normal values. No analysis of antideoxyribonuclease B titers identified any differences between groups. Antinuclear antibody titers were at least 1:160 in three of 33 Tourette syndrome patients; only one subject manifested a homogeneous staining pattern. Multiple regression analyses were unable to predict antinuclear, antineuronal, or anti-HTB-10 antibody titers according to the combination of age, diagnosis, and antistreptococcal titer. We suggest that longitudinal rather than single-point-in-time laboratory measurements be evaluated before definitive conclusions are drawn on associations between the diagnosis of Tourette syndrome, attention-deficit-hyperactivity disorder, or obsessive-compulsive disorders and antistreptococcal or antinuclear antibody titers.

Adolescent↗

MRI parcellation of the frontal lobe in boys with attention deficit hyperactivity disorder or Tourette syndrome.

Dysfunction of frontal-striatal-thalamic-frontal circuitry has been hypothesized to underlie both attention deficit hyperactivity disorder (ADHD) and Tourette syndrome (TS). Several research groups have therefore used anatomic magnetic resonance imaging (aMRI) to obtain volumetric measurements of subregions of the frontal lobe in these disorders. Most previous studies have relied on subparcellation methods that utilize callosal landmarks to derive subregions of the frontal lobe. In contrast, we present here an investigation of frontal lobe morphometry in ADHD and TS based on a reliable frontal subparcellation protocol that combines contiguous sulcal/gyral boundaries to derive frontal lobe modules based on prior functional studies. This highly reliable procedure subdivides the frontal lobe into five major modules: prefrontal, premotor, motor (precentral gyrus), anterior cingulate, and deep white matter. The first four modules are also segmented into gray and gyral white matter compartments. The protocol was applied to T1-weighted, SPGR coronal MRI images of 13 school-aged boys with ADHD, 13 boys with TS, and 13 age- and gender-matched controls. In ADHD, we found volumetric reductions in both the gray and white matter of the prefrontal cortex. These findings, in conjunction with previous reports on basal ganglia abnormalities, suggest that prefrontal-striatal pathways may be anomalous in ADHD. In TS, we found volumetric decreases in the left deep frontal white matter. Decreases in deep white matter suggest the presence of abnormalities in long associational and projection fiber bundles in TS. The findings of this study both confirm and extend our knowledge of the neurobiology of ADHD and TS, indicating that the reliable parcellation method presented has the potential of increasing our understanding of the role of the frontal lobe in developmental and psychiatric disorders.

Adult↗

Effects of IQ on executive function measures in children with ADHD.

The present study compared children with Attention-Deficit Hyperactivity Disorder (ADHD) and controls on a selected set of clinical measures of executive function (EF). A total of 92 children (51 ADHD, 41 control), ages 6-16, completed measures chosen from a larger neuropsychological battery to illustrate diverse components of the EF construct (planning, inhibitory control, response preparation, memory search). The selected measures were moderately correlated with one another, and moderately correlated with IQ. After controlling for age, sex, presence of learning disability (LD), ADHD, and IQ test version, Full Scale IQ was significantly related to four of the five selected EF measures. A second analysis showed group differences on the EF measures at different IQ levels. After covarying for age, there was a significant multivariate effect for IQ level (average, high average, superior) and a significant multivariate interaction between group (ADHD vs. control) and IQ level. Three of the five selected EF measures showed significant univariate group effects (controls performing better than ADHD) at the average IQ level; however, there were no significant group differences between children with ADHD and controls at high average or superior IQ levels. These results suggest that clinical measures of EF may differ among children with ADHD and controls at average IQ levels, but there is poorer discriminatory power for these measures among children with above average IQ.

Adolescent↗