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1.
Transl Psychiatry ; 13(1): 245, 2023 07 06.
Article in English | MEDLINE | ID: mdl-37407569

ABSTRACT

The RASopathies are genetic syndromes associated with pathogenic variants causing dysregulation of the Ras/mitogen-activated protein kinase (Ras-MAPK) pathway, essential for brain development, and increased risk for neurodevelopmental disorders. Yet, the effects of most pathogenic variants on the human brain are unknown. We examined: (1) How Ras-MAPK activating variants of PTPN11/SOS1 protein-coding genes affect brain anatomy. (2) The relationship between PTPN11 gene expression levels and brain anatomy, and (3) The relevance of subcortical anatomy to attention and memory skills affected in the RASopathies. We collected structural brain MRI and cognitive-behavioral data from 40 pre-pubertal children with Noonan syndrome (NS), caused by PTPN11 (n = 30) or SOS1 (n = 10) variants (age 8.53 ± 2.15, 25 females), and compared them to 40 age- and sex-matched typically developing controls (9.24 ± 1.62, 27 females). We identified widespread effects of NS on cortical and subcortical volumes and on determinants of cortical gray matter volume, surface area (SA), and cortical thickness (CT). In NS, we observed smaller volumes of bilateral striatum, precentral gyri, and primary visual area (d's < -0.8), and extensive effects on SA (d's > |0.8|) and CT (d's > |0.5|) relative to controls. Further, SA effects were associated with increasing PTPN11 gene expression, most prominently in the temporal lobe. Lastly, PTPN11 variants disrupted normative relationships between the striatum and inhibition functioning. We provide evidence for the effects of Ras-MAPK pathogenic variants on striatal and cortical anatomy as well as links between PTPN11 gene expression and cortical SA increases, and striatal volume and inhibition skills. These findings provide essential translational information on the Ras-MAPK pathway's effect on human brain development and function.


Subject(s)
Mitogen-Activated Protein Kinases , Noonan Syndrome , Child , Female , Humans , Noonan Syndrome/genetics , Brain/diagnostic imaging , Gray Matter , Gene Expression , Mutation
2.
Dev Med Child Neurol ; 65(11): 1520-1529, 2023 11.
Article in English | MEDLINE | ID: mdl-37130201

ABSTRACT

AIM: We investigated neuropsychiatric outcomes in children with Noonan syndrome and addressed limitations in previous research with a focus on prepubertal children, comparison to typically developing children, comprehensive neuropsychiatric evaluation, and controlling for overall cognitive abilities. METHOD: Forty-five children with Noonan syndrome (mean = 8 years 6 months, SD = 2 years 2 months; 29 females) and 40 typically developing children (mean = 8 years 9 months, SD = 2 years; 22 females) were evaluated with objective, parent-report, and psychiatric interview measures. RESULTS: Children with Noonan syndrome demonstrated elevated symptoms across attention-deficit/hyperactivity disorder (ADHD) (attention, hyperactivity, and inhibition), autism spectrum disorder (ASD) (maintaining social relationships, behavioral rigidity, and sensory sensitivity), and oppositional defiant disorder (ODD) (aggression) symptom clusters relative to typically developing children (all p < 0.05). Group differences in nearly all parent-report measures were significant after accounting for variations in intellectual functioning, suggesting that increased neurodevelopmental symptoms are not simply driven by overall intelligence. Twenty out of 42 children with Noonan syndrome met criteria for ADHD, eight out of 42 for ODD, and 11 out of 43 demonstrated clinically significant symptoms seen in children with ASD. INTERPRETATION: Children with Noonan syndrome are at increased risk for a range of ADHD, ASD, and ODD associated symptoms. A dimensional approach reveals significant ASD symptoms in Noonan syndrome that do not emerge when using the currently accepted categorical diagnostic approach. WHAT THIS PAPER ADDS: Neuropsychiatric disorders occur in more than half of children with Noonan syndrome. Children with Noonan syndrome demonstrate highly variable neurodevelopmental symptom profiles. Children with Noonan syndrome display variable impairments in attention, hyperactivity, and inhibition. Specific social concerns include behavioral rigidity, transitions, and difficulties maintaining social relationships. Children with Noonan syndrome display variably elevated levels of aggression and emotional dysregulation.


Subject(s)
Attention Deficit Disorder with Hyperactivity , Autism Spectrum Disorder , Noonan Syndrome , Female , Humans , Child , Noonan Syndrome/complications , Noonan Syndrome/genetics , Autism Spectrum Disorder/psychology , Attention Deficit Disorder with Hyperactivity/psychology , Attention , Phenotype
3.
Res Sq ; 2023 Feb 21.
Article in English | MEDLINE | ID: mdl-36865206

ABSTRACT

The RASopathies are genetic syndromes associated with pathogenic variants causing dysregulation of the Ras/mitogen-activated protein kinase (Ras-MAPK) pathway, essential for brain development, and increased risk for neurodevelopmental disorders. Yet, the effects of most pathogenic variants on the human brain are unknown. We examined: 1. How Ras-MAPK activating variants of PTPN11 / SOS1 protein-coding genes affect brain anatomy. 2. The relationship between PTPN11 gene expression levels and brain anatomy, and 3. The relevance of subcortical anatomy to attention and memory skills affected in the RASopathies. We collected structural brain MRI and cognitive-behavioral data from 40 pre-pubertal children with Noonan syndrome (NS), caused by PTPN11 ( n = 30) or SOS1 ( n = 10) variants (age 8.53 ± 2.15, 25 females), and compared them to 40 age- and sex-matched typically developing controls (9.24 ± 1.62, 27 females). We identified widespread effects of NS on cortical and subcortical volumes and on determinants of cortical gray matter volume, surface area (SA) and cortical thickness (CT). In NS, we observed smaller volumes of bilateral striatum, precentral gyri, and primary visual area ( d 's<-0.8), and extensive effects on SA ( d 's>|0.8|) and CT ( d 's>|0.5|) relative to controls. Further, SA effects were associated with increasing PTPN11 gene expression, most prominently in the temporal lobe. Lastly, PTPN11 variants disrupted normative relationships between the striatum and inhibition functioning. We provide evidence for effects of Ras-MAPK pathogenic variants on striatal and cortical anatomy as well as links between PTPN11 gene expression and cortical SA increases, and striatal volume and inhibition skills. These findings provide essential translational information on the Ras-MAPK pathway's effect on human brain development and function.

4.
Death Stud ; 44(5): 278-284, 2020.
Article in English | MEDLINE | ID: mdl-30570446

ABSTRACT

There is little research available regarding the impact of pet loss on children. In the current mixed-methods study, we explored the different ways that children use continuing bonds (CB) to cope following the death of a pet. We studied 32 children (5-18 years) and their parents. Children answered four questionnaires and the Continuing Bonds Interview. Parents answered a demographic questionnaire. Results suggest that all children utilize CB while grieving the loss of a pet, although CB expression varies depending on the age of the child, the level of grief following the loss, and the strength of attachment to the pet.


Subject(s)
Adaptation, Psychological/physiology , Adolescent Behavior/psychology , Child Behavior/psychology , Grief , Human-Animal Bond , Object Attachment , Adolescent , Child , Child, Preschool , Female , Humans , Male
5.
Cereb Cortex ; 29(7): 2915-2923, 2019 07 05.
Article in English | MEDLINE | ID: mdl-30059958

ABSTRACT

The Ras-MAPK pathway has an established role in neural development and synaptic signaling. Mutations in this pathway are associated with a collection of neurodevelopmental syndromes, Rasopathies; among these, Noonan syndrome (NS) is the most common (1:2000). Prior research has focused on identifying genetic mutations and cellular mechanisms of the disorder, however, effects of NS on the human brain remain unknown. Here, imaging and cognitive data were collected from 12 children with PTPN11-related NS, ages 4.0-11.0 years (8.98 ± 2.33) and 12 age- and sex-matched typically developing controls (8.79 ± 2.17). We observe reduced gray matter volume in bilateral corpus striatum (Cohen's d = -1.0:-1.3), reduced surface area in temporal regions (d = -1.8:-2.2), increased cortical thickness in frontal regions (d = 1.2-1.3), and reduced cortical thickness in limbic regions (d = -1.6), including limbic structures integral to the circuitry of the hippocampus. Further, we find high levels of inattention, hyperactivity, and memory deficits in children with NS. Taken together, these results identify effects of NS on specific brain regions associated with ADHD and learning in children. While our research lays the groundwork for elucidating the neural and behavioral mechanisms of NS, it also adds an essential tier to understanding the Ras-MAPK pathway's role in human brain development.


Subject(s)
Attention Deficit Disorder with Hyperactivity/genetics , Brain/pathology , Memory Disorders/genetics , Noonan Syndrome/genetics , Noonan Syndrome/pathology , Protein Tyrosine Phosphatase, Non-Receptor Type 11/genetics , Attention/physiology , Child , Child, Preschool , Female , Gain of Function Mutation , Humans , Magnetic Resonance Imaging , Male , Noonan Syndrome/physiopathology
6.
J Neurodev Disord ; 9: 25, 2017.
Article in English | MEDLINE | ID: mdl-28694877

ABSTRACT

BACKGROUND: ADHD (attention deficit hyperactivity disorder) is a common neurodevelopmental disorder. There has been extensive clinical and basic research in the field of ADHD over the past 20 years, but the mechanisms underlying ADHD risk are multifactorial, complex and heterogeneous and, as yet, are poorly defined. In this review, we argue that one approach to address this challenge is to study well-defined disorders to provide insights into potential biological pathways that may be involved in idiopathic ADHD. MAIN BODY: To address this premise, we selected two neurogenetic conditions that are associated with significantly increased ADHD risk: Turner syndrome and the RASopathies (of which Noonan syndrome and neurofibromatosis type 1 are the best-defined with regard to ADHD-related phenotypes). These syndromes were chosen for two main reasons: first, because intellectual functioning is relatively preserved, and second, because they are strikingly phenotypically similar but are etiologically distinct. We review the cognitive, behavioural, neural and cellular phenotypes associated with these conditions and examine their relevance as a model for idiopathic ADHD. CONCLUSION: We conclude by discussing current and future opportunities in the clinical and basic research of these conditions, which, in turn, may shed light upon the biological pathways underlying idiopathic ADHD.

7.
J Pediatr Genet ; 5(3): 141-9, 2016 Sep.
Article in English | MEDLINE | ID: mdl-27617155

ABSTRACT

Fabry disease (FD) is a multisystemic disease that has previously been reported to result in poorer quality of life and psychosocial functioning in impacted adults. However, prior to the current study, limited data were available on the impact of FD in children and adolescents. Therefore, the present study examined the differences of quality of life, psychosocial functioning, and depression in children with FD as compared with a healthy sample. Results indicated that children with FD were experiencing poorer quality of life than their healthy counterparts. Notably, results consistently identified adolescents with FD as more heavily impacted than younger children, although not to the same degree as adults with FD as reported in previous studies. Therefore, adolescence may be a critical point in the development of individuals with FD during which effective multidisciplinary interventions could be utilized to prevent poor quality of life and psychosocial functioning in adulthood.

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