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Biology subjects

Burkitt-Wright, E.

Publications and source records attributed to Burkitt-Wright, E..

2 recordsLinked to original sources

p70 ribosomal protein S6 Kinase (p70S6K) as a potential peripheral biomarker for mental symptoms in 16p11.2 deletion and duplication syndromes

Neurodevelopmental disorders (NDDs) encompass heterogeneous cognitive, motor, and psychiatric manifestations that typically require extensive behavioural assessments for characterization. Individuals carrying 16p11.2 copy number variations (CNVs), including both deletions and duplications, represent a relatively common NDD subgroup marked by wide variability in psychiatric symptoms, as well as metabolic and peripheral abnormalities, complicating prediction of disease trajectory and treatment response. The identification of biomarkers in easily accessible tissues, such as peripheral blood mononuclear cells (PBMCs), could provide valuable tools for diagnosis and prognosis, yet remains an unmet clinical need. Converging evidence implicates dysregulation of ubiquitous signalling pathways, including ERK and mTOR cascades, in altered protein synthesis across both idiopathic and genetic NDDs. Here, using a hypothesis-driven screening approach, we examined candidate peripheral biomarkers in individuals with 16p11.2 deletions and duplications. We identified a significant reduction of ribosomal protein S6 kinase (p70S6K) levels in PBMCs across both genotypes. Notably, the magnitude of p70S6K reduction correlated with the severity of autistic symptoms independently of CNV genotype. In parallel, MAPK3/ERK1 protein levels mirrored gene dosage, showing increased expression in duplication carriers and reduced levels in deletion carriers, in accordance with the genotype. Collectively, these findings indicate that peripheral molecular alterations may support clinical stratification and suggest that p70S6K represents a promising biomarker for symptom severity and potentially treatment responsiveness in NDD patients carrying 16p11.2 CNVs.

neuroscience↗

The PREGCARE study: Personalized recurrence risk assessment following the birth of a child with a pathogenic de novo mutation

Next-generation sequencing has led to a dramatic improvement in molecular diagnoses of serious pediatric disorders caused by apparently de novo mutations (DNMs); by contrast, clinicians ability to counsel the parents about the risk of recurrence in a future child has lagged behind. Owing to the possibility that one of the parents could be mosaic in their germline, a recurrence risk of 1-2% is frequently quoted, but for any specific couple, this figure is usually incorrect. We present a systematic approach to providing individualized recurrence risk stratification, by combining deep-sequencing of multiple tissues in the mother-father-child trio with haplotyping to determine the parental origin of the DNM. In the first 58 couples analysed (total of 59 DNMs in 49 different genes), the risk for 35 (59%) DNMs was decreased below 0.1% but for 6 (10%) couples it was increased owing to parental mosaicism - that could be quantified in semen (recurrence risks of 5.6-12.1%) for the paternal cases. Deep-sequencing of the DNM efficiently identifies couples at greatest risk for recurrence and may qualify them for additional reproductive technologies. Haplotyping can further reassure many other couples that their recurrence risk is very low, but its implementation is more technically challenging and will require better understanding of how couples respond to information that reduces their risks.

genetics↗