Publications by authors named "Renske Oegema"

Malformations of the brain are common and vary in severity, from negligible to potentially fatal. Their causes have not been fully elucidated. Here, we report pathogenic variants in the core protein-folding machinery TRiC/CCT in individuals with brain malformations, intellectual disability, and seizures.

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The rate of discovery and increased understanding of genetic causes for neurodevelopmental disorders has peaked over the past decade. It is well recognised that some genes show marked variability in neuroradiological phenotypes, and inversely, some radiological phenotypes are associated with several different genetic conditions. However, some readily recognisable brain magnetic resonance imaging (MRI) patterns, especially in the context of corresponding associated clinical findings, should prompt consideration of a pathogenic variant in a specific gene or gene pathway.

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Article Synopsis
  • Brain malformations are diverse abnormalities in brain development that affect neural structure and connectivity, often impacting brain size.
  • Effective prenatal detection of these malformations relies on a solid grasp of embryology and developmental anatomy at different stages of pregnancy.
  • This review aims to simplify the process of identifying and characterizing these structural brain issues by examining various neuroimaging techniques, such as prenatal neurosonography and MRI, and incorporating insights from post-mortem imaging throughout different developmental stages.
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  • Dysmorphologists face challenges due to the diverse phenotypic variability of human faces, particularly when using Next-Generation Phenotyping (NGP) tools, which are often trained on limited data.
  • To address this, the GestaltMatcher Database (GMDB) was created, compiling over 10,980 facial images from various global populations, significantly improving the representation of underrepresented ancestries, especially African and Asian patients.
  • The study found that incorporating data from non-European patients enhanced NGP accuracy by over 11% without compromising performance for European patients, highlighting the importance of diverse datasets in identifying genetic disorders.
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CSMD1 (Cub and Sushi Multiple Domains 1) is a well-recognized regulator of the complement cascade, an important component of the innate immune response. CSMD1 is highly expressed in the central nervous system (CNS) where emergent functions of the complement pathway modulate neural development and synaptic activity. While a genetic risk factor for neuropsychiatric disorders, the role of CSMD1 in neurodevelopmental disorders is unclear.

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Utilizing trio whole-exome sequencing and a gene matching approach, we identified a cohort of 18 male individuals from 17 families with hemizygous variants in KCND1, including two de novo missense variants, three maternally inherited protein-truncating variants, and 12 maternally inherited missense variants. Affected subjects present with a neurodevelopmental disorder characterized by diverse neurological abnormalities, mostly delays in different developmental domains, but also distinct neuropsychiatric signs and epilepsy. Heterozygous carrier mothers are clinically unaffected.

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  • * Researchers found 23 specific changes in a gene related to this complex that affect 38 people, leading to problems with brain cell growth and learning in animals.
  • * By targeting certain stress response proteins, they discovered ways to help fix some of the immune issues caused by these disorders, leading to new ideas for treatments.
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Pathogenic variants in ATP-dependent chromatin remodeling proteins are a recurrent cause of neurodevelopmental disorders (NDDs). The NURF complex consists of BPTF and either the SNF2H () or SNF2L () ISWI-chromatin remodeling enzyme. Pathogenic variants in and were previously implicated in NDDs.

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Article Synopsis
  • The significant phenotypic variability of human faces complicates the work of dysmorphologists by challenging Next-Generation Phenotyping (NGP) tools, especially when analyzing patients from diverse genetic backgrounds.
  • The research established the GestaltMatcher Database (GMDB), which includes over 10,000 facial images from patients with rare genetic disorders worldwide, striving to improve representation of underrepresented populations, particularly Asian and African patients.
  • The analysis showed that incorporating data from non-European patients enhanced the accuracy of NGP in diagnosing facial disorders without negatively affecting performance on European patients, emphasizing the need for more diverse datasets in medical genetics.
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This scientific commentary refers to ‘Aquaporin-4 and GPRC5B: old and new players in controlling brain oedema’ by Passchier . (https://doi.org/10.

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Purpose: HNRNPU haploinsufficiency is associated with developmental and epileptic encephalopathy 54. This neurodevelopmental disorder is characterized by developmental delay, intellectual disability, speech impairment, and early-onset epilepsy. We performed genome-wide DNA methylation (DNAm) analysis in a cohort of individuals to develop a diagnostic biomarker and gain functional insights into the molecular pathophysiology of HNRNPU-related disorder.

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Neural differentiation, synaptic transmission, and action potential propagation depend on membrane sphingolipids, whose metabolism is tightly regulated. Mutations in the ceramide transporter CERT (CERT1), which is involved in sphingolipid biosynthesis, are associated with intellectual disability, but the pathogenic mechanism remains obscure. Here, we characterize 31 individuals with de novo missense variants in CERT1.

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Purpose: Pathogenic variants in genes involved in the epigenetic machinery are an emerging cause of neurodevelopment disorders (NDDs). Lysine-demethylase 2B (KDM2B) encodes an epigenetic regulator and mouse models suggest an important role during development. We set out to determine whether KDM2B variants are associated with NDD.

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  • The study focuses on "episignatures," which are unique DNA methylation patterns used as biomarkers for diagnosing various genetic syndromes, particularly neurodevelopmental disorders.
  • Researchers analyzed DNA methylation changes in 65 genetic syndromes, identifying specific differentially methylated probes (DMPs) and regions (DMRs) associated with these conditions.
  • Findings indicated that DMPs and DMRs were mostly located in gene promoters and pathways related to neurodevelopment, highlighting a connection between gene mutations and altered DNA methylation profiles in these disorders.
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  • The study focuses on Kv3.2, a potassium channel crucial for high-frequency brain firing and efficient action potential generation, examining its genetic variations linked to epilepsy.
  • Researchers analyzed clinical data and functional characteristics of Kv3.2 variants found in patients with different types of epilepsy, including cases like genetic generalized epilepsy and severe developmental epilepsy.
  • Results revealed that out of 18 identified variants, 10 were new and linked to severe epilepsy forms, leading to significant insights about Kv3.2's involvement in epilepsy and its role in regulating brain activity.
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Overlapping clinical phenotypes and an expanding breadth and complexity of genomic associations are a growing challenge in the diagnosis and clinical management of Mendelian disorders. The functional consequences and clinical impacts of genomic variation may involve unique, disorder-specific, genomic DNA methylation episignatures. In this study, we describe 19 novel episignature disorders and compare the findings alongside 38 previously established episignatures for a total of 57 episignatures associated with 65 genetic syndromes.

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TET3 encodes an essential dioxygenase involved in epigenetic regulation through DNA demethylation. TET3 deficiency, or Beck-Fahrner syndrome (BEFAHRS; MIM: 618798), is a recently described neurodevelopmental disorder of the DNA demethylation machinery with a nonspecific phenotype resembling other chromatin-modifying disorders, but inconsistent variant types and inheritance patterns pose diagnostic challenges. Given TET3's direct role in regulating 5-methylcytosine and recent identification of syndrome-specific DNA methylation profiles, we analyzed genome-wide DNA methylation in whole blood of TET3-deficient individuals and identified an episignature that distinguishes affected and unaffected individuals and those with mono-allelic and bi-allelic pathogenic variants.

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Grey matter heterotopia (GMH) can cause of seizures and are associated with a wide range of neurodevelopmental disorders and syndromes. They are caused by a failure of neuronal migration during fetal development, leading to clusters of neurons that have not reached their final destination in the cerebral cortex. We have performed an extensive literature search in Pubmed, OMIM, and Google scholar and provide an overview of known genetic associations with periventricular nodular heterotopia (PNVH), subcortical band heterotopia (SBH) and other subcortical heterotopia (SUBH).

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  • Subcellular membranes are rich in dolichol, important for protein glycosylation, but its exact role in organelle function and the endosomal-lysosomal pathway is still unclear.
  • Variants in the DHDDS gene, which is essential for dolichol production, are linked to a form of retinitis pigmentosa and various neurodevelopmental disorders, causing symptoms like epilepsy and movement issues in affected patients.
  • Clinical studies showed that patients with DHDDS mutations experienced neurological decline, cognitive issues, and changes in their lysosomal function, suggesting that these variants primarily affect the enzyme's active site and disrupt normal cell processes.
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  • SPTBN1 gene encodes βII-spectrin, crucial for forming networks at plasma membranes, and its deficiency in mice leads to significant neurodevelopmental issues.
  • Heterozygous variants of SPTBN1 were identified in 29 individuals exhibiting a range of developmental challenges, including intellectual disabilities, language delays, and autistic features.
  • These variants weaken βII-spectrin stability and disrupt cellular organization, establishing SPTBN1 as a key contributor to certain neurodevelopmental syndromes.
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POLR3B encodes the second-largest catalytic subunit of RNA polymerase III, an enzyme involved in transcription. Bi-allelic pathogenic variants in POLR3B are a well-established cause of hypomyelinating leukodystrophy. We describe six unrelated individuals with de novo missense variants in POLR3B and a clinical presentation substantially different from POLR3-related leukodystrophy.

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Complex I deficiency is the most common pediatric mitochondrial disease. It can cause a wide range of clinical disorders, including Leigh syndrome. TIMMDC1 encodes an assembly protein of complex I and has been recently associated with early onset mitochondrial disease in three unrelated families.

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Twins have an increased risk for congenital malformations and disruptions, including defects in brain morphogenesis. We analyzed data on brain imaging, zygosity, sex, and fetal demise in 56 proband twins and 7 less affected co-twins with abnormal brain imaging and compared them to population-based data and to a literature series. We separated our series into malformations of cortical development (MCD, N = 39), cerebellar malformations without MCD (N = 13), and brain disruptions (N = 11).

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