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Mutation-specific pathophysiological mechanisms define different neurodevelopmental disorders associated with SATB1 dysfunction
- Source :
- Am. J. Hum. Genet. 108, 346-356 (2021), DDD Study 2021, ' Mutation-specific pathophysiological mechanisms define different neurodevelopmental disorders associated with SATB1 dysfunction ', American Journal of Human Genetics, vol. 108, no. 2, pp. 346-356 . https://doi.org/10.1016/j.ajhg.2021.01.007, Am J Hum Genet, American Journal of Human Genetics, American Journal of Human Genetics, 2021, 108 (2), pp.346-356. ⟨10.1016/j.ajhg.2021.01.007⟩, American Journal of Human Genetics, Elsevier (Cell Press), 2021, 108 (2), pp.346-356. ⟨10.1016/j.ajhg.2021.01.007⟩, The American Journal of Human Genetics, American Journal of Human Genetics, 108(2), 346-356. Cell Press, American Journal of Human Genetics, 108, 2, pp. 346-356, American Journal of Human Genetics, 108, 346-356
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Abstract
- Whereas large-scale statistical analyses can robustly identify disease-gene relationships, they do not accurately capture genotype-phenotype correlations or disease mechanisms. We use multiple lines of independent evidence to show that different variant types in a single gene,SATB1, cause clinically overlapping but distinct neurodevelopmental disorders. Clinical evaluation of 42 individuals carryingSATB1variants identified overt genotype-phenotype relationships, associated with different pathophysiological mechanisms, established by functional assays. Missense variants in the CUT1 and CUT2 DNA-binding domains result in stronger chromatin binding, increased transcriptional repression and a severe phenotype. Contrastingly, variants predicted to result in haploinsufficiency are associated with a milder clinical presentation. A similarly mild phenotype is observed for individuals with premature protein truncating variants that escape nonsense-mediated decay and encode truncated proteins, which are transcriptionally active but mislocalized in the cell. Our results suggest that in-depth mutation-specific genotype-phenotype studies are essential to capture full disease complexity and to explain phenotypic variability.
- Subjects :
- 0301 basic medicine
Male
Models, Molecular
MISSENSE MUTATIONS
CHROMATIN
Transcription, Genetic
Cell
Medizin
Disease
Haploinsufficiency
medicine.disease_cause
0302 clinical medicine
Missense mutation
de novo variants
Genetics (clinical)
INTERLEUKIN-2
seizures
Genetics
0303 health sciences
Mutation
Chromatin binding
neurodevelopmental disorders
Metabolic Disorders Radboud Institute for Molecular Life Sciences [Radboudumc 6]
SATB1
Phenotype
medicine.anatomical_structure
intellectual disability
Female
teeth abnormalities
Protein Binding
Neuroinformatics
EXPRESSION
GENES
Mutation, Missense
Biology
BINDING PROTEIN
REGION
03 medical and health sciences
Protein Domains
Report
medicine
HPO-based analysis
Humans
Genetic Association Studies
Hpo-based Analysis
Satb1
Cell-based Functional Assays
De Novo Variants
Intellectual Disability
Neurodevelopmental Disorders
Seizures
Teeth Abnormalities
030304 developmental biology
[SDV.GEN]Life Sciences [q-bio]/Genetics
Neurodevelopmental disorders Donders Center for Medical Neuroscience [Radboudumc 7]
Matrix Attachment Region Binding Proteins
030104 developmental biology
Nanomedicine Radboud Institute for Molecular Life Sciences [Radboudumc 19]
030217 neurology & neurosurgery
cell-based functional assays
Subjects
Details
- Language :
- English
- ISSN :
- 00029297 and 15376605
- Database :
- OpenAIRE
- Journal :
- Am. J. Hum. Genet. 108, 346-356 (2021), DDD Study 2021, ' Mutation-specific pathophysiological mechanisms define different neurodevelopmental disorders associated with SATB1 dysfunction ', American Journal of Human Genetics, vol. 108, no. 2, pp. 346-356 . https://doi.org/10.1016/j.ajhg.2021.01.007, Am J Hum Genet, American Journal of Human Genetics, American Journal of Human Genetics, 2021, 108 (2), pp.346-356. ⟨10.1016/j.ajhg.2021.01.007⟩, American Journal of Human Genetics, Elsevier (Cell Press), 2021, 108 (2), pp.346-356. ⟨10.1016/j.ajhg.2021.01.007⟩, The American Journal of Human Genetics, American Journal of Human Genetics, 108(2), 346-356. Cell Press, American Journal of Human Genetics, 108, 2, pp. 346-356, American Journal of Human Genetics, 108, 346-356
- Accession number :
- edsair.doi.dedup.....36ceb0a8e476760d9adeb0b7aebcf8b1