bioRxiv · 10.1101/2020.10.23.352278
Mutation-specific pathophysiological mechanisms define different neurodevelopmental disorders associated with SATB1 dysfunction
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 carrying SATB1 variants 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.
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den Hoed, J., Boer, E. d., Voisin, N., Dingemans, A., Guex, N., Wiel, L., Nellaker, C., Amudhavalli, S., Banka, S., Bena, F., Ben-Zeev, B., Bonagura, V., Bruel, A.-L., Brunet, T., Brunner, H., Chew, H., Chrast, J., Cimbalistien, L., Coon, H., Study, T. D., Delot, E., Demurger, F., Denomme-Pichon, A.-S., Depienne, C., Donnai, D., Dyment, D., Elpeleg, O., Faivre, L., Gilissen, C., Granger, L., Haber, B., Hachiya, Y., Hamzavi Abedi, Y., Hanebeck, J., Hehir-Kwa, J., Horist, B., Itai, T., Jackson, A., Jewell, R., Jones, K., Joss, S., Kashii, H., Kato, M., Kattentidt-Mouravieva, A., Kok, F., Kotzaer. 2020-10-24. Mutation-specific pathophysiological mechanisms define different neurodevelopmental disorders associated with SATB1 dysfunction. https://doi.org/10.1101/2020.10.23.352278
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