Mutation-specific pathophysiological mechanisms define different neurodevelopmental disorders associated with SATB1 dysfunction.

Details

Serval ID
serval:BIB_0EBEF17D8EA2
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Mutation-specific pathophysiological mechanisms define different neurodevelopmental disorders associated with SATB1 dysfunction.
Journal
American journal of human genetics
Author(s)
den Hoed J., de Boer E., Voisin N., Dingemans AJM, Guex N., Wiel L., Nellaker C., Amudhavalli S.M., Banka S., Bena F.S., Ben-Zeev B., Bonagura V.R., Bruel A.L., Brunet T., Brunner H.G., Chew H.B., Chrast J., Cimbalistienė L., Coon H., Délot E.C., Démurger F., Denommé-Pichon A.S., Depienne C., Donnai D., Dyment D.A., Elpeleg O., Faivre L., Gilissen C., Granger L., Haber B., Hachiya Y., Abedi Y.H., Hanebeck J., Hehir-Kwa J.Y., Horist B., Itai T., Jackson A., Jewell R., Jones K.L., Joss S., Kashii H., Kato M., Kattentidt-Mouravieva A.A., Kok F., Kotzaeridou U., Krishnamurthy V., Kučinskas V., Kuechler A., Lavillaureix A., Liu P., Manwaring L., Matsumoto N., Mazel B., McWalter K., Meiner V., Mikati M.A., Miyatake S., Mizuguchi T., Moey L.H., Mohammed S., Mor-Shaked H., Mountford H., Newbury-Ecob R., Odent S., Orec L., Osmond M., Palculict T.B., Parker M., Petersen A.K., Pfundt R., Preikšaitienė E., Radtke K., Ranza E., Rosenfeld J.A., Santiago-Sim T., Schwager C., Sinnema M., Snijders Blok L., Spillmann R.C., Stegmann APA, Thiffault I., Tran L., Vaknin-Dembinsky A., Vedovato-Dos-Santos J.H., Schrier Vergano S.A., Vilain E., Vitobello A., Wagner M., Waheeb A., Willing M., Zuccarelli B., Kini U., Newbury D.F., Kleefstra T., Reymond A., Fisher S.E., Vissers LELM
Working group(s)
DDD Study
ISSN
1537-6605 (Electronic)
ISSN-L
0002-9297
Publication state
Published
Issued date
04/02/2021
Peer-reviewed
Oui
Volume
108
Number
2
Pages
346-356
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
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. In contrast, 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, 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.
Keywords
Chromatin/metabolism, Female, Genetic Association Studies, Haploinsufficiency, Humans, Male, Matrix Attachment Region Binding Proteins/chemistry, Matrix Attachment Region Binding Proteins/genetics, Matrix Attachment Region Binding Proteins/metabolism, Models, Molecular, Mutation, Mutation, Missense, Neurodevelopmental Disorders/genetics, Protein Binding, Protein Domains, Transcription, Genetic, HPO-based analysis, SATB1, cell-based functional assays, de novo variants, intellectual disability, neurodevelopmental disorders, seizures, teeth abnormalities
Pubmed
Web of science
Create date
08/02/2021 14:20
Last modification date
17/04/2021 5:33
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