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

Authors :
Antonio Vitobello
Christel Depienne
Kelly Radtke
Bruria Ben-Zeev
Vaidutis Kučinskas
Hirofumi Kashii
Leslie Granger
Florence Demurger
Adi Vaknin-Dembinsky
Androu Waheeb
Takeshi Mizuguchi
Lip H. Moey
Urania Kotzaeridou
Frédérique Béna
Fernando Kok
Timothy Blake Palculict
Yasmin Hamzavi Abedi
Satoko Miyatake
Anne-Sophie Denommé-Pichon
Linda Manwaring
Laura Elena Orec
Laurens Wiel
Han G. Brunner
Sylvie Odent
Eric Vilain
Linh Tran
Simon E. Fisher
Emmanuèlle C. Délot
Vidya Krishnamurthy
Rebecca C. Spillmann
Hilary Coon
Shelagh Joss
Hui B. Chew
Matias Wagner
David A. Dyment
Kirsty McWalter
Michael W. Parker
Adam Jackson
Margje Sinnema
Pengfei Liu
Elke de Boer
Alma Kuechler
Christoffer Nellåker
Christian Gilissen
Yasuo Hachiya
Marcia C. Willing
Shivarajan M. Amudhavalli
Alexander P.A. Stegmann
Ange-Line Bruel
Siddharth Banka
Joery den Hoed
Vardiella Meiner
Rosalyn Jewell
Britton D Zuccarelli
Alexander J. M. Dingemans
Kelly L. Jones
Anja A. Kattentidt-Mouravieva
Matthew Osmond
Orly Elpeleg
Andrea K. Petersen
Nicolas Guex
Dianne F. Newbury
Jill A. Rosenfeld
Alexandre Reymond
Mohamad A. Mikati
Tjitske Kleefstra
Lisenka E.L.M. Vissers
Naomichi Matsumoto
Vincent R. Bonagura
Loreta Cimbalistienė
Benoît Mazel
Hayley S. Mountford
Isabelle Thiffault
Rolph Pfundt
Ruth Newbury-Ecob
Teresa Santiago-Sim
Alinoë Lavillaureix
Eglė Preikšaitienė
Jacqueline Chrast
Toshiyuki Itai
Norine Voisin
Usha Kini
Emmanuelle Ranza
Caitlin Schwager
Brooke Horist
Samantha A. Schrier Vergano
Jennifer Hanebeck
Juliana H. Vedovato-dos-Santos
Mitsuhiro Kato
Theresa Brunet
Lot Snijders Blok
Jayne Y. Hehir-Kwa
Shehla Mohammed
Benjamin Haber
Hagar Mor-Shaked
Laurence Faivre
Dian Donnai
Max Planck Institute for Psycholinguistics
Max-Planck-Gesellschaft
Université de Lausanne = University of Lausanne (UNIL)
Children's Mercy Hospital [Kansas City]
University of Manchester [Manchester]
Lipides - Nutrition - Cancer [Dijon - U1231] (LNC)
Université de Bourgogne (UB)-Institut National de la Santé et de la Recherche Médicale (INSERM)-AgroSup Dijon - Institut National Supérieur des Sciences Agronomiques, de l'Alimentation et de l'Environnement
Centre Hospitalier Universitaire de Dijon - Hôpital François Mitterrand (CHU Dijon)
Institut de Génétique et Développement de Rennes (IGDR)
Université de Rennes (UR)-Centre National de la Recherche Scientifique (CNRS)-Structure Fédérative de Recherche en Biologie et Santé de Rennes ( Biosit : Biologie - Santé - Innovation Technologique )
CHU Pontchaillou [Rennes]
Centre de référence Maladies Rares CLAD-Ouest [Rennes]
Radboud University [Nijmegen]
Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
Nederlandse Organisatie voor Wetenschappelijk Onderzoek
University of Lausanne (UNIL)
Université de Bourgogne (UB)-AgroSup Dijon - Institut National Supérieur des Sciences Agronomiques, de l'Alimentation et de l'Environnement-Institut National de la Santé et de la Recherche Médicale (INSERM)
Structure Fédérative de Recherche en Biologie et Santé de Rennes ( Biosit : Biologie - Santé - Innovation Technologique )-Centre National de la Recherche Scientifique (CNRS)-Université de Rennes 1 (UR1)
Université de Rennes (UNIV-RENNES)-Université de Rennes (UNIV-RENNES)
Radboud university [Nijmegen]
The DDD study
RS: GROW - R4 - Reproductive and Perinatal Medicine
Klinische Genetica
MUMC+: DA Klinische Genetica (5)
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

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.

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