Article (Scientific journals)
Missense variants in TAF1 and developmental phenotypes: challenges of determining pathogenicity.
Cheng, Hanyin; Capponi, Simona; Wakeling, Emma et al.
2019In Human Mutation
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Keywords :
Cornelia de Lange; MRXS33 intellectual disability syndrome; TAF1; exome sequencing; transcriptomopathy
Abstract :
[en] We recently described a new neurodevelopmental syndrome (TAF1/MRXS33 intellectual disability syndrome) (MIM# 300966) caused by pathogenic variants involving the X-linked gene TAF1, which participates in RNA polymerase II transcription. The initial study reported eleven families, and the syndrome was defined as presenting early in life with hypotonia, facial dysmorphia, and developmental delay that evolved into intellectual disability (ID) and/or autism spectrum disorder (ASD). We have now identified an additional 27 families through a genotype-first approach. Familial segregation analysis, clinical phenotyping, and bioinformatics were capitalized on to assess potential variant pathogenicity, and molecular modelling was performed for those variants falling within structurally characterized domains of TAF1. A novel phenotypic clustering approach was also applied, in which the phenotypes of affected individuals were classified using 51 standardized Human Phenotype Ontology (HPO) terms. Phenotypes associated with TAF1 variants show considerable pleiotropy and clinical variability, but prominent among previously unreported effects were brain morphological abnormalities, seizures, hearing loss, and heart malformations. Our allelic series broadens the phenotypic spectrum of TAF1/MRXS33 intellectual disability syndrome and the range of TAF1 molecular defects in humans. It also illustrates the challenges for determining the pathogenicity of inherited missense variants, particularly for genes mapping to chromosome X. This article is protected by copyright. All rights reserved.
Disciplines :
Genetics & genetic processes
Author, co-author :
Cheng, Hanyin
Capponi, Simona
Wakeling, Emma
Marchi, Elaine
Li, Quan
Zhao, Mengge
Weng, Chunhua
Stefan, Piatek G.
Ahlfors, Helena
Kleyner, Robert
Rope, Alan
Lumaka Zola, Aimé  ;  Université de Liège - ULiège > Cancer-Human Genetics
Lukusa, Prosper
Devriendt, Koenraad
Vermeesch, Joris
Posey, Jennifer E.
Palmer, Elizabeth E.
Murray, Lucinda
Leon, Eyby
Diaz, Jullianne
Worgan, Lisa
Mallawaarachchi, Amalia
Vogt, Julie
de Munnik, Sonja A.
Dreyer, Lauren
Baynam, Gareth
Ewans, Lisa
Stark, Zornitza
Lunke, Sebastian
Goncalves, Ana R.
Soares, Gabriela
Oliveira, Jorge
Fassi, Emily
Willing, Marcia
Waugh, Jeff L.
Faivre, Laurence
Riviere, Jean-Baptiste
Moutton, Sebastien
Mohammed, Shehla
Payne, Katelyn
Walsh, Laurence
Begtrup, Amber
Guillen Sacoto, Maria J.
Douglas, Ganka
Alexander, Nora
Buckley, Michael F.
Mark, Paul R.
Ades, Lesley C.
Sandaradura, Sarah A.
Lupski, James R.
Roscioli, Tony
Agrawal, Pankaj B.
Kline, Antonie D.
Wang, Kai
Timmers, H. T. Marc
Lyon, Gholson J.
More authors (46 more) Less
Language :
English
Title :
Missense variants in TAF1 and developmental phenotypes: challenges of determining pathogenicity.
Publication date :
2019
Journal title :
Human Mutation
ISSN :
1059-7794
eISSN :
1098-1004
Publisher :
John Wiley & Sons, Hoboken, United States - New Jersey
Peer reviewed :
Peer Reviewed verified by ORBi
Commentary :
This article is protected by copyright. All rights reserved.
Available on ORBi :
since 19 December 2019

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