TY - JOUR
T1 - De Novo and Inherited Loss-of-Function Variants in TLK2
T2 - Clinical and Genotype-Phenotype Evaluation of a Distinct Neurodevelopmental Disorder
AU - The Deciphering Developmental Disorders Study
AU - Reijnders, Margot R.F.
AU - Miller, Kerry A.
AU - Alvi, Mohsan
AU - Goos, Jacqueline A.C.
AU - Lees, Melissa M.
AU - de Burca, Anna
AU - Henderson, Alex
AU - Kraus, Alison
AU - Mikat, Barbara
AU - de Vries, Bert B.A.
AU - Isidor, Bertrand
AU - Kerr, Bronwyn
AU - Marcelis, Carlo
AU - Schluth-Bolard, Caroline
AU - Deshpande, Charu
AU - Ruivenkamp, Claudia A.L.
AU - Wieczorek, Dagmar
AU - Baralle, Diana
AU - Blair, Edward M.
AU - Engels, Hartmut
AU - Lüdecke, Hermann Josef
AU - Eason, Jacqueline
AU - Santen, Gijs W.E.
AU - Clayton-Smith, Jill
AU - Chandler, Kate
AU - Tatton-Brown, Katrina
AU - Payne, Katelyn
AU - Helbig, Katherine
AU - Radtke, Kelly
AU - Nugent, Kimberly M.
AU - Cremer, Kirsten
AU - Strom, Tim M.
AU - Bird, Lynne M.
AU - Sinnema, Margje
AU - Bitner-Glindzicz, Maria
AU - van Dooren, Marieke F.
AU - Alders, Marielle
AU - Koopmans, Marije
AU - Brick, Lauren
AU - Kozenko, Mariya
AU - Harline, Megan L.
AU - Klaassens, Merel
AU - Steinraths, Michelle
AU - Cooper, Nicola S.
AU - Edery, Patrick
AU - Yap, Patrick
AU - Terhal, Paulien A.
AU - Taylor, Rachel L.
AU - McLean, Scott
AU - Douzgou, Sofia
PY - 2018/6/7
Y1 - 2018/6/7
N2 - Next-generation sequencing is a powerful tool for the discovery of genes related to neurodevelopmental disorders (NDDs). Here, we report the identification of a distinct syndrome due to de novo or inherited heterozygous mutations in Tousled-like kinase 2 (TLK2) in 38 unrelated individuals and two affected mothers, using whole-exome and whole-genome sequencing technologies, matchmaker databases, and international collaborations. Affected individuals had a consistent phenotype, characterized by mild-borderline neurodevelopmental delay (86%), behavioral disorders (68%), severe gastro-intestinal problems (63%), and facial dysmorphism including blepharophimosis (82%), telecanthus (74%), prominent nasal bridge (68%), broad nasal tip (66%), thin vermilion of the upper lip (62%), and upslanting palpebral fissures (55%). Analysis of cell lines from three affected individuals showed that mutations act through a loss-of-function mechanism in at least two case subjects. Genotype-phenotype analysis and comparison of computationally modeled faces showed that phenotypes of these and other individuals with loss-of-function variants significantly overlapped with phenotypes of individuals with other variant types (missense and C-terminal truncating). This suggests that haploinsufficiency of TLK2 is the most likely underlying disease mechanism, leading to a consistent neurodevelopmental phenotype. This work illustrates the power of international data sharing, by the identification of 40 individuals from 26 different centers in 7 different countries, allowing the identification, clinical delineation, and genotype-phenotype evaluation of a distinct NDD caused by mutations in TLK2.
AB - Next-generation sequencing is a powerful tool for the discovery of genes related to neurodevelopmental disorders (NDDs). Here, we report the identification of a distinct syndrome due to de novo or inherited heterozygous mutations in Tousled-like kinase 2 (TLK2) in 38 unrelated individuals and two affected mothers, using whole-exome and whole-genome sequencing technologies, matchmaker databases, and international collaborations. Affected individuals had a consistent phenotype, characterized by mild-borderline neurodevelopmental delay (86%), behavioral disorders (68%), severe gastro-intestinal problems (63%), and facial dysmorphism including blepharophimosis (82%), telecanthus (74%), prominent nasal bridge (68%), broad nasal tip (66%), thin vermilion of the upper lip (62%), and upslanting palpebral fissures (55%). Analysis of cell lines from three affected individuals showed that mutations act through a loss-of-function mechanism in at least two case subjects. Genotype-phenotype analysis and comparison of computationally modeled faces showed that phenotypes of these and other individuals with loss-of-function variants significantly overlapped with phenotypes of individuals with other variant types (missense and C-terminal truncating). This suggests that haploinsufficiency of TLK2 is the most likely underlying disease mechanism, leading to a consistent neurodevelopmental phenotype. This work illustrates the power of international data sharing, by the identification of 40 individuals from 26 different centers in 7 different countries, allowing the identification, clinical delineation, and genotype-phenotype evaluation of a distinct NDD caused by mutations in TLK2.
KW - facial averaging
KW - haploinsufficiency
KW - intellectual disability
KW - kinase
KW - Tousled-like
UR - http://www.scopus.com/inward/record.url?scp=85047438525&partnerID=8YFLogxK
U2 - 10.1016/j.ajhg.2018.04.014
DO - 10.1016/j.ajhg.2018.04.014
M3 - Article
AN - SCOPUS:85047438525
SN - 0002-9297
VL - 102
SP - 1195
EP - 1203
JO - American Journal of Human Genetics
JF - American Journal of Human Genetics
IS - 6
ER -