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ANKRD17 is an ankyrin repeat-containing protein thought to play a role in cell cycle progression, whose ortholog in Drosophila functions in the Hippo pathway as a co-factor of Yorkie. Here, we delineate a neurodevelopmental disorder caused by de novo heterozygous ANKRD17 variants. The mutational spectrum of this cohort of 34 individuals from 32 families is highly suggestive of haploinsufficiency as the underlying mechanism of disease, with 21 truncating or essential splice site variants, 9 missense variants, 1 in-frame insertion-deletion, and 1 microdeletion (1.16 Mb). Consequently, our data indicate that loss of ANKRD17 is likely the main cause of phenotypes previously associated with large multi-gene chromosomal aberrations of the 4q13.3 region. Protein modeling suggests that most of the missense variants disrupt the stability of the ankyrin repeats through alteration of core structural residues. The major phenotypic characteristic of our cohort is a variable degree of developmental delay/intellectual disability, particularly affecting speech, while additional features include growth failure, feeding difficulties, non-specific MRI abnormalities, epilepsy and/or abnormal EEG, predisposition to recurrent infections (mostly bacterial), ophthalmological abnormalities, gait/balance disturbance, and joint hypermobility. Moreover, many individuals shared similar dysmorphic facial features. Analysis of single-cell RNA-seq data from the developing human telencephalon indicated ANKRD17 expression at multiple stages of neurogenesis, adding further evidence to the assertion that damaging ANKRD17 variants cause a neurodevelopmental disorder.

Original publication

DOI

10.1016/j.ajhg.2021.04.007

Type

Journal article

Journal

Am J Hum Genet

Publication Date

03/06/2021

Volume

108

Pages

1138 - 1150

Keywords

ANKRD17, Hippo pathway, Mask, Yorkie, ankyrin repeats, dysmorphism, intellectual disability, neurodevelopmental syndrome, speech delay, Adolescent, Adult, Child, Child, Preschool, Craniofacial Abnormalities, Female, Haploinsufficiency, Heterozygote, Humans, Infant, Intellectual Disability, Language Development Disorders, Loss of Function Mutation, Male, Pedigree, Phenotype, RNA-Binding Proteins, Signal Transduction, Syndrome, Young Adult