Abstract
We demonstrate the successful application of exome sequencing to discover a gene for an autosomal dominant disorder, Kabuki syndrome (OMIM%147920). We subjected the exomes of ten unrelated probands to massively parallel sequencing. After filtering against existing SNP databases, there was no compelling candidate gene containing previously unknown variants in all affected individuals. Less stringent filtering criteria allowed for the presence of modest genetic heterogeneity or missing data but also identified multiple candidate genes. However, genotypic and phenotypic stratification highlighted MLL2, which encodes a Trithorax-group histone methyltransferase: seven probands had newly identified nonsense or frameshift mutations in this gene. Follow-up Sanger sequencing detected MLL2 mutations in two of the three remaining individuals with Kabuki syndrome (cases) and in 26 of 43 additional cases. In families where parental DNA was available, the mutation was confirmed to be de novo (n = 12) or transmitted (n = 2) in concordance with phenotype. Our results strongly suggest that mutations in MLL2 are a major cause of Kabuki syndrome.
MeSH Terms
Abnormalities, Multiple/genetics
DNA-Binding Proteins/genetics
Gene Frequency
Genetic Linkage
Genetic Predisposition to Disease
Humans
Mutation/physiology
Neoplasm Proteins/genetics
Polymorphism, Single Nucleotide
Sequence Analysis, DNA/methods
Syndrome
Validation Studies as Topic
Chemicals
DNA-Binding Proteins
KMT2D protein, human
Neoplasm Proteins
Authors & Affiliations
21 authors, click to expand affiliations / ORCID
Ng Sarah B
Department of Genome Sciences, University of Washington, Seattle, Washington, USA.
Bigham Abigail W
Buckingham Kati J
Hannibal Mark C
McMillin Margaret J
Gildersleeve Heidi I
Beck Anita E
Tabor Holly K
Cooper Gregory M
Mefford Heather C
Lee Choli
Turner Emily H
Smith Joshua D
Rieder Mark J
Yoshiura Koh-Ichiro
Matsumoto Naomichi
Ohta Tohru
Niikawa Norio
Nickerson Deborah A
Bamshad Michael J
Shendure Jay
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