TY - JOUR
T1 - Pathogenic variants in KMT2C result in a neurodevelopmental disorder distinct from Kleefstra and Kabuki syndromes
AU - Rots, Dmitrijs
AU - Choufani, Sanaa
AU - Faundes, Victor
AU - Dingemans, Alexander J.M.
AU - Joss, Shelagh
AU - Foulds, Nicola
AU - Jones, Elizabeth A.
AU - Stewart, Sarah
AU - Vasudevan, Pradeep
AU - Dabir, Tabib
AU - Park, Soo Mi
AU - Jewell, Rosalyn
AU - Brown, Natasha
AU - Pais, Lynn
AU - Jacquemont, Sébastien
AU - Jizi, Khadijé
AU - Ravenswaaij-Arts, Conny M.A.van
AU - Kroes, Hester Y.
AU - Stumpel, Constance T.R.M.
AU - Ockeloen, Charlotte W.
AU - Diets, Illja J.
AU - Nizon, Mathilde
AU - Vincent, Marie
AU - Cogné, Benjamin
AU - Besnard, Thomas
AU - Kambouris, Marios
AU - Anderson, Emily
AU - Zackai, Elaine H.
AU - McDougall, Carey
AU - Donoghue, Sarah
AU - O'Donnell-Luria, Anne
AU - Valivullah, Zaheer
AU - O'Leary, Melanie
AU - Srivastava, Siddharth
AU - Byers, Heather
AU - Leslie, Nancy
AU - Mazzola, Sarah
AU - Tiller, George E.
AU - Vera, Moin
AU - Shen, Joseph J.
AU - Boles, Richard
AU - Jain, Vani
AU - Brischoux-Boucher, Elise
AU - Kinning, Esther
AU - Simpson, Brittany N.
AU - Giltay, Jacques C.
AU - Harris, Jacqueline
AU - Vernimmen, Vivian
AU - Sinnema, Margje
AU - Brunner, Han G.
AU - Et al.
AU - Kleefstra, Tjitske
AU - Weksberg, Rosanna
N1 - Publisher Copyright:
© 2024 American Society of Human Genetics
PY - 2024/8/8
Y1 - 2024/8/8
N2 - Trithorax-related H3K4 methyltransferases, KMT2C and KMT2D, are critical epigenetic modifiers. Haploinsufficiency of KMT2C was only recently recognized as a cause of neurodevelopmental disorder (NDD), so the clinical and molecular spectrums of the KMT2C-related NDD (now designated as Kleefstra syndrome 2) are largely unknown. We ascertained 98 individuals with rare KMT2C variants, including 75 with protein-truncating variants (PTVs). Notably, ∼15% of KMT2C PTVs were inherited. Although the most highly expressed KMT2C transcript consists of only the last four exons, pathogenic PTVs were found in almost all the exons of this large gene. KMT2C variant interpretation can be challenging due to segmental duplications and clonal hematopoesis-induced artifacts. Using samples from 27 affected individuals, divided into discovery and validation cohorts, we generated a moderate strength disorder-specific KMT2C DNA methylation (DNAm) signature and demonstrate its utility in classifying non-truncating variants. Based on 81 individuals with pathogenic/likely pathogenic variants, we demonstrate that the KMT2C-related NDD is characterized by developmental delay, intellectual disability, behavioral and psychiatric problems, hypotonia, seizures, short stature, and other comorbidities. The facial module of PhenoScore, applied to photographs of 34 affected individuals, reveals that the KMT2C-related facial gestalt is significantly different from the general NDD population. Finally, using PhenoScore and DNAm signatures, we demonstrate that the KMT2C-related NDD is clinically and epigenetically distinct from Kleefstra and Kabuki syndromes. Overall, we define the clinical features, molecular spectrum, and DNAm signature of the KMT2C-related NDD and demonstrate they are distinct from Kleefstra and Kabuki syndromes highlighting the need to rename this condition.
AB - Trithorax-related H3K4 methyltransferases, KMT2C and KMT2D, are critical epigenetic modifiers. Haploinsufficiency of KMT2C was only recently recognized as a cause of neurodevelopmental disorder (NDD), so the clinical and molecular spectrums of the KMT2C-related NDD (now designated as Kleefstra syndrome 2) are largely unknown. We ascertained 98 individuals with rare KMT2C variants, including 75 with protein-truncating variants (PTVs). Notably, ∼15% of KMT2C PTVs were inherited. Although the most highly expressed KMT2C transcript consists of only the last four exons, pathogenic PTVs were found in almost all the exons of this large gene. KMT2C variant interpretation can be challenging due to segmental duplications and clonal hematopoesis-induced artifacts. Using samples from 27 affected individuals, divided into discovery and validation cohorts, we generated a moderate strength disorder-specific KMT2C DNA methylation (DNAm) signature and demonstrate its utility in classifying non-truncating variants. Based on 81 individuals with pathogenic/likely pathogenic variants, we demonstrate that the KMT2C-related NDD is characterized by developmental delay, intellectual disability, behavioral and psychiatric problems, hypotonia, seizures, short stature, and other comorbidities. The facial module of PhenoScore, applied to photographs of 34 affected individuals, reveals that the KMT2C-related facial gestalt is significantly different from the general NDD population. Finally, using PhenoScore and DNAm signatures, we demonstrate that the KMT2C-related NDD is clinically and epigenetically distinct from Kleefstra and Kabuki syndromes. Overall, we define the clinical features, molecular spectrum, and DNAm signature of the KMT2C-related NDD and demonstrate they are distinct from Kleefstra and Kabuki syndromes highlighting the need to rename this condition.
KW - DNA methylation
KW - EHMT1
KW - Kabuki syndrome
KW - Kleefstra syndrome
KW - KMT2C
KW - KMT2D
KW - neurodevelopmental disorder
U2 - 10.1016/j.ajhg.2024.06.009
DO - 10.1016/j.ajhg.2024.06.009
M3 - Article
SN - 0002-9297
VL - 111
SP - 1626
EP - 1642
JO - American Journal of Human Genetics
JF - American Journal of Human Genetics
IS - 8
ER -