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Sequence variants in HECTD1 result in a variable neurodevelopmental disorder

delete2025-01-01
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OA
AI
G
Gazelle Zerafati‐Jahromi
E
Elias Oxman
H
Hieu D. Hoang
W
Wu‐Lin Charng
T
Tanvitha Kotla
W
Weimin Yuan
I
Ishibashi, Keito
S
Sonia Sebaoui
K
Kathryn Luedtke
B
Bryce Winrow
R
Rebecca Ganetzky
A
Anna Ruiz
C
Carmen Manso-Basúz
N
Nino Spataro
K
Kannu, Peter
T
Taryn Athey
C
Christina Peroutka
C
Caitlin Barnes
R
Richard Sidlow
G
George Anadiotis
K
Kari Magnussen
I
Irene Valenzuela
A
Alejandro Moles‐Fernández
S
Seth Berger
C
Christina Grant
É
Éric Vilain
G
Gudny A. Arnadottir
P
Patrick Sulem
T
Telma Sulem
K
Kāri Stefánsson
S
Shavonne L. Massey
N
Natalie Ginn
A
Annapurna Poduri
A
Alissa M. D’Gama
R
Rozalia Valentine
S
Sara Trowbridge
C
Chaya N. Murali
R
Rachel Franciskovich
T
Thi Hai Yen Tran
B
Bryn D. Webb
K
Kim M. Keppler‐Noreuil
A
April Hall
B
Bobbi McGivern
K
Kristin G. Monaghan
M
Maria J Guillen Sacoto
D
Dustin Baldridge
G
Gary A. Silverman
S
Sonika Dahiya
T
Tychele N. Turner
T
Tim Schedl
C
Corbin, Joshua G.
S
Stephen C. Pak
I
Irene E. Zohn *
C
Christina A. Gurnett *
DOI:10.1016/j.ajhg.2025.01.001delete
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Abstract

Abstract

En 中文
Dysregulation of genes encoding the homologous to E6AP C-terminus (HECT) E3 ubiquitin ligases has been linked to cancer and structural birth defects. One member of this family, the HECT-domain-containing protein 1 (HECTD1), mediates developmental pathways, including cell signaling, gene expression, and embryogenesis. Through GeneMatcher, we identified 14 unrelated individuals with 15 different variants in HECTD1 (10 missense, 3 frameshift, 1 nonsense, and 1 splicing variant) with neurodevelopmental disorders (NDDs), including autism, attention-deficit/hyperactivity disorder, and epilepsy. Of these 15 HECTD1 variants, 10 occurred de novo, 3 had unknown inheritance, and 2 were compound heterozygous. While all individuals in this cohort displayed NDDs, no genotype- phenotype correlation was apparent. Conditional knockout of Hectd1 in the neural lineage in mice resulted in microcephaly, severe hippocampal malformations, and complete agenesis of the corpus callosum, supporting a role for Hectd1 in embryonic brain development. Functional studies of select variants in C. elegans revealed dominant effects, including either change-of-function or loss-of-function/haploinsufficient mechanisms, which may explain phenotypic heterogeneity. Significant enrichment of de novo variants in HECTD1 was also shown in an independent cohort of 53,305 published trios with NDDs or congenital heart disease. Thus, our clinical and functional data support a critical requirement of HECTD1 for human brain development.
Keywords:
E3 UBIQUITIN LIGASE
HECTD1
PATHOGENICITY
MUTATIONS
ZONE
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American Journal of Human Genetics cover
American Journal of Human Genetics
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