TY - JOUR
T1 - Novel Alu insertion in the ZEB2 gene causing Mowat-Wilson syndrome
AU - Barington, Maria
AU - Bak, Mads
AU - Kjartansdóttir, Kristín Rós
AU - Hansen, Thomas van Overeem
AU - Birkedal, Ulf
AU - Østergaard, Elsebet
AU - Hove, Hanne Buciek
N1 - © 2024 The Authors. American Journal of Medical Genetics Part A published by Wiley Periodicals LLC.
PY - 2024
Y1 - 2024
N2 - Alu elements are short, interspersed elements located throughout the genome, playing a role in human diversity, and occasionally causing genetic diseases. Here, we report a novel Alu insertion causing Mowat-Wilson syndrome, a rare neurodevelopmental disorder, in an 8-year-old boy displaying the typical clinical features for Mowat-Wilson syndrome. The variant was not initially detected in genome sequencing data, but through deep phenotyping, which pointed to only one plausible candidate gene, manual inspection of genome sequencing alignment data enabled us to identify a de novo heterozygous Alu insertion in exon 8 of the ZEB2 gene. Nanopore long-read sequencing confirmed the Alu insertion, leading to the formation of a premature stop codon and likely haploinsufficiency of ZEB2. This underscores the importance of deep phenotyping and mobile element insertion analysis in uncovering genetic causes of monogenic disorders as these elements might be overlooked in standard next-generation sequencing protocols.
AB - Alu elements are short, interspersed elements located throughout the genome, playing a role in human diversity, and occasionally causing genetic diseases. Here, we report a novel Alu insertion causing Mowat-Wilson syndrome, a rare neurodevelopmental disorder, in an 8-year-old boy displaying the typical clinical features for Mowat-Wilson syndrome. The variant was not initially detected in genome sequencing data, but through deep phenotyping, which pointed to only one plausible candidate gene, manual inspection of genome sequencing alignment data enabled us to identify a de novo heterozygous Alu insertion in exon 8 of the ZEB2 gene. Nanopore long-read sequencing confirmed the Alu insertion, leading to the formation of a premature stop codon and likely haploinsufficiency of ZEB2. This underscores the importance of deep phenotyping and mobile element insertion analysis in uncovering genetic causes of monogenic disorders as these elements might be overlooked in standard next-generation sequencing protocols.
KW - Alu
KW - AluYa5
KW - mobile element insertion analysis
KW - Mowat-Wilson syndrome
KW - SINE
KW - ZEB2
KW - Zinc Finger E-box Binding Homeobox 2/genetics
KW - Hirschsprung Disease/genetics
KW - Microcephaly/genetics
KW - Humans
KW - Male
KW - Intellectual Disability/genetics
KW - Mutagenesis, Insertional/genetics
KW - Phenotype
KW - Alu Elements/genetics
KW - Facies
KW - High-Throughput Nucleotide Sequencing
KW - Child
KW - Exons/genetics
UR - https://www.scopus.com/pages/publications/85190438547
U2 - 10.1002/ajmg.a.63581
DO - 10.1002/ajmg.a.63581
M3 - Journal article
C2 - 38600862
SN - 1552-4825
VL - 194
JO - American Journal of Medical Genetics. Part A
JF - American Journal of Medical Genetics. Part A
IS - 8
M1 - e63581
ER -