| Literature DB >> 36035248 |
Ruizhi Duan1, Hadia Hijazi1, Elif Yilmaz Gulec2, Hatice Koçak Eker3, Silvia R Costa4, Yavuz Sahin5, Zeynep Ocak6, Sedat Isikay7, Ozge Ozalp8, Sevcan Bozdogan9, Huseyin Aslan8, Nursel Elcioglu10,11, Débora R Bertola4,12, Alper Gezdirici13, Haowei Du1, Jawid M Fatih1, Christopher M Grochowski1, Gulsen Akay1, Shalini N Jhangiani14, Ender Karaca1, Shen Gu1, Zeynep Coban-Akdemir1, Jennifer E Posey1, Yavuz Bayram1, V Reid Sutton1,15, Claudia M B Carvalho1, Davut Pehlivan1,15,16,17, Richard A Gibbs1,14, James R Lupski1,14,15,18.
Abstract
Genetic heterogeneity, reduced penetrance, and variable expressivity, the latter including asymmetric body axis plane presentations, have all been described in families with congenital limb malformations (CLMs). Interfamilial and intrafamilial heterogeneity highlight the complexity of the underlying genetic pathogenesis of these developmental anomalies. Family-based genomics by exome sequencing (ES) and rare variant analyses combined with whole-genome array-based comparative genomic hybridization were implemented to investigate 18 families with limb birth defects. Eleven of 18 (61%) families revealed explanatory variants, including 7 single-nucleotide variant alleles and 3 copy number variants (CNVs), at previously reported "disease trait associated loci": BHLHA9, GLI3, HOXD cluster, HOXD13, NPR2, and WNT10B. Breakpoint junction analyses for all three CNV alleles revealed mutational signatures consistent with microhomology-mediated break-induced replication, a mechanism facilitated by Alu/Alu-mediated rearrangement. Homozygous duplication of BHLHA9 was observed in one Turkish kindred and represents a novel contributory genetic mechanism to Gollop-Wolfgang Complex (MIM: 228250), where triplication of the locus has been reported in one family from Japan (i.e., 4n = 2n + 2n versus 4n = 3n + 1n allelic configurations). Genes acting on limb patterning are sensitive to a gene dosage effect and are often associated with an allelic series. We extend an allele-specific gene dosage model to potentially assist, in an adjuvant way, interpretations of interconnections among an allelic series, clinical severity, and reduced penetrance of the BHLHA9-related CLM spectrum.Entities:
Keywords: Alu/Alu-mediated rearrangement; SV mutagenesis; allelic series; birth defect; clinical genomics; congenital limb malformation; developmental genomics; exome sequencing analysis; gene dosage effect; limb development
Year: 2022 PMID: 36035248 PMCID: PMC9403727 DOI: 10.1016/j.xhgg.2022.100132
Source DB: PubMed Journal: HGG Adv ISSN: 2666-2477