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A germline chimeric KANK1-DMRT1 transcript derived from a complex structural variant is associated with a congenital heart defect segregating across five generations.
Costa, Silvia Souza; Fishman, Veniamin; Pinheiro, Mara; Rodrigueiro, Andre; Sanseverino, Maria Teresa; Zielinsky, Paulo; Carvalho, Claudia M B; Rosenberg, Carla; Krepischi, Ana Cristina Victorino.
Affiliation
  • Costa SS; University of São Paulo.
  • Fishman V; Siberian Branch of the Russian Academy of Sciences.
  • Pinheiro M; University of São Paulo.
  • Rodrigueiro A; Uniscience do Brasil.
  • Sanseverino MT; Pontifícia Universidade Catolica do Rio Grande do Sul.
  • Zielinsky P; Federal University of the Rio Grande do Sul.
  • Carvalho CMB; Pacific Northwest Research Institute.
  • Rosenberg C; University of São Paulo.
  • Krepischi ACV; University of São Paulo.
Res Sq ; 2023 Dec 13.
Article in En | MEDLINE | ID: mdl-38168413
ABSTRACT
Structural variants (SVs) pose a challenge to detect and interpret, but their study provides novel biological insights and molecular diagnosis underlying rare diseases. The aim of this study was to resolve a 9p24 rearrangement segregating in a family through five generations with a congenital heart defect (congenital pulmonary and aortic valvular stenosis, and pulmonary artery stenosis), by applying a combined genomic analysis. The analysis involved multiple techniques, including karyotype, chromosomal microarray analysis (CMA), FISH, whole-genome sequencing (WGS), RNA-seq and optical genome mapping (OGM). A complex 9p24 SV was hinted at by CMA results, showing three interspersed duplicated segments. Combined WGS and OGM analyses revealed that the 9p24 duplications constitute a complex SV, on which a set of breakpoints match the boundaries of the CMA duplicated sequences. The proposed structure for this complex rearrangement implies three duplications associated with an inversion of ~ 2Mb region on chromosome 9 with a SINE element insertion at the more distal breakpoint. Interestingly, this hypothesized genomic structure of rearrangement forms a chimeric transcript of the KANK1/DMRT1 loci, which was confirmed by RNA-seq on blood from 9p24 rearrangement carriers. Altogether with breakpoint amplification and FISH analysis, this combined approach allowed a deep characterization of this complex rearrangement. Although the genotype-phenotype correlation remains elusive from the molecular mechanism point of view, this study identified a large genomic rearrangement at 9p segregating with a familial congenital clinical trait, revealing a genetic biomarker that was successfully applied for embryo selection, changing the reproductive perspective of affected individuals.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Risk_factors_studies Language: En Journal: Res Sq Year: 2023 Document type: Article Country of publication:

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Risk_factors_studies Language: En Journal: Res Sq Year: 2023 Document type: Article Country of publication: