Genomic Balancing Act: Deciphering DNA rearrangements in the Complex Chromosomal Aberration involving 5p15.2, 2q31.1 and 18q21.32

Author:

Lupski James1ORCID,Dardas Zain,Marafi Dana,Duan Ruizhi,Fatih Jawid,El-Rashidy Omnia,Grochowski Christopher,Carvalho Claudia2ORCID,Jhangiani Shalini,Bi Weimin,Du Haowei,Gibbs Richard,Posey Jennifer1ORCID,Calame Daniel3ORCID,Zaki Maha4ORCID

Affiliation:

1. Baylor College of Medicine

2. Pacific Northwest Research Institute

3. Baylor College of Medicine, Houston

4. National Research Centre

Abstract

Abstract

Despite extensive research into the genetic underpinnings of neurodevelopmental disorders (NDD), many clinical cases remain unresolved. We studied a female proband with a NDD, mildly dysmorphic facial features, and brain stem hypoplasia on neuroimaging. Comprehensive genomic analyses revealed a terminal 5p loss and terminal 18q gain in the proband while a diploid copy number for chromosomes 5 and 18 in both parents. Genomic investigations in the proband identified an unbalanced translocation t(5;18) with additional genetic material from chromosome 2 (2q31.3) inserted at the breakpoint, pointing to a complex chromosomal rearrangement (CCR) involving 5p15.2, 2q31.3, and 18q21.32. Breakpoint junction analyses enabled by long read genome sequencing unveiled the presence of four distinct junctions in the father, who is carrier of a balanced CCR. The proband inherited from the father both the abnormal chromosome 5 resulting in segmental aneusomies of chr5 (loss) and chr18 (gain) and a der(2) homologue. Evidences suggest a chromoplexy mechanism for this CCR derivation, involving double-strand breaks (DSBs) repaired by non-homologous end joining (NHEJ) or alternative end joining (alt-EJ). The complexity of the CCR and the segregation of homologues elucidate the genetic model for this family. This study demonstrates the importance of combining multiple genomic technologies to uncover genetic causes of complex neurodevelopmental syndrome and to better understand genetic disease mechanisms.

Publisher

Springer Science and Business Media LLC

Reference24 articles.

1. Zhang F, Carvalho CMB, Lupski JR. Complex human chromosomal and genomic rearrangements. Trends Genet [Internet]. 2009 Jul [cited 2023 Nov 2];25(7):298. Available from: /pmc/articles/PMC4464790/

2. Cannan WJ, Pederson DS. Mechanisms and Consequences of Double-strand DNA Break Formation in Chromatin. J Cell Physiol [Internet]. 2016 Jan 1 [cited 2023 Nov 2];231(1):3. Available from: /pmc/articles/PMC4994891/

3. Pellestor F, Anahory T, Lefort G, Puechberty J, Liehr T, Hédon B, et al. Complex chromosomal rearrangements: origin and meiotic behavior. Hum Reprod Update [Internet]. 2011 Jul [cited 2023 Nov 6];17(4):476–94. Available from: https://pubmed.ncbi.nlm.nih.gov/21486858/

4. Eldomery MK, Coban-Akdemir Z, Harel T, Rosenfeld JA, Gambin T, Stray-Pedersen A, et al. Lessons learned from additional research analyses of unsolved clinical exome cases. Genome Medicine 2017 9:1 [Internet]. 2017 Mar 21 [cited 2023 Oct 26];9(1):1–15. Available from: https://genomemedicine.biomedcentral.com/articles/10.1186/s13073-017-0412-6

5. Challis D, Yu J, Evani US, Jackson AR, Paithankar S, Coarfa C, et al. An integrative variant analysis suite for whole exome next-generation sequencing data. BMC Bioinformatics [Internet]. 2012 Jan 12 [cited 2023 Oct 26];13(1):1–12. Available from: https://bmcbioinformatics.biomedcentral.com/articles/10.1186/1471-2105-13-8

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