Literature DB >> 32978894

Ring chromosome formation by intra-strand repairing of subtelomeric double stand breaks and clinico-cytogenomic correlations for ring chromosome 9.

Hongyan Chai1, Weizhen Ji2, Jiadi Wen1, Autumn DiAdamo1, Brittany Grommisch1, Qiping Hu3, Anna M Szekely4, Peining Li1.   

Abstract

Constitutional ring chromosome 9, r(9), is a rare chromosomal disorder. Cytogenomic analyses by karyotyping, array comparative genomic hybridization (aCGH) and whole genome sequencing (WGS) were performed in a patient of r(9). Karyotyping detected a mosaic pattern of r(9) and monosomy 9 in 83% and 17% of cells, respectively. aCGH detected subtelomeric deletions of 407 kb at 9p24.3 and 884 kb at 9q34.3 and an interstitial duplication of 5.879 Mb at 9q33.2q34.11. WGS revealed double strand breaks (DSBs) at ends of 9p24.3 and 9q34.3, inverted repeats at ends of subtelomeric and 9q33.2q34.11 regions, and microhomology sequences at the junctions of this r(9). This is the first report of r(9) analyzed by WGS to delineate the mechanism of ring chromosome formation from repairing of subtelomeric DSBs. The loss of telomeres by subtelomeric DSBs triggered inverted repeats induced intra-strand foldback and then microhomology mediated synthesis and ligation, which resulted in the formation of this r(9) with distal deletions and an interstitial duplication. Review of literature found seven patients of r(9) with clinical and cytogenomic findings. These patients and the present patient were registered into the Human Ring Chromosome Registry and a map correlating critical regions and candidate genes with relevant phenotypes was constructed. Variable phenotypes of r(9) patients could be explained by critical regions and genes of DOCK8, DMRT, SMARCA2, CD274, IL33, PTPRD, CER1, FREM1 for 9p deletions, and the EHMT1 gene for 9q34 deletion syndrome. This interactive registry of r(9) could provide information for cytogenomic diagnosis, genetics counseling and clinical management.
© 2020 Wiley Periodicals LLC.

Entities:  

Keywords:  clinical and cytogenomic findings; double stand breaks repairing; mechanism of ring chromosome formation; ring chromosome 9; whole genome sequencing

Mesh:

Year:  2020        PMID: 32978894     DOI: 10.1002/ajmg.a.61890

Source DB:  PubMed          Journal:  Am J Med Genet A        ISSN: 1552-4825            Impact factor:   2.802


  5 in total

1.  Cytogenomic Characterization of Giant Ring or Rod Marker Chromosome in Four Cases of Well-Differentiated and Dedifferentiated Liposarcoma.

Authors:  Hongyan Chai; Fang Xu; Autumn DiAdamo; Brittany Grommisch; Huanzhi Mao; Peining Li
Journal:  Case Rep Genet       Date:  2022-04-12

Review 2.  Mechanisms of structural chromosomal rearrangement formation.

Authors:  Bruna Burssed; Malú Zamariolli; Fernanda Teixeira Bellucco; Maria Isabel Melaragno
Journal:  Mol Cytogenet       Date:  2022-06-14       Impact factor: 1.904

3.  Growth retardation and congenital heart disease in a boy with a ring chromosome 6 of maternal origin.

Authors:  Yanling Dong; Jian Li; Ziye Zeng; Xue Zhang; Mingxin Liang; Hong Yi; Jianyun Luo; Junnan Li
Journal:  Mol Cytogenet       Date:  2022-03-05       Impact factor: 2.009

Review 4.  The past, present, and future for constitutional ring chromosomes: A report of the international consortium for human ring chromosomes.

Authors:  Peining Li; Barbara Dupont; Qiping Hu; Marco Crimi; Yiping Shen; Igor Lebedev; Thomas Liehr
Journal:  HGG Adv       Date:  2022-09-10

5.  Characterization of Chromosomal Breakpoints in 12 Cases with 8p Rearrangements Defines a Continuum of Fragility of the Region.

Authors:  Serena Redaelli; Donatella Conconi; Elena Sala; Nicoletta Villa; Francesca Crosti; Gaia Roversi; Ilaria Catusi; Chiara Valtorta; Maria Paola Recalcati; Leda Dalprà; Marialuisa Lavitrano; Angela Bentivegna
Journal:  Int J Mol Sci       Date:  2022-03-20       Impact factor: 5.923

  5 in total

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