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Prenatal risk assessment of Xp21.1 duplication involving the DMD gene by optical genome mapping.


ABSTRACT: Structural variants (SVs) of unknown significance are great challenges for prenatal risk assessment, especially when involving dose-sensitive genes such as DMD The pathogenicities of 5'-terminal DMD duplications in the database remain controversial. Four prenatal cases with Xp21.1 duplications were identified by routine prenatal genomic testing, encompassing the 5'-UTR to exons 1-2 in family 1 and family 2, and to exons 1-9 in family 3. The duplication in family 4 was non-contiguous covering the 5'-UTR to exon 1 and exons 3-7. All were traced to unaffected males in the family pedigrees. A new genome-wide approach of optical genome mapping was performed in families 1, 2, and 3 to delineate the breakpoints and orientation of the duplicated fragments. The extra copies were tandemly inserted into the upstream of DMD, preserving the integrity of ORF from the second copy. The pathogenicities were thus reclassified as likely benign. Our data highlight the importance of structural delineation by optical genome mapping in prenatal risk assessment of incidentally identified SVs involving DMD and other similar large dose-sensitive genes.

SUBMITTER: Zhang Y 

PROVIDER: S-EPMC11310561 | biostudies-literature | 2024 Nov

REPOSITORIES: biostudies-literature

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Prenatal risk assessment of Xp21.1 duplication involving the <i>DMD</i> gene by optical genome mapping.

Zhang Yuanyuan Y   Du Qiang Q   Gao Haiming H   Pan Yujie Y   Liu Ningyang N   Qiu Chuang C   Liu Xiaoliang X  

Life science alliance 20240808 11


Structural variants (SVs) of unknown significance are great challenges for prenatal risk assessment, especially when involving dose-sensitive genes such as <i>DMD</i> The pathogenicities of 5'-terminal <i>DMD</i> duplications in the database remain controversial. Four prenatal cases with Xp21.1 duplications were identified by routine prenatal genomic testing, encompassing the 5'-UTR to exons 1-2 in family 1 and family 2, and to exons 1-9 in family 3. The duplication in family 4 was non-contiguou  ...[more]

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