Genomic diagnosis for children with intellectual disability and/or developmental delay
Геномная диагностика детей с умственной отсталостью и/или задержкой развития
2017-05-17
SCID: 54.1/xj8zbn7w
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genomic diagnosisproband-parent triosvariants of uncertain significancewhole-exome sequencingwhole-genome sequencing
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Abstract (AI)
BACKGROUND: Developmental disabilities have diverse genetic causes that must be identified to facilitate precise diagnoses. We describe genomic data from 371 affected individuals, 309 of which were sequenced as proband-parent trios. METHODS: Whole-exome sequences (WES) were generated for 365 individuals (127 affected) and whole-genome sequences (WGS) were generated for 612 individuals (244 affected). RESULTS: Pathogenic or likely pathogenic variants were found in 100 individuals (27%), with variants of uncertain significance in an additional 42 (11.3%). We found that a family history of neurological disease, especially the presence of an affected first-degree relative, reduces the pathogenic/likely pathogenic variant identification rate, reflecting both the disease relevance and ease of interpretation of de novo variants. We also found that improvements to genetic knowledge facilitated interpretation changes in many cases. Through systematic reanalyses, we have thus far reclassified 15 variants, with 11.3% of families who initially were found to harbor a VUS and 4.7% of families with a negative result eventually found to harbor a pathogenic or likely pathogenic variant. To further such progress, the data described here are being shared through ClinVar, GeneMatcher, and dbGaP. CONCLUSIONS: Our data strongly support the value of large-scale sequencing, especially WGS within proband-parent trios, as both an effective first-choice diagnostic tool and means to advance clinical and research progress related to pediatric neurological disease.
Key Findings
1
Family history of neurological disease, especially an affected first-degree relative, reduces the rate of identifying pathogenic/likely pathogenic variants.
2
Pathogenic or likely pathogenic variants were identified in 100 of 371 affected individuals (27%).
3
Systematic reanalysis led to reclassification of 15 variants, converting 11.3% of initial-VUS families and 4.7% of initially negative families to pathogenic/likely pathogenic.
4
The study shares genomic data via ClinVar, GeneMatcher, and dbGaP to facilitate further clinical and research progress.
5
Variants of uncertain significance (VUS) were found in 42 individuals (11.3%).
6
Whole-genome sequencing (WGS), particularly in proband-parent trios, is supported as an effective first-choice diagnostic tool for pediatric developmental and intellectual disability.
Research Object
Genomic sequencing-based diagnostic evaluation of children with intellectual disability and/or developmental delay
Research Subject
Identification and classification of pathogenic, likely pathogenic, and uncertain genetic variants (including diagnostic yield, impact of family history, de novo variant interpretation, and value of trio WGS/WES and systematic reanalysis)
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2017-05-17
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