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BMC Medical Genetics 2013-Oct

Combinational analysis of linkage and exome sequencing identifies the causative mutation in a Chinese family with congenital cataract.

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Přihlášení Registrace
Odkaz je uložen do schránky
Xueyuan Jia
Feng Zhang
Jing Bai
Linghan Gao
Xuelong Zhang
Haiming Sun
Donglin Sun
Rongwei Guan
Wenjing Sun
Lidan Xu

Klíčová slova

Abstraktní

BACKGROUND

Congenital cataract is a Mendelian disorder that frequently causes blindness in infants. To date, various cataract-associated loci have been mapped; more than 30 genes have been identified by linkage analysis. However, the pathogenic loci in some affected families are still unknown, and new research strategies are needed. In this study, we used linkage-exome combinational analysis to further investigate the pedigree of a four-generation Chinese family with autosomal dominant coralliform cataract.

METHODS

We combined whole exome sequencing and linkage analysis to identify the causative mutation. The exome capture and next-generation sequencing were used to sequence the protein-coding regions in the genome of the proband to identify rare mutations, which were further screened for candidate mutations in linkage regions. Candidate mutations were independently verified for co-segregation in the whole pedigree using Sanger sequencing.

RESULTS

We identified a C to A transversion at nucleotide position c.70 in exon 2 of CRYGD, a cataract-associated gene. This mutation resulted in a threonine substitution for proline at amino acid residue 24.

CONCLUSIONS

We identified a missense P24T mutation in CRYGD that was responsible for coralliform cataract in our studied family. Our findings suggest that the combination of exome sequencing and linkage analysis is a powerful tool for identifying Mendelian disease mutations that might be missed by the classic linkage analysis strategy.

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