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PMID: 24603971 已发表 · epublish 英语

Detection of chromosomal breakpoints in patients with developmental delay and speech disorders.

PloS one ·第 9 卷 ·第 6 期 ·2015-02-12

Utami Kagistia H, Hillmer Axel M, Aksoy Irene, Chew Elaine G Y, Teo Audrey S M, Zhang Zhenshui, Lee Charlie W H, Chen Pauline J, Seng Chan Chee, Ariyaratne Pramila N, Rouam Sigrid L, Soo Lim Seong, Yousoof Saira, Prokudin Ivan, Peters Gregory, Collins Felicity, Wilson Meredith, Kakakios Alyson, Haddad Georges, Menuet Arnaud, Perche Olivier, Tay Stacey Kiat Hong, Sung Ken W K, Ruan Xiaoan, Ruan Yijun, Liu Edison T, Briault Sylvain, Jamieson Robyn V, Davila Sonia, Cacheux Valere

摘要

Delineating candidate genes at the chromosomal breakpoint regions in the apparently balanced chromosome rearrangements (ABCR) has been shown to be more effective with the emergence of next-generation sequencing (NGS) technologies. We employed a large-insert (7-11 kb) paired-end tag sequencing technology (DNA-PET) to systematically analyze genome of four patients harbouring cytogenetically defined ABCR with neurodevelopmental symptoms, including developmental delay (DD) and speech disorders. We characterized structural variants (SVs) specific to each individual, including those matching the chromosomal breakpoints. Refinement of these regions by Sanger sequencing resulted in the identification of five disrupted genes in three individuals: guanine nucleotide binding protein, q polypeptide (GNAQ), RNA-binding protein, fox-1 homolog (RBFOX3), unc-5 homolog D (C.elegans) (UNC5D), transmembrane protein 47 (TMEM47), and X-linked inhibitor of apoptosis (XIAP). Among them, XIAP is the causative gene for the immunodeficiency phenotype seen in the patient. The remaining genes displayed specific expression in the fetal brain and have known biologically relevant functions in brain development, suggesting putative candidate genes for neurodevelopmental phenotypes. This study demonstrates the application of NGS technologies in mapping individual gene disruptions in ABCR as a resource for deciphering candidate genes in human neurodevelopmental disorders (NDDs).

文献信息
期刊
PloS one
期刊简称
PLoS One
发表日期
2015-02-12
收录日期
2014-03-07
更新日期
2015-05-15
语言
英语
国家/地区
United States
NLM ID
101285081
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