首页> 外文期刊>European journal of human genetics: EJHG >Custom oligonucleotide array-based CGH: A reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
【24h】

Custom oligonucleotide array-based CGH: A reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes

机译:基于定制寡核苷酸阵列的CGH:一种可靠的诊断工具,可检测多个目标基因中外显子拷贝数的变化

获取原文
获取原文并翻译 | 示例
       

摘要

The frequency of disease-related large rearrangements (referred to as copy-number mutations, CNMs) varies among genes, and search for these mutations has an important place in diagnostic strategies. In recent years, CGH method using custom-designed high-density oligonucleotide-based arrays allowed the development of a powerful tool for detection of alterations at the level of exons and made it possible to provide flexibility through the possibility of modeling chips. The aim of our study was to test custom-designed oligonucleotide CGH array in a diagnostic laboratory setting that analyses several genes involved in various genetic diseases, and to compare it with conventional strategies. To this end, we designed a 12-plex CGH array (135k; 135 000 probes/subarray) (Roche Nimblegen) with exonic and intronic oligonucleotide probes covering 26 genes routinely analyzed in the laboratory. We tested control samples with known CNMs and patients for whom genetic causes underlying their disorders were unknown. The contribution of this technique is undeniable. Indeed, it appeared reproducible, reliable and sensitive enough to detect heterozygous single-exon deletions or duplications, complex rearrangements and somatic mosaicism. In addition, it improves reliability of CNM detection and allows determination of boundaries precisely enough to direct targeted sequencing of breakpoints. All of these points, associated with the possibility of a simultaneous analysis of several genes and scalability 'homemade' make it a valuable tool as a new diagnostic approach of CNMs.
机译:疾病相关的大范围重排的频率(称为拷贝数突变,CNM)在不同基因之间变化,寻找这些突变在诊断策略中具有重要地位。近年来,使用定制设计的基于高密度寡核苷酸的阵列的CGH方法允许开发用于检测外显子水平变化的强大工具,并有可能通过对芯片进行建模来提供灵活性。我们研究的目的是在诊断实验室中测试定制设计的寡核苷酸CGH阵列,该阵列分析涉及多种遗传疾病的几种基因,并将其与常规策略进行比较。为此,我们设计了一个12重CGH阵列(135k; 13.5万个探针/子阵列)(Roche Nimblegen),外显子和内含子寡核苷酸探针涵盖了实验室常规分析的26个基因。我们用已知的CNMs和其疾病的遗传原因尚不清楚的患者测试了对照样品。这项技术的贡献不可否认。实际上,它似乎具有可重现性,可靠性和敏感性,足以检测杂合的单外显子缺失或重复,复杂的重排和体细胞镶嵌。另外,它提高了CNM检测的可靠性,并允许精确确定边界以指导断点的定向测序。所有这些要点,与同时分析多个基因和可扩展性“自制”的可能性相关,使其成为CNM的新诊断方法的宝贵工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号