Chen Zhao, Moran Kimberly, Richards-Yutz Jennifer, Toorens Erik, Gerhart Daniel, Ganguly Tapan, Shields Carol L, Ganguly Arupa
Genetic Diagnostic Laboratory, Department of Genetics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
Hum Mutat. 2014 Mar;35(3):384-91. doi: 10.1002/humu.22488. Epub 2013 Dec 20.
Sporadic retinoblastoma (RB) is caused by de novo mutations in the RB1 gene. Often, these mutations are present as mosaic mutations that cannot be detected by Sanger sequencing. Next-generation deep sequencing allows unambiguous detection of the mosaic mutations in lymphocyte DNA. Deep sequencing of the RB1 gene on lymphocyte DNA from 20 bilateral and 70 unilateral RB cases was performed, where Sanger sequencing excluded the presence of mutations. The individual exons of the RB1 gene from each sample were amplified, pooled, ligated to barcoded adapters, and sequenced using semiconductor sequencing on an Ion Torrent Personal Genome Machine. Six low-level mosaic mutations were identified in bilateral RB and four in unilateral RB cases. The incidence of low-level mosaic mutation was estimated to be 30% and 6%, respectively, in sporadic bilateral and unilateral RB cases, previously classified as mutation negative. The frequency of point mutations detectable in lymphocyte DNA increased from 96% to 97% for bilateral RB and from 13% to 18% for unilateral RB. The use of deep sequencing technology increased the sensitivity of the detection of low-level germline mosaic mutations in the RB1 gene. This finding has significant implications for improved clinical diagnosis, genetic counseling, surveillance, and management of RB.
散发性视网膜母细胞瘤(RB)由RB1基因的新生突变引起。通常,这些突变以嵌合突变的形式存在,无法通过桑格测序检测到。新一代深度测序能够明确检测淋巴细胞DNA中的嵌合突变。对20例双侧和70例单侧RB病例的淋巴细胞DNA进行RB1基因深度测序,这些病例经桑格测序排除了突变的存在。从每个样本中扩增、汇集RB1基因的各个外显子,连接到带条形码的衔接子上,并使用Ion Torrent个人基因组测序仪上的半导体测序技术进行测序。在双侧RB病例中鉴定出6个低水平嵌合突变,在单侧RB病例中鉴定出4个。在先前分类为突变阴性的散发性双侧和单侧RB病例中,低水平嵌合突变的发生率估计分别为30%和6%。双侧RB在淋巴细胞DNA中可检测到的点突变频率从96%增加到97%,单侧RB从13%增加到18%。深度测序技术的应用提高了RB1基因低水平种系嵌合突变检测的灵敏度。这一发现对改善RB的临床诊断、遗传咨询、监测和管理具有重要意义。