Massachusetts College of Pharmacy and Health Sciences University, Boston, Massachusetts.
Department of Obstetrics and Gynecology, Brigham and Women's Hospital, Boston, Massachusetts.
Curr Protoc Hum Genet. 2020 Dec;108(1):e107. doi: 10.1002/cphg.107.
Novel cytogenetic tools are increasingly based on genome sequencing for detecting chromosomal abnormalities. Different sequence-based techniques optimized for diagnosis of structural variants can be useful for narrowing down the localization of breakpoints of chromosomal abnormalities, but do not offer nucleotide resolution of breakpoints for proper interpretation of gene disruption. This protocol presents the characterization of structural variants at nucleotide resolution using Sanger sequencing after low-pass large-insert genome sequencing or other long-molecule methods. © 2020 Wiley Periodicals LLC. Basic Protocol 1: Primer design for junction amplification at translocations and inversions Basic Protocol 2: Amplification of derivative chromosomes using a long-range polymerase Alternate Protocol: Amplification of derivative chromosomes using a hot-start polymerase Basic Protocol 3: Preparation of DNA for Sanger sequencing Basic Protocol 4: Interpretation and reporting of breakpoints based on Sanger sequencing.
新型细胞遗传学工具越来越多地基于基因组测序来检测染色体异常。不同的基于序列的技术可用于诊断结构变体,可用于缩小染色体异常断点的定位,但不能提供核苷酸分辨率的断点,无法正确解释基因中断。本方案使用低通大片段插入基因组测序或其他长分子方法进行测序后,采用 Sanger 测序来实现核苷酸分辨率下的结构变异特征分析。© 2020 威利父子公司。基本方案 1:易位和倒位处连接点扩增的引物设计基本方案 2:使用长片段聚合酶扩增衍生染色体备选方案:使用热启动聚合酶扩增衍生染色体基本方案 3:用于 Sanger 测序的 DNA 制备基本方案 4:基于 Sanger 测序的断点解释和报告。