Radovic S, Dubsky De Wittenau G, Mandl N, Betto E, Curcio F, Morgante M, Lonigro I R
IGA Technology Services, Udine, Italy.
Department of Medical Area, University of Udine, Udine, Italy.
J Biol Regul Homeost Agents. 2018 Jan-Feb;32(1):115-121.
A comparison of the individual genomes within a species demonstrates that structural variation, including copy number variation (CNV), is a major contributor to phenotypic diversity and evolutionary adaptation. CNVs lead to the under/over-expression of a gene, according to the changes in the gene dosage, which account for the development of a number of genomic disorders. Thus, the development of efficient, rapid and accurate CNV screening is of fundamental importance. We report a method that enables the simultaneous determination of the copy numbers of several different targets as well as the discrimination among highly similar/almost identical targets that differ by only one single nucleotide variant, which establishes their copy numbers. The PCR co-amplification and single-base extension technologies are used to identify the copy number of a target sequence relative to a reference sequence of known genomic copy number in a given sample. This efficient and accurate quantification platform was successfully used to quantify the copy numbers of the primary spinal muscular atrophy-determining gene, SMN1, and the disease modifier gene, SMN2. The reliability, low-cost and potential for high-throughput make our method suitable for screening large populations as well as for use as a tool in clinical settings for genetic diagnosis/prognosis.
对一个物种内个体基因组的比较表明,包括拷贝数变异(CNV)在内的结构变异是表型多样性和进化适应的主要贡献因素。根据基因剂量的变化,CNV会导致基因的表达不足/过度表达,这解释了许多基因组疾病的发生。因此,开发高效、快速且准确的CNV筛查至关重要。我们报告了一种方法,该方法能够同时测定多个不同靶标的拷贝数,以及区分仅相差一个单核苷酸变异的高度相似/几乎相同的靶标,并确定它们的拷贝数。PCR共扩增和单碱基延伸技术用于确定给定样本中靶标序列相对于已知基因组拷贝数的参考序列的拷贝数。这个高效且准确的定量平台已成功用于定量原发性脊髓性肌萎缩症决定基因SMN1和疾病修饰基因SMN2的拷贝数。该方法的可靠性、低成本以及高通量潜力使其适用于大规模人群筛查,并可作为临床遗传诊断/预后的工具。