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临床分子诊断服务中的变性高效液相色谱法

DHPLC in clinical molecular diagnostic services.

作者信息

Kosaki Kenjiro, Udaka Toru, Okuyama Torayuki

机构信息

Department of Pediatrics, Keio University School of Medicine, Tokyo, Japan.

出版信息

Mol Genet Metab. 2005 Sep-Oct;86(1-2):117-23. doi: 10.1016/j.ymgme.2005.07.033.

Abstract

A high-capacity low-cost mutation scanning method based on denaturing high-performance liquid chromatography (DHPLC) has been recently introduced. We have implemented an automated and cost-effective strategy using DHPLC. To facilitate the semi-automated analysis of multiple exons, two steps were taken. The first step was the development of a PCR protocol for the amplification of multiple exons under the same conditions. Primer sets, which amplify each exon in the entire gene, were aliquoted to and air-dried on a 96-well format PCR plate. In this way, all the exons in a gene can be simultaneously amplified on a single PCR machine. The second step was the serial DHPLC analysis of multiple amplicons under conditions optimal for each amplicon. We named the 96-well plate containing the primer pairs and the corresponding computer file used to analyze each amplicon under the pre-determined optimal conditions as the "Condition-Oriented-PCR primer-Embedded-Reactor plate," or the COPPER plate. We have developed COPPER plate systems for more than 20 congenital disorders including classic congenital syndromes like Marfan syndrome (FBN1: 65 amplicons), CHARGE syndrome (CHD7: 39 amplicons), de Lange syndrome (NIPBL: 46 amplicons), Sotos syndrome (NSD1: 30 amplicons), and Rubinstein-Taybi syndrome (CREBBP: 41 amplicons). Using the COPPER plate system, we are functioning as a reference laboratory for the clinical molecular diagnosis of congenital malformation syndromes and are presently analyzing more than 200 samples annually from all over Japan.

摘要

最近引入了一种基于变性高效液相色谱法(DHPLC)的高容量低成本突变扫描方法。我们采用了一种使用DHPLC的自动化且经济高效的策略。为便于对多个外显子进行半自动分析,采取了两个步骤。第一步是开发一种在相同条件下扩增多个外显子的PCR方案。将扩增整个基因中每个外显子的引物组分装到96孔格式的PCR板上并风干。通过这种方式,一个基因中的所有外显子可在一台PCR仪上同时扩增。第二步是在每个扩增子的最佳条件下对多个扩增产物进行连续DHPLC分析。我们将包含引物对以及用于在预定最佳条件下分析每个扩增产物的相应计算机文件的96孔板命名为“面向条件的PCR引物嵌入式反应板”,即COPPER板。我们已经为20多种先天性疾病开发了COPPER板系统,包括经典先天性综合征,如马凡综合征(FBN1:65个扩增产物)、CHARGE综合征(CHD7:39个扩增产物)、德朗热综合征(NIPBL:46个扩增产物)、索托斯综合征(NSD1:30个扩增产物)和鲁宾斯坦 - 泰比综合征(CREBBP:41个扩增产物)。使用COPPER板系统,我们作为先天性畸形综合征临床分子诊断的参考实验室,目前每年分析来自日本各地的200多个样本。

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