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在中国,利用微阵列检测 Wilson 病 ATP7B 突变的实验室和临床评估。

Laboratory and clinical evaluation of a microarray for the detection of ATP7B mutations in Wilson disease in China.

机构信息

Experimental Center, Beijing Friendship Hospital, Capital Medical University, Beijing, China.

Clinical Research Center for Rare Liver Diseases, Capital Medical University, Beijing, China.

出版信息

J Clin Lab Anal. 2022 Nov;36(11):e24735. doi: 10.1002/jcla.24735. Epub 2022 Oct 17.

Abstract

BACKGROUND AND OBJECTIVE

Wilson disease (WD) is an autosomal recessive copper metabolic disorder caused by mutations in ATP7B. Sanger sequencing is currently used for ATP7B variant identification. However, the ATP7B gene contains 21 exons, which makes sequencing of the entire gene both complex and time-consuming. Therefore, a simpler assay is urgently needed.

METHODS

We performed a laboratory and clinical evaluation of an oligonucleotide microarray for the detection of 24 ATP7B recurrent mutations (except p.P992L) in Chinese patients with WD.

RESULTS

The accuracy of the microarray was evaluated by screening for ATP7B mutations in 126 patients including 106 suspected WD samples and 20 patients with other liver diseases as negative control. Results were confirmed by Sanger sequencing. We established a reliable microarray system for the rapid detection of the 24 ATP7B mutations, with a sensitivity of 30 ng/test genomic DNA and specificity of 100% for all loci; the coefficient of variation in repeatability tests was <10%. Clinical evaluation showed an overall concordance between the microarray detection and sequencing of 100%, and 81.13% (86/106) of suspected WD cases showed ATP7B mutations by microarray detection. Microarray and Sanger sequencing identified p.R778L (50.94%), p.A874V (17.92%), p.P992L (11.32%), p.V1106I (11.32%), and p.I1148T (6.60%) as the most common mutations in WD patients.

CONCLUSIONS

Our microarray system is customizable and easily used for high-throughput detection of certain recurrent ATP7B mutations, providing a simpler method suitable for WD genetic diagnosis in China.

摘要

背景与目的

威尔逊病(WD)是一种常染色体隐性遗传的铜代谢障碍疾病,由 ATP7B 基因突变引起。目前,桑格测序用于 ATP7B 变异体鉴定。然而,ATP7B 基因包含 21 个外显子,这使得整个基因的测序既复杂又耗时。因此,迫切需要一种更简单的检测方法。

方法

我们对一种用于检测中国 WD 患者 24 种 ATP7B 重复突变(除 p.P992L 外)的寡核苷酸微阵列进行了实验室和临床评估。

结果

通过对 126 例患者(包括 106 例疑似 WD 样本和 20 例其他肝病患者作为阴性对照)的 ATP7B 突变进行筛查,评估了微阵列的准确性。结果通过 Sanger 测序证实。我们建立了一种可靠的微阵列系统,用于快速检测 24 种 ATP7B 突变,其检测 30ng/测试基因组 DNA 的灵敏度为 100%,所有位点的特异性为 100%;重复性测试的变异系数<10%。临床评估显示,微阵列检测与测序的总体一致性为 100%,106 例疑似 WD 病例中 81.13%(86/106)通过微阵列检测发现 ATP7B 突变。微阵列和 Sanger 测序鉴定出 WD 患者最常见的突变依次为 p.R778L(50.94%)、p.A874V(17.92%)、p.P992L(11.32%)、p.V1106I(11.32%)和 p.I1148T(6.60%)。

结论

我们的微阵列系统可定制,易于高通量检测某些常见的 ATP7B 突变,为中国 WD 遗传诊断提供了一种更简单的方法。

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