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快速高分辨率熔解法鉴定人类白细胞抗原-G(HLA-G)3'非翻译区多态性+3142C/G(rs1063320)。

Rapid high-resolution melting method to identify human leukocyte antigen-G (HLA-G) 3' untranslated region polymorphism +3142C/G (rs1063320).

机构信息

Laboratoire de parasitologie médicale, biotechnologies et biomolécules, Institut Pasteur de Tunis LR11IPT06, Tunis, Tunisie.

Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis, Tunisie.

出版信息

Mol Genet Genomic Med. 2021 Nov;9(11):e1817. doi: 10.1002/mgg3.1817. Epub 2021 Oct 3.

Abstract

BACKGROUND

HLA-G is a non-classical class I gene of the human Major Histocompatibility encoding molecules with immune-modulatory properties. Expression of HLA-G is being largely studied in pathological conditions, such as tumors, viral infections, inflammation, and autoimmune diseases, grafted tissues, among others. HLA-G +3142C/G (rs1063320: dbSNP database) polymorphism is located in 3' UTR of HAL-G and plays a key role in determining the magnitude of gene and protein expression. The detection of HLA-G +3142C/G polymorphism in the most published report is done through polymerase chain reaction followed by enzymatic digestion. Therefore, it is so interesting to develop a rapid and sensitive assay to genotype HLA-G +3142C/G polymorphism. High-resolution melt analysis (HRM) is a technology that is based on the analysis of the melting profile of PCR products through gradual temperature increase. The aim of this work is to apply high-resolution melt method for genotyping the HLA-G +3142C/G polymorphism.

METHODS

DNA from 118 individuals was extracted from whole blood with QIAamp DNA blood mini kit (Qiagen, Germany). Primer couple was designed using Primer 3 online tools so as to have only one SNP in the target sequence for high HRM efficiency. Positive Controls were identified using DNA sequencing and used as reference when assigning genotypes for trial samples.

RESULTS

We were able to recognize the three genotypes with similar accuracy than DNA sequencing using high resolution melting method. Hardy-Weinberg equilibrium test shows that our population is in equilibrium for the studied SNP. Genotypes frequencies of +3142C/G polymorphism in Tunisian general population are 0.475 for heterozygote G/C, 0.186 for homozygote G/G and 0.339 for homozygote C/C.

CONCLUSION

HRM is a cost-effective method suitable for SNP genotyping.

摘要

背景

HLA-G 是人类主要组织相容性复合体编码分子的非经典 I 类基因,具有免疫调节特性。HLA-G 的表达在肿瘤、病毒感染、炎症和自身免疫性疾病、移植组织等病理情况下得到了广泛研究。HLA-G+3142C/G(rs1063320:dbSNP 数据库)多态性位于 HLA-G 的 3'UTR 中,在决定基因和蛋白表达的幅度方面起着关键作用。在大多数已发表的报道中,HLA-G+3142C/G 多态性的检测是通过聚合酶链反应(PCR)后酶切来完成的。因此,开发一种快速、灵敏的 HLA-G+3142C/G 多态性基因分型方法是非常有趣的。高分辨率熔解分析(HRM)是一种基于 PCR 产物熔解曲线分析的技术,通过逐渐升温来实现。本研究旨在应用高分辨率熔解方法对 HLA-G+3142C/G 多态性进行基因分型。

方法

采用 QIAamp DNA 血液迷你试剂盒(Qiagen,德国)从 118 名个体的全血中提取 DNA。使用 Primer 3 在线工具设计引物对,以使目标序列中只有一个 SNP,以提高 HRM 效率。阳性对照通过 DNA 测序进行鉴定,并作为试验样本基因型赋值的参考。

结果

我们能够使用高分辨率熔解方法以与 DNA 测序相似的准确性识别三种基因型。Hardy-Weinberg 平衡检验表明,我们的研究人群中该 SNP 处于平衡状态。在突尼斯普通人群中,+3142C/G 多态性的基因型频率为杂合子 G/C 0.475,纯合子 G/G 0.186,纯合子 C/C 0.339。

结论

HRM 是一种经济有效的 SNP 基因分型方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/949a/8606219/84a07b766f33/MGG3-9-e1817-g001.jpg

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