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一步法对可变剪接基因进行表型分型-基因分型:CYP3A5*3多态性研究

Phenotyping-genotyping of alternatively spliced genes in one step: study of CYP3A5*3 polymorphism.

作者信息

Busi Florent, Cresteil Thierry

机构信息

ICSN--CNRS UPR2301, 91198 Gif-sur-Yvette, France.

出版信息

Pharmacogenet Genomics. 2005 Jun;15(6):433-9. doi: 10.1097/01213011-200506000-00010.

Abstract

Alternative splicing is required to increase the mRNA diversity of many genes, but can also be responsible for the abnormal expression of genes. For example, the CYP3A5*3 defective allele is caused by a single nucleotide polymorphism in intron 3. This mutation activates a cryptic acceptor splice site, which leads to the insertion of an intronic sequence containing premature termination codons in the mature mRNA, and hence the very low CYP3A5 protein expression in 75% of the Caucasian population. In the present study, we propose a novel strategy based on the quantitative real-time polymerase chain reaction with SYBR Green I chemistry, followed by melting curve analysis, to demonstrate and quantify the amount of splice variant mRNA. Using oligonucleotides flanking the insertion site, two products with different size can be obtained, which can be resolved by melting curve analysis. The relative ratio of differently spliced RNA can be estimated at the plateau phase by using the peak height ratio. For the CYP3A5 gene, the genotype, the level of expression and the proportion of alternatively spliced products were determined in a single reaction without DNA sequencing.

摘要

可变剪接对于增加许多基因的mRNA多样性是必需的,但也可能导致基因的异常表达。例如,CYP3A5*3缺陷等位基因是由内含子3中的单核苷酸多态性引起的。这种突变激活了一个隐蔽的剪接受体位点,导致在成熟mRNA中插入一个含有提前终止密码子的内含子序列,因此在75%的白种人群中CYP3A5蛋白表达非常低。在本研究中,我们提出了一种基于SYBR Green I化学的定量实时聚合酶链反应,随后进行熔解曲线分析的新策略,以证明和量化剪接变体mRNA的量。使用插入位点两侧的寡核苷酸,可以获得两种不同大小的产物,通过熔解曲线分析可以将它们区分开来。在平台期,通过使用峰高比可以估计不同剪接RNA的相对比例。对于CYP3A5基因,在无需DNA测序的单一反应中确定了基因型、表达水平和可变剪接产物的比例。

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