Tetra‐primer amplification refractory mutation system (ARMS) PCR used to detect 3’UTR rs1948 mutation in CHRNB4

Q4 Environmental Science
A. L. Dewi, D. K. Paramita, J. Fachiroh
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引用次数: 0

Abstract

Rs1948 A>G is a single nucleotide variation (SNV) in the 3’‐UTR of CHRNB4. Genotyping the synonymous CHRNB4 rs1948 may be useful in identifying a lung cancer susceptibility gene. The study aimed to develop a simple and easy tetra‐primer amplification refractory mutation system (ARMS PCR) for CHRNB4 rs1948. The following steps were taken to optimize tetra‐primer ARMS PCR: 1) determining the gene sequence and position of a single mutation; 2) developing outer and inner primers; 3) amplification of target gene fragments via PCR using an outer primer; 4) genotyping PCR product using Sanger sequencing; 5) determining the optimal annealing temperature and PCR cycle; 6) determining optimal outer and inner primer ratio; and 7) testing the reproducibility of the PCR program and final validation with Sanger sequencing. Genotype (PCR result) was visualized with 3% agarose gel electrophoresis. Optimum condition was determined as annealing temperature of 64.8 ºC and 35 cycles, outer and inner primer ratio of 1:6, and DNA volume of 3 µL. Sanger sequencing confirmed the results of the tetra‐primer ARMS PCR and it was shown that ARMS PCR was able to identify three different variants of CHRNB4 rs1948.
四引物扩增难治性突变系统(ARMS)PCR用于检测CHRNB4中的3’UTR rs1948突变
Rs1948 A>G是CHRNB4 3′‐UTR中的单核苷酸变异(SNV)。同义基因CHRNB4 rs1948分型可能有助于确定肺癌易感基因。本研究旨在建立一种简单易行的四引物扩增难突变系统(ARMS PCR)。优化四引物ARMS PCR的步骤如下:1)确定单个突变的基因序列和位置;2)开发内外引物;3)利用外部引物PCR扩增目的基因片段;4)采用Sanger测序对PCR产物进行基因分型;5)确定最佳退火温度和PCR周期;6)确定最佳内外底漆比例;7)测试PCR程序的可重复性,并使用Sanger测序进行最终验证。3%琼脂糖凝胶电泳显示基因型(PCR结果)。最佳条件为退火温度64.8℃,循环35次,内外引物比1:6,DNA体积为3µL。Sanger测序证实了四引物ARMS PCR的结果,表明ARMS PCR能够鉴定出CHRNB4 rs1948的三种不同变体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Indonesian Journal of Biotechnology
Indonesian Journal of Biotechnology Environmental Science-Environmental Science (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
20
审稿时长
12 weeks
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