A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.

BACKGROUND: The spatiotemporal expression patterns of microRNAs (miRNAs) are important to the verification of their predicted function. RT-qPCR is the accepted technique for the quantification of miRNA expression; however, stem-loop RT-PCR and poly(T)-adapter assay, the two most frequently used meth...

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Main Authors: Qian Mei, Xiang Li, Yuanguang Meng, Zhiqiang Wu, Mingzhou Guo, Yali Zhao, Xiaobing Fu, Weidong Han
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3465266?pdf=render
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author Qian Mei
Xiang Li
Yuanguang Meng
Zhiqiang Wu
Mingzhou Guo
Yali Zhao
Xiaobing Fu
Weidong Han
author_facet Qian Mei
Xiang Li
Yuanguang Meng
Zhiqiang Wu
Mingzhou Guo
Yali Zhao
Xiaobing Fu
Weidong Han
author_sort Qian Mei
collection DOAJ
description BACKGROUND: The spatiotemporal expression patterns of microRNAs (miRNAs) are important to the verification of their predicted function. RT-qPCR is the accepted technique for the quantification of miRNA expression; however, stem-loop RT-PCR and poly(T)-adapter assay, the two most frequently used methods, are not very convenient in practice and have poor specificity, respectively. RESULTS: We have developed an optimal approach that integrates these two methods and allows specific and rapid detection of tiny amounts of sample RNA and reduces costs relative to other techniques. miRNAs of the same sample are polyuridylated and reverse transcribed into cDNAs using a universal poly(A)-stem-loop RT primer and then used as templates for SYBR® Green real-time PCR. The technique has a dynamic range of eight orders of magnitude with a sensitivity of up to 0.2 fM miRNA or as little as 10 pg of total RNA. Virtually no cross-reaction is observed among the closely-related miRNA family members and with miRNAs that have only a single nucleotide difference in this highly specific assay. The spatial constraint of the stem-loop structure of the modified RT primer allowed detection of miRNAs directly from cell lysates without laborious total RNA isolation, and the poly(U) tail made it possible to use multiplex RT reactions of mRNA and miRNAs in the same run. CONCLUSIONS: The cost-effective RT-qPCR of miRNAs with poly(A)-stem-loop RT primer is simple to perform and highly specific, which is especially important for samples that are precious and/or difficult to obtain.
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spelling doaj.art-534f98e7f0034d28a697d64594be37622022-12-21T19:28:46ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01710e4689010.1371/journal.pone.0046890A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.Qian MeiXiang LiYuanguang MengZhiqiang WuMingzhou GuoYali ZhaoXiaobing FuWeidong HanBACKGROUND: The spatiotemporal expression patterns of microRNAs (miRNAs) are important to the verification of their predicted function. RT-qPCR is the accepted technique for the quantification of miRNA expression; however, stem-loop RT-PCR and poly(T)-adapter assay, the two most frequently used methods, are not very convenient in practice and have poor specificity, respectively. RESULTS: We have developed an optimal approach that integrates these two methods and allows specific and rapid detection of tiny amounts of sample RNA and reduces costs relative to other techniques. miRNAs of the same sample are polyuridylated and reverse transcribed into cDNAs using a universal poly(A)-stem-loop RT primer and then used as templates for SYBR® Green real-time PCR. The technique has a dynamic range of eight orders of magnitude with a sensitivity of up to 0.2 fM miRNA or as little as 10 pg of total RNA. Virtually no cross-reaction is observed among the closely-related miRNA family members and with miRNAs that have only a single nucleotide difference in this highly specific assay. The spatial constraint of the stem-loop structure of the modified RT primer allowed detection of miRNAs directly from cell lysates without laborious total RNA isolation, and the poly(U) tail made it possible to use multiplex RT reactions of mRNA and miRNAs in the same run. CONCLUSIONS: The cost-effective RT-qPCR of miRNAs with poly(A)-stem-loop RT primer is simple to perform and highly specific, which is especially important for samples that are precious and/or difficult to obtain.http://europepmc.org/articles/PMC3465266?pdf=render
spellingShingle Qian Mei
Xiang Li
Yuanguang Meng
Zhiqiang Wu
Mingzhou Guo
Yali Zhao
Xiaobing Fu
Weidong Han
A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.
PLoS ONE
title A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.
title_full A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.
title_fullStr A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.
title_full_unstemmed A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.
title_short A facile and specific assay for quantifying microRNA by an optimized RT-qPCR approach.
title_sort facile and specific assay for quantifying microrna by an optimized rt qpcr approach
url http://europepmc.org/articles/PMC3465266?pdf=render
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