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首页> 外文期刊>Journal of Clinical Microbiology >Newly Emerging Mutations in the Matrix Genes of the Human Influenza A(H1N1)pdm09 and A(H3N2) Viruses Reduce the Detection Sensitivity of Real-Time Reverse Transcription-PCR
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Newly Emerging Mutations in the Matrix Genes of the Human Influenza A(H1N1)pdm09 and A(H3N2) Viruses Reduce the Detection Sensitivity of Real-Time Reverse Transcription-PCR

机译:人类流感A(H1N1)pdm09和A(H3N2)病毒基质基因中的新突变降低了实时逆转录PCR的检测灵敏度

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摘要

New variants of the influenza A(H1N1)pdm09 and A(H3N2) viruses were detected in Taiwan between 2012 and 2013. Some of these variants were not detected in clinical specimens using a common real-time reverse transcription-PCR (RT-PCR) assay that targeted the conserved regions of the viral matrix (M) genes. An analysis of the M gene sequences of the new variants revealed that several newly emerging mutations were located in the regions where the primers or probes of the real-time RT-PCR assay bind; these included three mutations (G225A, T228C, and G238A) in the A(H1N1)pdm09 virus, as well as one mutation (C163T) in the A(H3N2) virus. These accumulated mismatch mutations, together with the previously identified C154T mutation of the A(H1N1)pdm09 virus and the C153T and G189T mutations of the A(H3N2) virus, result in a reduced detection sensitivity for the real-time RT-PCR assay. To overcome the loss of assay sensitivity due to mismatch mutations, we established a real-time RT-PCR assay using degenerate nucleotide bases in both the primers and probe and successfully increased the sensitivity of the assay to detect circulating variants of the human influenza A viruses. Our observations highlight the importance of the simultaneous use of different gene-targeting real-time RT-PCR assays for the clinical diagnosis of influenza.
机译:2012年至2013年之间在台湾发现了A(H1N1)pdm09和A(H3N2)流感病毒的新变种。使用常见的实时逆转录PCR(RT-PCR)在临床标本中未检测到其中一些变种以病毒基质(M)基因的保守区域为靶点的检测方法。对新变异的M基因序列的分析表明,几个新出现的突变位于实时RT-PCR分析的引物或探针结合的区域。其中包括A(H1N1)pdm09病毒中的三个突变(G225A,T228C和G238A),以及A(H3N2)病毒中的一个突变(C163T)。这些累积的错配突变以及先前确定的A(H1N1)pdm09病毒的C154T突变以及A(H3N2)病毒的C153T和G189T突变,导致实时RT-PCR分析的检测灵敏度降低。为了克服因错配突变而导致测定灵敏度下降的问题,我们建立了实时RT-PCR测定法,在引物和探针中均使用简并核苷酸碱基,并成功提高了测定人类甲型流感病毒循环变异体的测定灵敏度。我们的观察结果凸显了同时使用不同的靶向基因的实时RT-PCR分析方法对流感的临床诊断的重要性。

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