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Targeted resequencing of HIV variants by microarray thermodynamics

机译:通过微阵列热力学对HIV变体进行靶向重测序

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摘要

Within a single infected individual, a virus population can have a high genomic variability. In the case of HIV, several mutations can be present even in a small genomic window of 20–30 nucleotides. For diagnostics purposes, it is often needed to resequence genomic subsets where crucial mutations are known to occur. In this article, we address this issue using DNA microarrays and inputs from hybridization thermodynamics. Hybridization signals from multiple probes are analysed, including strong signals from perfectly matching (PM) probes and a large amount of weaker cross-hybridization signals from mismatching (MM) probes. The latter are crucial in the data analysis. Seven coded clinical samples (HIV-1) are analyzed, and the microarray results are in full concordance with Sanger sequencing data. Moreover, the thermodynamic analysis of microarray signals resolves inherent ambiguities in Sanger data of mixed samples and provides additional clinically relevant information. These results show the reliability and added value of DNA microarrays for point-of-care diagnostic purposes.
机译:在单个感染个体中,病毒种群可能具有较高的基因组变异性。就HIV而言,即使在一个20–30个核苷酸的小基因组窗口中,也可能存在一些突变。出于诊断目的,通常需要对已知发生关键突变的基因组子集重新排序。在本文中,我们使用DNA微阵列和杂交热力学的输入来解决此问题。分析了来自多个探针的杂交信号,包括来自完全匹配(PM)探针的强信号和来自不匹配(MM)探针的大量较弱的交叉杂交信号。后者在数据分析中至关重要。分析了七个编码的临床样本(HIV-1),并且微阵列结果与Sanger测序数据完全一致。此外,微阵列信号的热力学分析解决了混合样本Sanger数据中的固有歧义,并提供了其他临床相关信息。这些结果表明了DNA微阵列用于即时诊断的可靠性和附加价值。

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