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Survey of microarray technologies suitable to elucidate transcriptional networks as exemplified by studying KRAB zinc finger gene families

机译:通过研究KRAB锌指基因家族为例证的适用于阐明转录网络的微阵列技术研究

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摘要

Current microarray systems are suitable to monitor genome-wide expression patterns, to detect single-nucleotide polymorphisms (SNP), to identify target genes of transcription factors and DNA-protein interaction sites thereof as well as to determine genomic sites that are modified by methylation of CpG islands. in this review, advantages and limitations of individual microarray technologies are presented as well as experiences from ongoing studies on KRAB zinc finger gene families are taken to exemplify how different microarray approaches are applicable to elucidate complex transcriptional networks of gene regulation. However, bioinformaticians should be aware that each microarray technology has limitations in its sensitivity and selectivity that has to be taken into account once data mining on comprehensive genome-wide microarray data is conducted. in many cases, microarray results are the initial step to identify target genes of interest and to study the molecular regulation of biological processes thereof followed and validated by complementary proteome, metabolome or toponome analysis. Thus, microarray technologies can be considered a reliable approach for determining gene functions that might be modulated by electromagnetic fields.
机译:当前的微阵列系统适用于监测全基因组表达模式,检测单核苷酸多态性(SNP),鉴定转录因子的靶基因及其DNA-蛋白质相互作用位点以及确定通过甲基化甲基化修饰的基因组位点。 CpG群岛。在这篇综述中,介绍了各个微阵列技术的优点和局限性,以及正在进行的有关KRAB锌指基因家族研究的经验,以例证不同的微阵列方法如何适用于阐明基因调控的复杂转录网络。但是,生物信息学家应该意识到,每种微阵列技术在灵敏度和选择性上都有局限性,一旦在全面的全基因组微阵列数据上进行数据挖掘,就必须加以考虑。在许多情况下,微阵列结果是鉴定目标靶基因并研究其生物学过程的分子调控的第一步,随后通过补充蛋白质组学,代谢组学或膜组分析进行了验证。因此,微阵列技术可以被认为是确定可能被电磁场调节的基因功能的可靠方法。

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