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Using surveys of Affymetrix GeneChips to study antisense expression.

机译:使用Affymetrix基因芯片的调查研究反义表达。

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摘要

We have used large surveys of Affymetrix GeneChip data in the public domain to conduct a study of antisense expression across diverse conditions. We derive correlations between groups of probes which map uniquely to the same exon in the antisense direction. When there are no probes assigned to an exon in the sense direction we find that many of the antisense groups fail to detect a coherent block of transcription. We find that only a minority of these groups contain coherent blocks of antisense expression suggesting transcription. We also derive correlations between groups of probes which map uniquely to the same exon in both sense and antisense direction. In some of these cases the locations of sense probes overlap with the antisense probes, and the sense and antisense probe intensities are correlated with each other. This configuration suggests the existence of a Natural Antisense Transcript (NAT) pair. We find the majority of such NAT pairs detected by GeneChips are formed by a transcript of an established gene and either an EST or an mRNA. In order to determine the exact antisense regulatory mechanism indicated by the correlation of sense probes with antisense probes, a further investigation is necessary for every particular case of interest. However, the analysis of microarray data has proved to be a good method to reconfirm known NATs, discover new ones, as well as to notice possible problems in the annotation of antisense transcripts.
机译:我们在公共领域使用了Affymetrix GeneChip数据的大规模调查来研究各种条件下的反义表达。我们得出了在反义方向上唯一映射到同一外显子的探针组之间的相关性。当没有在有义方向上分配给外显子的探针时,我们发现许多反义基团无法检测到连贯的转录块。我们发现这些组中只有少数包含暗示转录的反义表达的连贯块。我们还得出了探针组之间的相关性,这些探针在有义和反义方向上都唯一映射到同一外显子。在这些情况中的某些情况下,有义探针的位置与反义探针重叠,并且有义和反义探针的强度相互关联。此配置表明存在自然反义转录本(NAT)对。我们发现,GeneChips检测到的大多数此类NAT对都是由已建立的基因和EST或mRNA的转录本形成的。为了确定由有义探针与反义探针的相关性所指示的确切的反义调控机制,对于每个感兴趣的特定案例,都需要进一步的研究。然而,对微阵列数据的分析已被证明是重新确认已知NAT,发现新的NAT以及注意反义转录本注释中可能存在问题的好方法。

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