首页> 外文会议>International Conference on Intelligent Systems for Molecular Biology; 20000816-23; La Jolla,CA(US) >Analysis of Yeast's ORF Upstream Regions by Parallel Processing, Microarrays, and Computational Methods
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Analysis of Yeast's ORF Upstream Regions by Parallel Processing, Microarrays, and Computational Methods

机译:通过并行处理,微阵列和计算方法分析酵母的ORF上游区域

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We use a network of workstations to compute all pairwise alignments of the 500 bp upstream regions of 6,225 yeast ORFs (Open Reading Frames). We correlate the alignments with DNA microarray expression data from budding yeast cells over an oxidative stress time course. We confirm on a genomic scale that, in general, genes with extremely similar upstream regions have similar activity levels, even when located on different chromosomes. As the difference in upstream regions increases, the correlation rapidly drops towards zero. Divergent ORFs with overlapping upstream regions do not seem to be correlated in any way. The pairwise alignments coupled with the expression data, together with other computational techniques, suggest a few new putative regulatory binding sites that can be tested experimentally. Finally, we investigate the inherent symmetry present in the two strands of the yeast genome. We show that it extends at least all the way up to 9-mers and is likely to result from different evolutionary pressures operating at different length scales.
机译:我们使用工作站网络来计算6,225个酵母ORF(开放阅读框)的500 bp上游区域的所有成对比对。我们将比对与来自氧化应激时间过程中的出芽酵母细胞的DNA芯片表达数据进行比对。我们在基因组规模上确认,一般而言,即使位于不同的染色体上,具有极为相似的上游区域的基因也具有相似的活性水平。随着上游区域差异的增加,相关性迅速下降为零。上游区域重叠的不同ORF似乎没有任何关联。成对的比对与表达数据以及其他计算技术一起,提出了一些可以通过实验测试的新的假定调控结合位点。最后,我们研究了酵母基因组两条链中存在的固有对称性。我们表明,它至少一直延伸到9聚体,并且可能是由在不同长度范围内运行的不同进化压力导致的。

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