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Position and distance specificity are important determinants of cis-regulatory motifs in addition to evolutionary conservation

机译:位置和距离的特异性是决定性的重要决定因素,除了进化的保守性

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Computational discovery of cis-regulatory elements remains challenging. To cope with the high false positives, evolutionary conservation is routinely used. However, conservation is only one of the attributes of cis-regulatory elements and is neither necessary nor sufficient. Here, we assess two additional attributes-positional and inter- motif distance specificity-that are critical for interactions between transcription factors. We first show that for a greater than expected fraction of known motifs, the genes that contain the motifs in their promoters in a position-specific or distance-specific manner are related, both in function and/or in expression pattern. We then use the position and distance specificity to discover novel motifs. Our work highlights the importance of distance and position specificity, in addition to the evolutionary conservation, in discovering cis-regulatory motifs.
机译:顺式调控元件的计算发现仍然具有挑战性。为了应对高误报率,通常使用进化保守性。但是,保守仅是顺式调节元件的属性之一,既不是必需的也不是足够的。在这里,我们评估了两个附加属性-位置和基序间距离特异性-这对于转录因子之间的相互作用至关重要。我们首先表明,对于已知基序而言,要比预期的比例更大,在其启动子中以位置特异性或距离特异性方式包含这些基序的基因在功能和/或表达方式上都是相关的。然后,我们使用位置和距离的特异性来发现新颖的图案。我们的工作强调了在发现顺式调控基序中,除了进化保守性以外,距离和位置特异性的重要性。

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