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Comparative analysis of regulatory information and circuits across distant species

机译:远距离物种的监管信息和电路的比较分析

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摘要

Despite the large evolutionary distances between metazoan species, they can show remarkable commonalities in their biology, and this has helped to establish fly and worm as model organisms for human biology. Although studies of individual elements and factors have explored similarities in gene regulation, a large-scale comparative analysis of basic principles of transcriptional regulatory features is lacking. Here we map the genome-wide binding locations of 165 human, 93 worm and 52 fly transcription regulatory factors, generating a total of 1,019 data sets from diverse cell types, developmental stages, or conditions in the three species, of which 498 (48.9%) are presented here for the first time. We find that structural properties of regulatory networks are remarkably conserved and that orthologous regulatory factor families recognize similar binding motifs in vivo and show some similar co-associations. Our results suggest that gene-regulatory properties previously observed for individual factors are general principles of metazoan regulation that are remarkably well-preserved despite extensive functional divergence of individual network connections. The comparative maps of regulatory circuitry provided here will drive an improved understanding of the regulatory underpinnings of model organism biology and how these relate to human biology, development and disease.
机译:尽管后生动物物种之间的进化距离很大,但它们在生物学上可以显示出显着的共性,这有助于将蝇和蠕虫确立为人类生物学的模型生物。尽管对单个元素和因素的研究已经探索了基因调控的相似性,但仍缺乏对转录调控特征基本原理的大规模比较分析。在这里,我们绘制了165个人类,93个蠕虫和52个果蝇转录调控因子的全基因组结合位置图,从这三种物种的不同细胞类型,发育阶段或条件中生成了1,019个数据集,其中498个(48.9% )首次出现在这里。我们发现调节网络的结构性质是非常保守的,直系同源调节因子家族在体内识别相似的结合基序并显示出一些相似的共缔合。我们的研究结果表明,以前针对个体因素观察到的基因调控特性是后生动物调控的一般原理,尽管各个网络连接的功能差异很大,但它们仍能很好地保存。此处提供的调节电路的比较图将推动对模型生物生物学的调控基础以及它们与人类生物学,发育和疾病之间的关系的更好理解。

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