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Assaying Chromatin Accessibility Using ATAC-Seq in Invertebrate Chordate Embryos

机译:在无脊椎动物脊髓胚胎中使用ATAC-SEQ测定染色质可用性

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Cis-regulatory elements (CREs) are non-coding DNA regions involved in the spatio-temporal regulation of gene expression. Gene regulatory changes drive animal development and play major roles during evolution of animal body plans. Therefore, we believe that determining CREs at different developmental stages and across animal lineages is critical to understand how evolution operates through development. The Assay for Transposase-Accessible Chromatin followed by high-throughput sequencing (ATAC-seq) is a powerful technique for the study of CREs that takes advantage of Tn5 transposase activity. Starting from fewer than 105 cells, in a one-day procedure, it is possible to detect, at a genome-wide level, CREs located in open chromatin regions with high resolution. Here, we describe a detailed step-by-step ATAC-seq protocol for invertebrate chordate marine embryos. We have successfully applied this technique to amphioxus and two species of tunicate embryos. We also show an easy workflow to analyze data generated with this technique. Moreover, we point out that this method and our bioinformatic pipeline are efficient to detect CREs associated with Wnt signaling pathway by simply using embryos treated with a drug that perturb this pathway. This approach can be extended to other signaling pathways and also to embryo mutants for critical genes. Our results therefore demonstrate the power of ATAC-seq for the identification of CREs that play essential functions during animal development in a wide range of invertebrate or vertebrate animals.
机译:顺式调节元素(CRES)是非编码的DNA区域,参与基因表达的时空调节。基因监管改变驱动动物的发展,并在动物身体计划演变过程中发挥重要作用。因此,我们认为,在不同发展阶段和跨动物谱系中确定CRES对于了解进化如何通过发展运作至关重要。转座酶可接近的染色质的测定,然后是高通量测序(ATAC-SEQ)是用于研究利用TN5转座酶活性的CRES的强大技术。从少于105个细胞开始,在一天的过程中,可以在基因组的水平下检测位于具有高分辨率的开口染色质区域中的CRE。在这里,我们描述了一种用于无脊椎动物曲线海洋胚胎的详细的逐步ATAC-SEQ协议。我们已成功将这种技术应用于Amphioxus和两种剧烈胚胎。我们还显示了一个简单的工作流程来分析使用此技术生成的数据。此外,我们指出这种方法和我们的生物信息化管道通过简单地使用扰动该途径的药物处理的胚胎来检测与WNT信号传导途径相关的CRE。该方法可以扩展到其他信号传导途径,也可以延伸到临界基因的胚胎突变体。因此,我们的结果展示了ATAC-SEQ的力量,用于鉴定在广泛的无脊椎动物或脊椎动物中的动物发育过程中起到基本功能的基础。

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