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使用PHILO ChIP-seq高通量捕获转录因子驱动的表观基因组动态变化。

High-throughput capture of transcription factor-driven epigenome dynamics using PHILO ChIP-seq.

作者信息

Choudhary Aanchal, Ammari Moonia, Yoon Hyuk Sung, Zander Mark

机构信息

Waksman Institute of Microbiology, Department of Plant Biology, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.

出版信息

Nucleic Acids Res. 2024 Dec 11;52(22):e105. doi: 10.1093/nar/gkae1123.

Abstract

Assessing the dynamics of chromatin features and transcription factor (TF) binding at scale remains a significant challenge in plants. Here, we present PHILO (Plant HIgh-throughput LOw input) ChIP-seq, a high-throughput ChIP-seq platform that enables the cost-effective and extensive capture of TF binding and genome-wide distributions of histone modifications. The PHILO ChIP-seq pipeline is adaptable to many plant species, requires very little starting material (1mg), and provides the option to use MNase (micrococcal nuclease) for chromatin fragmentation. By employing H3K9ac PHILO ChIP-seq on eight Arabidopsis thaliana jasmonic acid (JA) pathway mutants, with the simultaneous processing of over 100 samples, we not only recapitulated but also expanded the current understanding of the intricate interplay between the master TFs MYC2/3/4 and various chromatin regulators. Additionally, our analyses brought to light previously unknown histone acetylation patterns within the regulatory regions of MYC2 target genes in Arabidopsis, which is also conserved in tomato (Solanum lycopersicum). In summary, our PHILO ChIP-seq platform demonstrates its high effectiveness in investigating TF binding and chromatin dynamics on a large scale in plants, paving the way for the cost-efficient realization of complex experimental setups.

摘要

大规模评估植物染色质特征和转录因子(TF)结合的动态变化仍然是一项重大挑战。在此,我们展示了PHILO(植物高通量低起始量)ChIP-seq,这是一种高通量ChIP-seq平台,能够经济高效地广泛捕获TF结合以及全基因组范围的组蛋白修饰分布。PHILO ChIP-seq流程适用于多种植物物种,所需起始材料极少(1毫克),并提供使用微球菌核酸酶(MNase)进行染色质片段化的选项。通过对八个拟南芥茉莉酸(JA)途径突变体进行H3K9ac PHILO ChIP-seq,并同时处理超过100个样本,我们不仅重现了,还扩展了目前对主要转录因子MYC2/3/4与各种染色质调节因子之间复杂相互作用的理解。此外,我们的分析揭示了拟南芥中MYC2靶基因调控区域内以前未知的组蛋白乙酰化模式,这种模式在番茄(Solanum lycopersicum)中也保守。总之,我们的PHILO ChIP-seq平台在大规模研究植物TF结合和染色质动态变化方面显示出其高效性,为经济高效地实现复杂实验设置铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77cb/11662648/7c8387d87f0d/gkae1123figgra1.jpg

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