Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, New York, NY, USA.
New York Genome Center, New York, NY, USA.
Nat Biotechnol. 2022 Oct;40(10):1488-1499. doi: 10.1038/s41587-022-01289-z. Epub 2022 May 30.
High-order three-dimensional (3D) interactions between more than two genomic loci are common in human chromatin, but their role in gene regulation is unclear. Previous high-order 3D chromatin assays either measure distant interactions across the genome or proximal interactions at selected targets. To address this gap, we developed Pore-C, which combines chromatin conformation capture with nanopore sequencing of concatemers to profile proximal high-order chromatin contacts at the genome scale. We also developed the statistical method Chromunity to identify sets of genomic loci with frequencies of high-order contacts significantly higher than background ('synergies'). Applying these methods to human cell lines, we found that synergies were enriched in enhancers and promoters in active chromatin and in highly transcribed and lineage-defining genes. In prostate cancer cells, these included binding sites of androgen-driven transcription factors and the promoters of androgen-regulated genes. Concatemers of high-order contacts in highly expressed genes were demethylated relative to pairwise contacts at the same loci. Synergies in breast cancer cells were associated with tyfonas, a class of complex DNA amplicons. These results rigorously link genome-wide high-order 3D interactions to lineage-defining transcriptional programs and establish Pore-C and Chromunity as scalable approaches to assess high-order genome structure.
人类染色质中普遍存在两个以上基因组位点之间的高阶三维(3D)相互作用,但它们在基因调控中的作用尚不清楚。以前的高阶 3D 染色质检测方法要么测量基因组中远距离的相互作用,要么测量在选定靶标上的近距离相互作用。为了解决这一差距,我们开发了 Pore-C,它将染色质构象捕获与串联的纳米孔测序相结合,以在全基因组范围内描绘近距离高阶染色质接触。我们还开发了统计方法 Chromunity,用于识别基因组区域中具有显著高于背景(“协同作用”)的高阶接触频率的基因组区域。将这些方法应用于人类细胞系,我们发现协同作用在活性染色质中的增强子和启动子以及高度转录和谱系定义基因中富集。在前列腺癌细胞中,这些包括雄激素驱动转录因子的结合位点和雄激素调节基因的启动子。与同一基因座的成对接触相比,高度表达基因中的高阶接触的串联体去甲基化。乳腺癌细胞中的协同作用与 tyfonas 有关,tyfonas 是一类复杂的 DNA 扩增子。这些结果严格地将全基因组范围的高阶 3D 相互作用与谱系定义的转录程序联系起来,并确立了 Pore-C 和 Chromunity 作为评估高阶基因组结构的可扩展方法。