Department of Biological Science, Florida State University, Tallahassee, FL, USA.
BMC Biol. 2023 Nov 20;21(1):264. doi: 10.1186/s12915-023-01766-0.
Long-range interactions between promoters and cis-regulatory elements, such as enhancers, play critical roles in gene regulation. However, the role of three-dimensional (3D) chromatin structure in orchestrating changes in transcriptional regulation during direct cell reprogramming is not fully understood.
Here, we performed integrated analyses of chromosomal architecture, epigenetics, and gene expression using Hi-C, promoter Capture Hi-C (PCHi-C), ChIP-seq, and RNA-seq during trans-differentiation of Pre-B cells into macrophages with a β-estradiol inducible C/EBPαER transgene. Within 1h of β-estradiol induction, C/EBPα translocated from the cytoplasm to the nucleus, binding to thousands of promoters and putative regulatory elements, resulting in the downregulation of Pre-B cell-specific genes and induction of macrophage-specific genes. Hi-C results were remarkably consistent throughout trans-differentiation, revealing only a small number of TAD boundary location changes, and A/B compartment switches despite significant changes in the expression of thousands of genes. PCHi-C revealed widespread changes in promoter-anchored loops with decreased interactions in parallel with decreased gene expression, and new and increased promoter-anchored interactions in parallel with increased expression of macrophage-specific genes.
Overall, our data demonstrate that C/EBPα-induced trans-differentiation involves few changes in genome architecture at the level of TADs and A/B compartments, in contrast with widespread reorganization of thousands of promoter-anchored loops in association with changes in gene expression and cell identity.
启动子和顺式调控元件(如增强子)之间的长程相互作用在基因调控中起着关键作用。然而,三维(3D)染色质结构在直接细胞重编程过程中协调转录调控变化中的作用尚不完全清楚。
在这里,我们使用 Hi-C、启动子捕获 Hi-C(PCHi-C)、ChIP-seq 和 RNA-seq,在具有 β-雌二醇诱导的 C/EBPαER 转基因的 Pre-B 细胞向巨噬细胞转分化过程中,对染色体结构、表观遗传学和基因表达进行了综合分析。在 β-雌二醇诱导的 1 小时内,C/EBPα从细胞质转位到细胞核,与数千个启动子和潜在的调控元件结合,导致 Pre-B 细胞特异性基因下调和巨噬细胞特异性基因诱导。Hi-C 结果在整个转分化过程中非常一致,仅发现少数 TAD 边界位置变化和 A/B 区室切换,尽管数千个基因的表达发生了显著变化。PCHi-C 揭示了广泛的与基因表达下调平行的启动子锚定环变化,以及与巨噬细胞特异性基因表达上调平行的新的和增加的启动子锚定相互作用。
总体而言,我们的数据表明,C/EBPα诱导的转分化涉及 TAD 水平和 A/B 区室的基因组结构变化很少,而与基因表达和细胞身份变化相关的数千个启动子锚定环的广泛重组则相反。