Cellular Organization and Signalling, National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bangalore, India.
School of Chemical & Biotechnology, SASTRA Deemed University, Thanjavur, Tamil Nadu, India.
PLoS Genet. 2020 Jan 6;16(1):e1008516. doi: 10.1371/journal.pgen.1008516. eCollection 2020 Jan.
Unliganded Estrogen receptor alpha (ERα) has been implicated in ligand-dependent gene regulation. Upon ligand exposure, ERα binds to several EREs relatively proximal to the pre-marked, unliganded ERα-bound sites and affects transient but robust gene expression. However, the underlying mechanisms are not fully understood. Here we demonstrate that upon ligand stimulation, persistent sites interact extensively, via chromatin looping, with the proximal transiently ERα-bound sites, forming Ligand Dependent ERα Enhancer Cluster in 3D (LDEC). The E2-target genes are regulated by these clustered enhancers but not by the H3K27Ac super-enhancers. Further, CRISPR-based deletion of TFF1 persistent site disrupts the formation of its LDEC resulting in the loss of E2-dependent expression of TFF1 and its neighboring genes within the same TAD. The LDEC overlap with nuclear ERα condensates that coalesce in a ligand and persistent site dependent manner. Furthermore, formation of clustered enhancers, as well as condensates, coincide with the active phase of signaling and their later disappearance results in the loss of gene expression even though persistent sites remain bound by ERα. Our results establish, at TFF1 and NRIP1 locus, a direct link between ERα condensates, ERα enhancer clusters, and transient, but robust, gene expression in a ligand-dependent fashion.
无配体雌激素受体 alpha(ERα)已被牵连到配体依赖性基因调控中。在配体暴露后,ERα与几个相对靠近预先标记的无配体 ERα 结合位点的 ERE 结合,并影响瞬时但强大的基因表达。然而,其潜在机制尚未完全了解。在这里,我们证明,在配体刺激下,持久结合位点通过染色质环化,与瞬时 ERα 结合的近端位点广泛相互作用,形成 3D 中的配体依赖性 ERα 增强子簇(LDEC)。这些簇状增强子调控着 E2 靶基因,但不调控 H3K27Ac 超级增强子。此外,基于 CRISPR 的 TFF1 持久结合位点的缺失破坏了其 LDEC 的形成,导致 TFF1 及其在同一 TAD 中的相邻基因的 E2 依赖性表达丧失。LDEC 与核 ERα 凝聚体重叠,这些凝聚体以配体和持久结合位点依赖的方式融合。此外,簇状增强子的形成以及凝聚体的形成与信号转导的活跃阶段相吻合,尽管持久结合位点仍被 ERα 结合,但它们的后期消失会导致基因表达的丧失。我们的研究结果在 TFF1 和 NRIP1 基因座上建立了 ERα 凝聚体、ERα 增强子簇以及配体依赖性瞬时但强大的基因表达之间的直接联系。