染色质
生物
转录因子
细胞生物学
抑制因子
表观基因组
组蛋白
表观遗传学
二价染色质
启动(农业)
细胞适应
心理压抑
巨噬细胞极化
染色质重塑
抄写(语言学)
增强子
巨噬细胞
发育可塑性
下调和上调
Mef2
遗传学
乙酰化
适应(眼睛)
基因表达调控
脱甲基酶
PRC2
组蛋白H3
细胞分化
作者
Petros Tzerpos,Dóra Bojcsuk,Krisztian Bene,Noemí Caballero-Sánchez,Zofia Parteka-Tojek,Krzysztof Banecki,Sevastianos Korsak,Sarah M. Pritchett,Andreas Patsalos,Darby Oleksak,Wilhelm K. Berger,Michalis E. Sarris,Nikolaos Giannakis,Sophie Chantalat,Tímea Cseh,Evangelia K. Papachristou,Ferenc Erdélyi,Zoltán Máté,Gábor Szabó,Gergely Nagy
出处
期刊:Immunity
[Cell Press]
日期:2026-07-01
标识
DOI:10.1016/j.immuni.2026.06.022
摘要
Macrophage activation and tissue adaptation involve precise transcriptional control by lineage-determining transcription factors (LDTFs) and stimulus-dependent TFs. The heme-regulated transcriptional repressor BACH1 clusters with myeloid LDTFs in unstimulated macrophages, suggesting a role in shaping macrophage identity and function. We found that BACH1 bound to both inactive and active regulatory regions, including latent enhancers. BACH1 recruited the NuRD complex and had dual functions, establishing early chromatin accessibility while actively repressing transcription. Upon inflammatory stimulation, BACH1 rapidly redistributed in cis to nearby promoters, reshaping chromatin occupancy, motif specificity, and enhancer-promoter interactions. BACH1 constrained 3D chromatin architecture, limiting enhancer mobility and TF complex dynamics. In vivo, Bach1 deletion impaired macrophage polarization and tissue adaptation and limited resilience during systemic and regenerative inflammation. Thus, BACH1 acts as an early chromatin accessibility-priming factor while actively repressing transcription-a regulatory activity that can be defined as pioneer repression-thereby shaping the macrophage epigenome in response to inflammatory and tissue contexts.
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