The default and directed pathways of hepatoblast differentiation involve distinct epigenomic mechanisms

生物 增强子 染色质 组蛋白 表观遗传学 细胞分化 表观遗传学 细胞生物学 遗传学 转录因子 DNA甲基化 基因表达 基因
作者
Yang Li,Xin Wang,Xin‐Xin Yu,Lu Yang,Bi-Chen Zhou,Jing Yang,Cheng‐Ran Xu
出处
期刊:Developmental Cell [Elsevier BV]
卷期号:58 (18): 1688-1700.e6 被引量:7
标识
DOI:10.1016/j.devcel.2023.07.002
摘要

The effectiveness of multiomics analyses in defining cell differentiation pathways during development is ambiguous. During liver development, hepatoblasts follow a default or directed pathway to differentiate into hepatocytes or cholangiocytes, respectively, and this provides a practical model to address this issue. Our study discovered that promoter-associated histone modifications and chromatin accessibility dynamics, rather than enhancer-associated histone modifications, effectively delineated the "default vs. directed" process of hepatoblast differentiation. Histone H3K27me3 on bivalent promoters is associated with this asymmetric differentiation strategy in mice and humans. We demonstrated that Ezh2 and Jmjd3 exert opposing regulatory roles in hepatoblast-cholangiocyte differentiation. Additionally, active enhancers, regulated by P300, correlate with the development of both hepatocytes and cholangiocytes. This research proposes a model highlighting the division of labor between promoters and enhancers, with promoter-associated chromatin modifications governing the "default vs. directed" differentiation mode of hepatoblasts, whereas enhancer-associated modifications primarily dictate the progressive development processes of hepatobiliary lineages.
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