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单细胞组学分析揭示了肝再生过程中肝细胞的功能多样化。

Single-cell omics analysis reveals functional diversification of hepatocytes during liver regeneration.

机构信息

Department of Molecular Genetics and Microbiology, Duke University School of Medicine, Durham, North Carolina, USA.

Department of Medicine and.

出版信息

JCI Insight. 2020 Nov 19;5(22):141024. doi: 10.1172/jci.insight.141024.

Abstract

Adult liver has enormous regenerative capacity; it can regenerate after losing two-thirds of its mass while sustaining essential metabolic functions. How the liver balances dual demands for increased proliferative activity with maintenance of organ function is unknown but essential to prevent liver failure. Using partial hepatectomy (PHx) in mice to model liver regeneration, we integrated single-cell RNA- and ATAC-Seq to map state transitions in approximately 13,000 hepatocytes at single-cell resolution as livers regenerated, and validated key findings with IHC, to uncover how the organ regenerates hepatocytes while simultaneously fulfilling its vital tissue-specific functions. After PHx, hepatocytes rapidly and transiently diversified into multiple distinct populations with distinct functional bifurcation: some retained the chromatin landscapes and transcriptomes of hepatocytes in undamaged adult livers, whereas others transitioned to acquire chromatin landscapes and transcriptomes of fetal hepatocytes. Injury-related signaling pathways known to be critical for regeneration were activated in transitioning hepatocytes, and the most fetal-like hepatocytes exhibited chromatin landscapes that were enriched with transcription factors regulated by those pathways.

摘要

成人肝脏具有巨大的再生能力;在维持基本代谢功能的同时,肝脏可以在失去三分之二的质量后再生。肝脏如何平衡增殖活性增加和维持器官功能的双重需求尚不清楚,但对于防止肝功能衰竭至关重要。我们使用小鼠的部分肝切除术 (PHx) 来模拟肝脏再生,通过整合单细胞 RNA 和 ATAC-Seq,以单细胞分辨率绘制大约 13000 个肝细胞的状态转变,并用 IHC 验证关键发现,以揭示器官如何在再生肝细胞的同时满足其重要的组织特异性功能。在 PHx 后,肝细胞迅速而短暂地多样化为多个具有不同功能分支的不同群体:一些细胞保留了未受损成年肝脏中肝细胞的染色质景观和转录组,而另一些细胞则转变为获得胎儿肝细胞的染色质景观和转录组。已知对再生至关重要的与损伤相关的信号通路在转化中的肝细胞中被激活,而最具胎儿样特征的肝细胞表现出富含受这些通路调控的转录因子的染色质景观。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6f4/7710279/379e39948e89/jciinsight-5-141024-g081.jpg

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