Université catholique de Louvain, de Duve Institute, Brussels, Belgium.
Université catholique de Louvain, Transgenic Core Facility, Brussels, Belgium.
Hepatology. 2018 Jan;67(1):313-327. doi: 10.1002/hep.29475. Epub 2017 Nov 16.
Transcriptional networks control the differentiation of the hepatocyte and cholangiocyte lineages from embryonic liver progenitor cells and their subsequent maturation to the adult phenotype. However, how relative levels of hepatocyte and cholangiocyte gene expression are determined during differentiation remains poorly understood. Here, we identify microRNA (miR)-337-3p as a regulator of liver development. miR-337-3p stimulates expression of cholangiocyte genes and represses hepatocyte genes in undifferentiated progenitor cells in vitro and in embryonic mouse livers. Beyond the stage of lineage segregation, miR-337-3p controls the transcriptional network dynamics of developing hepatocytes and balances both cholangiocyte populations that constitute the ductal plate. miR-337-3p requires Notch and transforming growth factor-β signaling and exerts a biphasic control on the hepatocyte transcription factor hepatocyte nuclear factor 4α by modulating its activation and repression. With the help of an experimentally validated mathematical model, we show that this biphasic control results from an incoherent feedforward loop between miR-337-3p and hepatocyte nuclear factor 4α.
Our results identify miR-337-3p as a regulator of liver development and highlight how tight quantitative control of hepatic cell differentiation is exerted through specific gene regulatory network motifs. (Hepatology 2018;67:313-327).
转录网络控制着肝祖细胞向肝细胞和胆管细胞谱系的分化及其随后向成体表型的成熟。然而,在分化过程中,肝细胞和胆管细胞基因表达的相对水平是如何决定的仍知之甚少。在这里,我们鉴定出 microRNA (miR)-337-3p 是一种调节肝脏发育的因子。miR-337-3p 在体外和胚胎鼠肝脏中刺激未分化祖细胞中胆管细胞基因的表达,并抑制肝细胞基因的表达。在线粒体分离阶段之外,miR-337-3p 控制着发育中的肝细胞的转录网络动态,并平衡构成胆管板的胆管细胞群体。miR-337-3p 需要 Notch 和转化生长因子-β信号,并通过调节其激活和抑制作用对肝细胞转录因子肝细胞核因子 4α 发挥两相控制作用。借助经过实验验证的数学模型,我们表明这种两相控制作用源自 miR-337-3p 和肝细胞核因子 4α 之间的非相干前馈环。
我们的研究结果鉴定出 miR-337-3p 是肝脏发育的调节剂,并强调了通过特定的基因调控网络基序如何对肝细胞分化进行严格的定量控制。(《肝脏病学》2018 年;67:313-327)。