Costello Ita, Nowotschin Sonja, Sun Xin, Mould Arne W, Hadjantonakis Anna-Katerina, Bikoff Elizabeth K, Robertson Elizabeth J
The Sir William Dunn School of Pathology, University of Oxford, Oxford OX1 3RE, United Kingdom;
Developmental Biology Program, Sloan Kettering Institute, New York, New York 10065, USA.
Genes Dev. 2015 Oct 15;29(20):2108-22. doi: 10.1101/gad.268979.115.
Gene regulatory networks controlling functional activities of spatially and temporally distinct endodermal cell populations in the early mouse embryo remain ill defined. The T-box transcription factor Eomes, acting downstream from Nodal/Smad signals, directly activates the LIM domain homeobox transcription factor Lhx1 in the visceral endoderm. Here we demonstrate Smad4/Eomes-dependent Lhx1 expression in the epiblast marks the entire definitive endoderm lineage, the anterior mesendoderm, and midline progenitors. Conditional inactivation of Lhx1 disrupts anterior definitive endoderm development and impedes node and midline morphogenesis in part due to severe disturbances in visceral endoderm displacement. Transcriptional profiling and ChIP-seq (chromatin immunoprecipitation [ChIP] followed by high-throughput sequencing) experiments identified Lhx1 target genes, including numerous anterior definitive endoderm markers and components of the Wnt signaling pathway. Interestingly, Lhx1-binding sites were enriched at enhancers, including the Nodal-proximal epiblast enhancer element and enhancer regions controlling Otx2 and Foxa2 expression. Moreover, in proteomic experiments, we characterized a complex comprised of Lhx1, Otx2, and Foxa2 as well as the chromatin-looping protein Ldb1. These partnerships cooperatively regulate development of the anterior mesendoderm, node, and midline cell populations responsible for establishment of the left-right body axis and head formation.
控制小鼠早期胚胎中空间和时间上不同的内胚层细胞群功能活动的基因调控网络仍不清楚。T-box转录因子Eomes在Nodal/Smad信号下游起作用,直接激活内脏内胚层中的LIM结构域同源框转录因子Lhx1。在这里,我们证明上胚层中Smad4/Eomes依赖的Lhx1表达标志着整个定形内胚层谱系、前中胚层和中线祖细胞。Lhx1的条件性失活会破坏前定形内胚层的发育,并阻碍节点和中线形态发生,部分原因是内脏内胚层移位受到严重干扰。转录谱分析和ChIP-seq(染色质免疫沉淀[ChIP]后进行高通量测序)实验确定了Lhx1的靶基因,包括许多前定形内胚层标志物和Wnt信号通路的成分。有趣的是,Lhx1结合位点在增强子处富集,包括Nodal近端上胚层增强子元件以及控制Otx2和Foxa2表达的增强子区域。此外,在蛋白质组学实验中,我们鉴定了一个由Lhx1、Otx2和Foxa2以及染色质环化蛋白Ldb1组成的复合物。这些伙伴关系协同调节前中胚层、节点和中线细胞群的发育,这些细胞群负责左右体轴的建立和头部形成。