Nantes Université, CHU Nantes, CNRS, INSERM, l'institut du thorax, F-44000 Nantes, France.
INSERM, Nantes Université, Center for Research in Transplantation and Translational Immunology, UMR 1064, ITUN, F-44000 Nantes, France.
Cells. 2022 Dec 3;11(23):3915. doi: 10.3390/cells11233915.
Human heart development is governed by transcription factor (TF) networks controlling dynamic and temporal gene expression alterations. Therefore, to comprehensively characterize these transcriptional regulations, day-to-day transcriptomic profiles were generated throughout the directed cardiac differentiation, starting from three distinct human- induced pluripotent stem cell lines from healthy donors (32 days). We applied an expression-based correlation score to the chronological expression profiles of the TF genes, and clustered them into 12 sequential gene expression waves. We then identified a regulatory network of more than 23,000 activation and inhibition links between 216 TFs. Within this network, we observed previously unknown inferred transcriptional activations linking IRX3 and IRX5 TFs to three master cardiac TFs: GATA4, NKX2-5 and TBX5. Luciferase and co-immunoprecipitation assays demonstrated that these five TFs could (1) activate each other's expression; (2) interact physically as multiprotein complexes; and (3) together, finely regulate the expression of , encoding the major cardiac sodium channel. Altogether, these results unveiled thousands of interactions between TFs, generating multiple robust hypotheses governing human cardiac development.
人类心脏的发育受转录因子(TF)网络调控,控制着动态和时间基因表达的改变。因此,为了全面描述这些转录调控,我们从三个来自健康供体的不同的人诱导多能干细胞系开始,在定向心脏分化过程中,每天生成转录组谱。我们对 TF 基因的时间表达谱进行了基于表达的相关性评分,并将其聚类为 12 个连续的基因表达波。然后,我们在超过 216 个 TF 之间确定了一个包含 23000 多个激活和抑制链接的调控网络。在这个网络中,我们观察到了先前未知的推断转录激活,将 IRX3 和 IRX5 TF 与三个主要的心脏 TF:GATA4、NKX2-5 和 TBX5 联系起来。荧光素酶和共免疫沉淀实验表明,这五个 TF 可以:(1)激活彼此的表达;(2)作为多蛋白复合物物理相互作用;(3)共同精细调控编码主要心脏钠离子通道的 的表达。总之,这些结果揭示了 TF 之间的数千种相互作用,产生了多个控制人类心脏发育的稳健假设。