Department of Molecular Biology, the Hamon Center for Regenerative Science and Medicine, and Senator Paul D. Wellstone Muscular Dystrophy Cooperative Research Center, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
Department of Bioinformatics, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
Cell Stem Cell. 2019 Jul 3;25(1):69-86.e5. doi: 10.1016/j.stem.2019.03.022. Epub 2019 May 9.
The cardiogenic transcription factors (TFs) Mef2c, Gata4, and Tbx5 can directly reprogram fibroblasts to induced cardiac-like myocytes (iCLMs), presenting a potential source of cells for cardiac repair. While activity of these TFs is enhanced by Hand2 and Akt1, their genomic targets and interactions during reprogramming are not well studied. We performed genome-wide analyses of cardiogenic TF binding and enhancer profiling during cardiac reprogramming. We found that these TFs synergistically activate enhancers highlighted by Mef2c binding sites and that Hand2 and Akt1 coordinately recruit other TFs to enhancer elements. Intriguingly, these enhancer landscapes collectively resemble patterns of enhancer activation during embryonic cardiogenesis. We further constructed a cardiac reprogramming gene regulatory network and found repression of EGFR signaling pathway genes. Consistently, chemical inhibition of EGFR signaling augmented reprogramming. Thus, by defining epigenetic landscapes these findings reveal synergistic transcriptional activation across a broad landscape of cardiac enhancers and key signaling pathways that govern iCLM reprogramming.
心肌发生转录因子 (TFs) Mef2c、Gata4 和 Tbx5 可直接将成纤维细胞重编程为诱导性心肌样细胞 (iCLMs),为心脏修复提供了潜在的细胞来源。虽然 Hand2 和 Akt1 增强了这些 TF 的活性,但它们在重编程过程中的基因组靶标和相互作用尚未得到很好的研究。我们进行了心脏重编程过程中心肌发生 TF 结合和增强子特征分析的全基因组分析。我们发现这些 TF 协同激活由 Mef2c 结合位点突出显示的增强子,并且 Hand2 和 Akt1 协调地将其他 TF 募集到增强子元件上。有趣的是,这些增强子景观共同类似于胚胎心脏发生过程中增强子激活的模式。我们进一步构建了心脏重编程基因调控网络,发现 EGFR 信号通路基因受到抑制。一致地,EGFR 信号的化学抑制增强了重编程。因此,通过定义表观遗传景观,这些发现揭示了在广泛的心脏增强子和调节 iCLM 重编程的关键信号通路中协同的转录激活。