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A synthetic DNA-binding inhibitor of SOX2 guides human induced pluripotent stem cells to differentiate into mesoderm

机译:SOx2的合成DNA结合抑制剂引导人诱导的多能干细胞以区分中胚层

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Targeted differentiation of human induced pluripotent stem cells (hiPSCs) using only chemicals would have value-added clinical potential in the regeneration of complex cell types including cardiomyocytes. Despite the availability of several chemical inhibitors targeting proteins involved in signaling pathways, no bioactive synthetic DNA-binding inhibitors, targeting key cell fate-controlling genes such as SOX2, are yet available. Here, we demonstrate a novel DNA-based chemical approach to guide the differentiation of hiPSCs using pyrrole-imidazole polyamides (PIPs), which are sequence-selective DNA-binding synthetic molecules. Harnessing knowledge about key transcriptional changes during the induction of cardiomyocyte, we developed a DNA-binding inhibitor termed PIP-S2, targeting the 5'-CTTTGTT-3' and demonstrated that inhibition of SOX2-DNA interaction by PIP-S2 triggers the mesoderm induction in hiPSCs. Genome-wide gene expression analyses revealed that PIP-S2 induced mesoderm by targeted alterations in SOX2-associated gene regulatory networks. Also, employment of PIP-S2 along with a Wnt/beta-catenin inhibitor successfully generated spontaneously contracting cardiomyocytes, validating our concept that DNA-binding inhibitors could drive the directed differentiation of hiPSCs. Because PIPs can be fine-tuned to target specific DNA sequences, our DNA-based approach could be expanded to target and regulate key transcription factors specifically associated with desired cell types.
机译:仅使用化学物质的人诱导的多能干细胞(HIPSC)的靶向分化将在包括心肌细胞的复杂细胞类型的再生中具有增值临床潜力。尽管有几种靶向信号传导途径的蛋白质的化学抑制剂可用性,但没有生物活性合成DNA结合抑制剂,靶向诸如SOX2的关键细胞命运控制基因。在此,我们证明了一种基于DNA的基于DNA的化学方法,用于使用吡咯 - 咪唑聚酰胺(PIP)来指导HIPSC的分化,所述吡咯 - 咪唑聚酰胺(PIP)是序列选择性DNA结合合成分子。利用关于诱导心肌细胞期间的关键转录变化的知识,我们开发了一种被称为5'-CTTTGTT-3'的DNA结合抑制剂,靶向5'-CTTTGTT-3'并证明了通过PIP-S2的SOX2-DNA相互作用诱导中胚层诱导在hipscs。基因组基因表达分析显示PIP-S2通过SOX2相关基因调节网络中的靶向改变诱导Mesoderm。此外,PIP-S2的就业以及WNT /β-连环蛋白抑制剂成功地产生自发收缩的心肌细胞,验证我们的概念,即DNA结合抑制剂可以驱动HIPSC的定向分化。因为PIPS可以微调靶向特异性DNA序列,所以我们的DNA的方法可以扩展到靶向并调节与所需细胞类型有关的关键转录因子。

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