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Genetic and Chemical Screenings Identify HDAC3 as a Key Regulator in?Hepatic Differentiation of Human Pluripotent Stem Cells

机译:遗传和化学筛选确定HDAC3是人类多能干细胞肝分化中的关键调控因子

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Summary Hepatocyte-like cells (HLCs) derived from human pluripotent stem cells (hPSCs) offer a promising cell resource for disease modeling and transplantation. However, differentiated HLCs exhibit an immature phenotype and comprise a heterogeneous population. Thus, a better understanding of HLC differentiation will improve the likelihood of future application. Here, by taking advantage of CRISPR-Cas9-based genome-wide screening technology and a high-throughput hPSC screening platform with a reporter readout, we identified several potential genetic regulators of HLC differentiation. By using a chemical screening approach within our platform, we also identified compounds that can further promote HLC differentiation and preserve the characteristics of in?vitro cultured primary hepatocytes. Remarkably, both screenings identified histone deacetylase 3 (HDAC3) as a key regulator in hepatic differentiation. Mechanistically, HDAC3 formed a complex with liver transcriptional factors, e.g., HNF4, and co-regulated the transcriptional program during hepatic differentiation. This study highlights a broadly useful approach for studying and optimizing hPSC differentiation.
机译:总结源自人类多能干细胞(hPSC)的肝样细胞(HLC)为疾病建模和移植提供了有希望的细胞资源。但是,分化的HLC表现出不成熟的表型,并且包含异质群体。因此,对HLC差异的更好理解将提高将来应用的可能性。在这里,通过利用基于CRISPR-Cas9的全基因组筛选技术和带有报告读数的高通量hPSC筛选平台,我们确定了HLC分化的几种潜在遗传调控因子。通过在我们平台上使用化学筛选方法,我们还鉴定了可以进一步促进HLC分化并保留体外培养的原代肝细胞特征的化合物。值得注意的是,两次筛选均将组蛋白脱乙酰基酶3(HDAC3)鉴定为肝分化的关键调节因子。从机制上讲,HDAC3与肝转录因子(例如HNF4)形成复合物,并在肝分化过程中共同调节转录程序。这项研究突出了研究和优化hPSC分化的广泛有用的方法。

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