| Literature DB >> 31612883 |
Yannick Tauran1, Stéphane Poulain, Myriam Lereau-Bernier, Mathieu Danoy, Marie Shinohara, Bertrand-David Segard, Sachi Kato, Taketomo Kido, Atsushi Miyajima, Yasuyuki Sakai, Charles Plessy, Eric Leclerc.
Abstract
We investigated the human induced pluripotent stem cells (hiPSCs) during a sequential in vitro step-by-step differentiation into hepatocyte-like cells (HLCs) using nanoCAGE, a method for promoters, transcription factors, and transcriptome analysis. Specific gene clusters reflected the different steps of the hepatic differentiation. The proliferation step was characterized by a typical cell cycle and DNA replication. The hepatic endoderm and the HLC steps were marked by a common signature including cell interactions with extracellular matrix (ECM), lipoproteins and hepatic biomarkers (such as albumin and alpha-fetoprotein). The specific HLC profile was characterized by important transcription factors such as HIF1A, JUN, MAF, KLF6, BMP4 and with a larger expression of genes related to Wnt signaling, extracellular matrix, lipid metabolism, urea cycle, drugs, and solute transporters. HLC profile was also characterized by the activation of upstream regulators such as HNF1A, MEIS2, NFIX, WRNIP1, SP4, TAL1. Their regulatory networks highlighted HNF4a as a bridge and linked them to important processes such as EMT-MET transitions, ECM remodeling and liver development pathways (HNF3, PPARA signaling, iron metabolism) along the different steps of differentiation.Entities:
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Year: 2019 PMID: 31612883 DOI: 10.1039/c9mo00122k
Source DB: PubMed Journal: Mol Omics ISSN: 2515-4184