Characterization of DNA Methylomic Signatures in Induced Pluripotent Stem Cells During Neuronal Differentiation

In development, differentiation from a pluripotent state results in global epigenetic changes, although the extent to which this occurs in induced pluripotent stem cell-based neuronal models has not been extensively characterized. In the present study, induced pluripotent stem cell colonies (33Qn1 l...

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Veröffentlicht in:Frontiers in cell and developmental biology 2021-07, Vol.9, p.647981-647981
Hauptverfasser: Imm, Jennifer, Pishva, Ehsan, Ali, Muhammadd, Kerrigan, Talitha L, Jeffries, Aaron, Burrage, Joe, Glaab, Enrico, Cope, Emma L, Jones, Kimberley M, Allen, Nicholas D, Lunnon, Katie
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Sprache:eng
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Zusammenfassung:In development, differentiation from a pluripotent state results in global epigenetic changes, although the extent to which this occurs in induced pluripotent stem cell-based neuronal models has not been extensively characterized. In the present study, induced pluripotent stem cell colonies (33Qn1 line) were differentiated and collected at four time-points, with DNA methylation assessed using the Illumina Infinium Human Methylation EPIC BeadChip array. Dynamic changes in DNA methylation occurring during differentiation were investigated using a data-driven trajectory inference method. We identified a large number of Bonferroni-significant loci that showed progressive alterations in DNA methylation during neuronal differentiation. A gene-gene interaction network analysis identified 60 densely connected genes that were influential in the differentiation of neurons, with being the gene with the highest connectivity.
ISSN:2296-634X
2296-634X
DOI:10.3389/fcell.2021.647981