Donor cell memory confers a metastable state of directly converted cells

供体细胞记忆赋予直接转化细胞的亚稳态

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作者:Kee-Pyo Kim, Cui Li, Daria Bunina, Hyun-Woo Jeong, Julia Ghelman, Juyong Yoon, Borami Shin, Hongryeol Park, Dong Wook Han, Judith B Zaugg, Johnny Kim, Tanja Kuhlmann, Ralf H Adams, Kyung-Min Noh, Steven A Goldman, Hans R Schöler

Abstract

Generation of induced oligodendrocyte progenitor cells (iOPCs) from somatic fibroblasts is a strategy for cell-based therapy of myelin diseases. However, iOPC generation is inefficient, and the resulting iOPCs exhibit limited expansion and differentiation competence. Here we overcome these limitations by transducing an optimized transcription factor combination into a permissive donor phenotype, the pericyte. Pericyte-derived iOPCs (PC-iOPCs) are stably expandable and functionally myelinogenic with high differentiation competence. Unexpectedly, however, we found that PC-iOPCs are metastable so that they can produce myelination-competent oligodendrocytes or revert to their original identity in a context-dependent fashion. Phenotypic reversion of PC-iOPCs is tightly linked to memory of their original transcriptome and epigenome. Phenotypic reversion can be disconnected from this donor cell memory effect, and in vivo myelination can eventually be achieved by transplantation of O4+ pre-oligodendrocytes. Our data show that donor cell source and memory can contribute to the fate and stability of directly converted cells.

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