诱导多能干细胞
生物
细胞生物学
细胞
胚胎干细胞
细胞分化
细胞命运测定
模块化设计
电池类型
细胞培养
遗传学
计算机科学
转录因子
基因
操作系统
作者
Mattias Malaguti,Rosa Portero Migueles,J. A. Annoh,Daina Sadurska,Guillaume Blin,Irfan Saadi
标识
DOI:10.1101/2021.09.24.461672
摘要
ABSTRACT Cell-cell interactions govern differentiation and cell competition in pluripotent cells during early development, but the investigation of such processes is hindered by a lack of efficient analysis tools. Here we introduce SyNPL: clonal pluripotent stem cell lines which employ optimised Synthetic Notch (SynNotch) technology to report cell-cell interactions between engineered “sender” and “receiver” cells in cultured pluripotent cells and chimaeric mouse embryos. A modular design makes it straightforward to adapt the system for programming differentiation decisions non-cell-autonomously in receiver cells in response to direct contact with sender cells. We demonstrate the utility of this system by enforcing neuronal differentiation at the boundary between two cell populations. In summary, we provide a new tool which could be used to identify cell interactions and to profile changes in gene or protein expression that result from direct cell-cell contact with defined cell populations in culture and in early embryos, and which can be adapted to generate synthetic patterning of cell fate decisions. SUMMARY STATEMENT Optimised Synthetic Notch circuitry in mouse pluripotent stem cells provides a modular tool to monitor cell-cell interactions and program synthetic patterning of cell fates in culture and in embryos.
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