State Key Laboratory of Cell Biology, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai 200031, China.
Key Laboratory of Systems Health Science of Zhejiang Province, School of Life Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China.
Science. 2022 Dec 2;378(6623):eabo5503. doi: 10.1126/science.abo5503.
Monitoring of cell-cell communication in multicellular organisms is fundamental to understanding diverse biological processes such as embryogenesis and tumorigenesis. To track cell-cell contacts in vivo, we developed an intercellular genetic technology to monitor cell-cell contact and to trace cell contact histories by permanently marking contacts between cells. In mice, we engineered an artificial Notch ligand into one cell (the sender cell) and an artificial receptor into another cell (the receiver cell). Contact between the sender and receiver cells triggered a synthetic Notch signaling that activated downstream transcriptional programs in the receiver cell, thereby transiently or permanently labeling it. In vivo cell-cell contact was observed during development, tissue homeostasis, and tumor growth. This technology may be useful for studying dynamic in vivo cell-cell contacts and cell fate plasticity.
监测多细胞生物中的细胞间通讯对于理解胚胎发生和肿瘤发生等多种生物学过程至关重要。为了在体内追踪细胞-细胞接触,我们开发了一种细胞间遗传技术,通过永久标记细胞间的接触来监测细胞-细胞接触并追踪细胞接触历史。在小鼠中,我们将一种人工 Notch 配体工程化到一个细胞(发送细胞)中,并将一种人工受体工程化到另一个细胞(接收细胞)中。发送细胞和接收细胞之间的接触触发了一种合成的 Notch 信号,该信号激活了接收细胞中的下游转录程序,从而使其短暂或永久标记。在发育、组织稳态和肿瘤生长过程中观察到了体内细胞-细胞接触。这项技术可能有助于研究体内动态细胞-细胞接触和细胞命运可塑性。