化学
信号转导
人工细胞
原细胞
跨膜通道
离子通道
生物物理学
第二信使系统
转导(生物物理学)
跨膜蛋白
细胞信号
细胞生物学
膜
受体
生物化学
生物
电压门控离子通道
作者
Qiuxia Yang,Zhenzhen Guo,Hui Liu,Ruizi Peng,Liujun Xu,Cheng Bi,Yaqing He,Qiaoling Liu,Weihong Tan
摘要
Cell–cell communication plays a vital role in biological activities; in particular, membrane–protein interactions are profoundly significant. In order to explore the underlying mechanism of intercellular signaling pathways, a full range of artificial systems have been explored. However, many of them are complicated and uncontrollable. Herein we designed an artificial signal transduction system able to control the influx of environmental ions by triggering the activation of synthetic transmembrane channels immobilized on giant membrane vesicles (GMVs). A membrane protein-like stimulator from one GMV community (GMVB) stimulates a receptor on another GMV community (GMVA) to release ssDNA messengers, resulting in the activation of synthetic transmembrane channels to enable the influx of ions. This event, in turn, triggers signal responses encapsulated in the GMVA protocell model. By mimicking natural signal transduction pathways, this novel prototype provides a workable tool for investigating cell–cell communication and expands biological signaling systems in general as well as explores useful platforms for addressing scientific problems which involve materials science, chemistry, and medicine.
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