核糖体
跨膜蛋白
膜蛋白
翻译(生物学)
膜
细胞生物学
化学
蛋白质生物合成
人工细胞
生物
信使核糖核酸
生物化学
生物物理学
膜转运
蛋白质亚细胞定位预测
合成生物学
计算生物学
膜转运蛋白
易位
平动调节
膜生物物理学
转运蛋白
细胞膜
跨膜结构域
整体膜蛋白
蛋白质工程
作者
Hang Fu,Lijuan Ma,Chunhua Xu,Jinghua Li,Haochen Ouyang,Congbao Xie,Yunhai Sun,Yuanxiao Tao,Hao Wang,Shuxin Hu,Meifang Fu,Y. Yu,Honghong Zhang,Chenli Liu,Fangfu Ye,Yan Qiao,Ming Li,Ying Lu
标识
DOI:10.1073/pnas.2517323123
摘要
Synthetic cells aim to emulate living systems by reconstituting essential cellular processes within lipid-bound architectures. However, their functional complexity remains constrained by a key challenge: the synthesis and correct integration of hydrophobic membrane proteins via cell-free approaches. Here, inspired by natural cells, we developed a spatially regulated translation strategy in which membrane-anchored mRNAs recruit ribosomes to drive the cotranslational insertion of membrane proteins into lipid bilayers. This design enables efficient in situ synthesis and integration of multiple transmembrane proteins within giant unilamellar vesicles, supporting selective small-molecule transport across membranes. Importantly, the method allows for precise stoichiometric control of membrane protein composition. Together, this work establishes a minimal yet versatile framework for the direct synthesis and integration of membrane proteins, advancing the construction of functional synthetic cells.
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