化学
活细胞
赖氨酸
甲型流感病毒
细胞
脚印
病毒
受体
细胞生物学
生物物理学
细胞外
计算生物学
病毒进入
蛋白质结构
构象变化
细胞膜
血浆蛋白结合
病毒生命周期
细胞表面受体
仿形(计算机编程)
生物化学
细胞信号
蛋白质折叠
G蛋白偶联受体
Lift(数据挖掘)
对接(动物)
寄主(生物学)
蛋白质-蛋白质相互作用
蛋白质结构域
细胞内
正粘病毒科
作者
Shiyun Ma,Yuying Liang,Haoru Song,Ting Wang,Yuxiao Zhang,Yuxiao Zhang,Lei Zhang,Jian Chen,Haojie Lu,Y. Zhang,Y. Zhang
摘要
Understanding virus-host interactions at the cell surface remains a fundamental challenge due to the transient and conformational nature of receptor engagement. Existing methods often lack spatial specificity or fail to capture dynamic structural remodeling in living cells at the proteome-wide level. Building on our previously developed cell surface lysine labeling strategy, we here present LiFT (Living Cell Surfacome Lysine Footprinting), a chemical proteomic strategy enabling direct, high-specificity mapping of ligand-induced conformational changes through profiling the accessibility of extracellular lysines on living cells. LiFT was validated using model systems, including HSA-ibuprofen and EGFR-EGF, accurately detecting ligand-binding interfaces and conformational dynamics. When applied to influenza A virus (IAV) attachment on a host cell, LiFT revealed widespread lysine accessibility alterations across 362 host cell surface proteins and identified IGF1R as an IAV host factor. LiFT provides a living cell compatible and surface-specific approach for profiling functional receptor interactions and conformational dynamics, offering new insights into viral entry and receptor biology.
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