蛋白质组
生物素化
蛋白质组学
计算生物学
蛋白质基因组学
生物
蛋白质阵列分析
化学
细胞生物学
分子成像
荧光
可视化
荧光寿命成像显微镜
定量蛋白质组学
荧光标记
相互作用体
细胞信号
生物素
无标记量化
荧光显微镜
作者
Zhendong Zheng,Zhiyao Tang,Li Chang,Haonan Xiao,Yuan Li,An He,Yiheng Mao,Jiangnan Zheng,Mi Ke,Rui Gao,Dan Li,Cong Liu,Zhe Dong,Ruijun Tian
标识
DOI:10.1002/ange.202519440
摘要
Abstract Mapping the spatial proteome signature within heterogeneous tissue microenvironment of clinical specimens offers unique insights into both physiological and pathological molecular phenotypes. However, to simultaneously visualize and discover these spatial proteome features is challenging. Herein, we introduce spatial visual proteomics (SVPro) which integrates single‐cell proximity biotinylation coupled with fluorescence signal amplification via the trifunctional probe. This probe uniquely combines naphthylamine‐mediated radical targeting, clickable fluorescence imaging, and biotinylation‐facilitated proteome capture, enabling all three within a single tissue section. Strategic PEGylation and multivalent fluorescent conjugation of these probes improves labeling and visualization efficiency and specificity. SVPro allows cell‐type proteomic profiling of neuronal subpopulations in distinct mouse brain regions and amyloid‐β plaques in mouse brain of Alzheimer's disease model. Notably, we identified and validated distinct marker proteins associated with amyloid‑β plaques deposited in different brain regions. SVPro therefore emerges as a robust and high‐resolution spatial proteomics approach for simultaneously visualizing the spatial architecture and proteome landscapes of intact tissue microenvironment.
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