溶酶体
细胞生物学
细胞外
胞外囊泡
受体
生物
化学
生物化学
微泡
基因
小RNA
酶
作者
Shasha Yao,Yi Wang,Qian Tang,Yujie Yin,Yu Geng,Lei Xu,S. S. Liang,Jiajia Xiang,Jiaqi Fan,Jianbin Tang,Jian Liu,Shiqun Shao,Youqing Shen
标识
DOI:10.1038/s41467-024-51720-z
摘要
Existing strategies use bifunctional chimaeras to mediate extracellular protein degradation. However, these strategies rely on specific lysosome-trafficking receptors to facilitate lysosomal delivery, which may raise resistance concerns due to intrinsic cell-to-cell variation in receptor expression and mutations or downregulation of the receptors. Another challenge is establishing a universal platform applicable in multiple scenarios. Here, we develop MONOTAB (MOdified NanOparticle with TArgeting Binders), a plug-and-play monofunctional degradation platform that can drag extracellular targets into lysosomes for degradation. MONOTAB harnesses the inherent lysosome-targeting ability of certain nanoparticles to obviate specific receptor dependency and the hook effect. To achieve high modularity and programmable target specificity, we utilize the streptavidin-biotin interaction to immobilize antibodies or other targeting molecules on nanoparticles, through an antibody mounting approach or by direct binding. Our study reveals that MONOTAB can induce efficient degradation of diverse therapeutic targets, including membrane proteins, secreted proteins, and even extracellular vesicles. Existing methods use bifunctional chimaeras for extracellular protein degradation but rely on specific lysosome-targeting receptors, raising resistance issues. Here, the authors develop MONOTAB, a monofunctional platform that degrades extracellular proteins and vesicles without receptor dependency.
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