化学
降级(电信)
细胞生物学
生物化学
信号转导
计算生物学
产量(工程)
纳米技术
癌症研究
免疫系统
作者
Bide Tong,Yulei Wang,Junyu Wei,ZiXuan Ou,Huaizhen Liang,Jie Lei,Dingchao Zhu,Hanpeng Xu,Lei Tan,Zhiwei Liao,Cao Yang
标识
DOI:10.1016/j.chembiol.2026.03.007
摘要
Extracellular vesicles (EVs) have emerged as key mediators of intercellular communication. However, the mechanisms governing their degradation remain poorly understood. In this study, we demonstrated that EVs are predominantly degraded via the lysosomal pathway. Mechanistically, MAP1LC3B recognizes SNX18 on the surface of endosome-escaped EVs to facilitate their sorting into the autolysosomal pathway for degradation. Leveraging this mechanism, we optimized the lysosomal sorting efficiency of EVs by surface display of LIR motifs and constructed an EV-based targeted protein degradation nanoplatform. The EV-based nanoplatform is highly modular and can be combined with monoclonal antibodies in a plug-and-play manner. It demonstrated remarkable efficiency and selectivity in degrading EGFR, PD-L1, and VEGF. Moreover, the nanoplatform demonstrated multi-targeting capability by simultaneously degrading EGFR and VEGF. Our findings uncover a previously unrecognized mechanism of EVs degradation and provide a novel strategy to harness the EVs degradation machinery as a nature-inspired nanoplatform for the degradation of multiple targeted proteins.
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