内吞循环
费斯特共振能量转移
内体
细胞生物学
生物物理学
化学
DNA
溶酶体
生物化学
荧光
内吞作用
生物
酶
物理
细胞内
量子力学
细胞
作者
Xiaodong Xie,Zhiyuan Liu,Xuelin Xiang,ShaoPeng Wang,Zhaoshuai Gao,Lifeng Xu,Fei Ding,Qian Li
标识
DOI:10.1002/cbic.202400363
摘要
Mapping the endocytic vesicular acidification process is of prior importance to better understand the health and pathological processes of cells. Herein, by integrating a pH-sensitive i-motif and a pair of fluorescence resonance energy transfer (FRET) into a tetrahedral DNA framework (TDF), we develop a pH-responsive DNA nanomachine, allowing for efficient sensing of pH from 7.0 to 5.5 via the pH-triggered spatial proximity modulation of FRET. The inheriting endo-lysosome-targeting ability of TDF enables spatiotemporal tracking of endocytic vesicle acidification during the endosomal maturation process. Analysis of pH-dependent FRET response at single fluorescent spot level reveals the significant difference of endocytic vesicular acidification between normal and cancer cells. The performance of pH-responsive DNA nanomachine underlines its potential for studies on vesicle acidification-related pathologies as a universal platform.
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