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Mechano-fluorescence actuation in single synaptic vesicles with a DNA framework nanomachine

  • Jiangbo Liu
  • , Xinxin Jing
  • , Mengmeng Liu
  • , Fan Li
  • , Min Li
  • , Qian Li
  • , Jiye Shi
  • , Jiang Li
  • , Lihua Wang
  • , Xiuhai Mao*
  • , Xiaolei Zuo*
  • , Chunhai Fan
  • *此作品的通讯作者
  • Shanghai Jiao Tong University
  • Chinese Academy of Sciences
  • CAS - Shanghai Advanced Research Institute

科研成果: 期刊稿件文章同行评审

摘要

Biomimetic machines that can convert mechanical actuation to adaptive coloration in a manner analogous to cephalopods have found widespread applications at various length scales. At the nanoscale, a transmutable nanomachine with adaptive colors that can sense and mediate cellular or intracellular interactions is highly desirable. Here, we report the design of a DNA framework nanomachine (DFN) that can autonomously change shape in response to pH variations in single synaptic vesicles, which, in turn, displays adaptive fluorescent colors with a mechano-fluorescence actuation mechanism. To construct a DFN, we used a tetrahedral DNA nanostructure as the framework to incorporate an embedded pH-responsive, i-motif sequence tagged with a Förster resonance energy transfer pair and an affinity cholesterol moiety targeting vesicular membranes. We found that endocytosed DFNs are individually trapped in single endocytic vesicles in living synaptic cells due to the sizeexclusion effect. The adaptive fluorescence coloration of DFNs enabled single-vesicle quantification of resting pH values in a processive manner, allowing long-term tracking of the exocytosis and fusion dynamics in intracellular processes and cell-cell communications.

源语言英语
文章编号eabq5151
期刊Science Robotics
7
73
DOI
出版状态已出版 - 1 12月 2022

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