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DNA probes for monitoring dynamic and transient molecular encounters on live cell membranes.


ABSTRACT: Cells interact with the extracellular environment through molecules expressed on the membrane. Disruption of these membrane-bound interactions (or encounters) can result in disease progression. Advances in super-resolution microscopy have allowed membrane encounters to be examined, however, these methods cannot image entire membranes and cannot provide information on the dynamic interactions between membrane-bound molecules. Here, we show a novel DNA probe that can transduce transient membrane encounter events into readable cumulative fluorescence signals. The probe, which translocates from one anchor site to another, mimicking motor proteins, is realized through a toehold-mediated DNA strand displacement reaction. Using this probe, we successfully monitored rapid encounter events of membrane lipid domains using flow cytometry and fluorescence microscopy. Our results show a preference for encounters within the same lipid domains.

SUBMITTER: You M 

PROVIDER: S-EPMC5507702 | biostudies-literature | 2017 May

REPOSITORIES: biostudies-literature

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DNA probes for monitoring dynamic and transient molecular encounters on live cell membranes.

You Mingxu M   Lyu Yifan Y   Han Da D   Qiu Liping L   Liu Qiaoling Q   Chen Tao T   Sam Wu Cuichen C   Peng Lu L   Zhang Liqin L   Bao Gang G   Tan Weihong W  

Nature nanotechnology 20170320 5


Cells interact with the extracellular environment through molecules expressed on the membrane. Disruption of these membrane-bound interactions (or encounters) can result in disease progression. Advances in super-resolution microscopy have allowed membrane encounters to be examined, however, these methods cannot image entire membranes and cannot provide information on the dynamic interactions between membrane-bound molecules. Here, we show a novel DNA probe that can transduce transient membrane e  ...[more]

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