Quantifying tensile forces at cell–cell junctions with a DNA-based fluorescent probe
Квантирование растягивающих сил на клеточных контактах с помощью флуоресцентного зонда на основе ДНК
2020-01-01
SCID: 54.1/g9r243wq
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DNA hairpin force sensorDNA-based ratiometric fluorescent probeDNAMeterE-cadherin tensionintercellular tensile forces
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Abstract (AI)
Cells are physically contacting with each other. Direct and precise quantification of forces at cell-cell junctions is still challenging. Herein, we have developed a DNA-based ratiometric fluorescent probe, termed DNAMeter, to quantify intercellular tensile forces. These lipid-modified DNAMeters can spontaneously anchor onto live cell membranes. The DNAMeter consists of two self-assembled DNA hairpins of different force tolerance. Once the intercellular tension exceeds the force tolerance to unfold a DNA hairpin, a specific fluorescence signal will be activated, which enables the real-time imaging and quantification of tensile forces. Using E-cadherin-modified DNAMeter as an example, we have demonstrated an approach to quantify, at the molecular level, the magnitude and distribution of E-cadherin tension among epithelial cells. Compatible with readily accessible fluorescence microscopes, these easy-to-use DNA tension probes can be broadly used to quantify mechanotransduction in collective cell behaviors.
Key Findings
1
DNAMeter enables real-time imaging and quantification of tensile forces at the molecular level.
2
DNAMeter is lipid-modified to spontaneously anchor onto live cell membranes for in situ measurements.
3
Developed a DNA-based ratiometric fluorescent probe (DNAMeter) to quantify intercellular tensile forces at cell–cell junctions.
4
E-cadherin-modified DNAMeter was used to quantify the magnitude and spatial distribution of E-cadherin tension among epithelial cells.
5
Probe design uses two self-assembled DNA hairpins with different force tolerances to report tension-dependent unfolding via specific fluorescence signals.
6
The probes are compatible with standard fluorescence microscopes and are presented as easy-to-use tools for studying mechanotransduction in collective cell behaviors.
Research Object
Lipid-modified DNA-based ratiometric fluorescent probe (DNAMeter) anchored on live cell membranes to measure cell–cell junction forces
Research Subject
Quantification and real-time imaging of intercellular tensile forces at cell–cell junctions via force-induced unfolding of DNA hairpins (including magnitude and spatial distribution of E-cadherin tension among epithelial cells)
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2020-01-01
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