Single Molecule Visualization

Single molecule visualization is a set of imaging approaches that detects and tracks individual molecules rather than averaging signals from large populations, revealing molecular behavior in biochemistry. Fluorescent labels and sensitive microscopes convert photons emitted by a single molecule into a time-resolved signal, allowing researchers to follow position, intensity, or conformational state under controlled conditions. These measurements can expose heterogeneous binding events, enzyme turnover, diffusion, and transient intermediates that ensemble assays may obscure. By linking trajectories and fluorescence changes to molecular mechanisms, the method supports mechanistic studies of catalysis, protein interactions, nucleic acid dynamics, and quantitative models of complex biochemical systems.

Single Molecule Visualization - Related Videos

Research

JoVE Journal - Biology
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Visualizing Single-molecule DNA Replication with Fluorescence Microscopy

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Cited by 9 •

2009

This protocol demonstrates a simple single-molecule fluorescence microscopy technique for visualizing DNA replication by individual replisomes in real time.

Research

JoVE Journal - Biochemistry
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Single-Molecule Real-Time Visualization of DNA Unwinding by CMG Helicase

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Cited by 1 •

2024

This protocol demonstrates performing a single-molecule assay for live visualization of DNA unwinding by CMG helicase. It describes (1) preparing a DNA substrate, (2) purifying fluorescently labeled Drosophila melanogaster CMG helicase, (3) preparing a microfluidic flow cell for total internal reflection fluorescence (TIRF) microscopy, and (4) the single-molecule DNA unwinding assay.

Research

JoVE EoE - Biomolecular Interaction Detection Techniques

Single-Molecule Imaging to Visualize Fusion Protein Condensates Assembly on DNA Curtains

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2025

This video describes a method to visualize the assembly of fusion protein condensates on DNA molecules at specific loci using single-molecule imaging. These condensates are formed due to LCD-LCD and LCD-DBD interactions, which allow for the recruitment of RNA polymerase II and enhanced gene transcription.

Visualizing Protein-DNA Interactions in Live Bacterial Cells Using Photoactivated Single-molecule Tracking

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Cited by 38 •

2014

Photoactivated localization microscopy (PALM) combined with single-molecule tracking allows direct observation and quantification of protein-DNA interactions in live Escherichia coli cells.

Single-Molecule Imaging of Nuclear Transport

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2010

Single molecule microscopy approch provided novel insights into nuclear transport.

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