For study of time-dependent conformation, all previous single-molecule imaging studies of polymer transport involve fluorescence labeling uniformly along the chain, which suffers from limited resolution due to the diffraction limit. Here we demonstrate the concept of submolecular single-molecule imaging with DNA chains assembled from DNA fragments such that a chain is labeled at designated spots with covalently attached fluorescent dyes and the chain backbone with dyes of different color. High density of dyes ensures good signal-to-noise ratio to localize the designated spots in real time with nanometer precision and prevents significant photobleaching for long-time tracking purposes. To demonstrate usefulness of this approach, we image ele...
We describe a straightforward, automated line tracking method to visualize linear macromolecules as ...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...
For study of time-dependent conformation, all previous single-molecule imaging studies of polymer tr...
For study of time-dependent conformation, all previous single-molecule imaging studies of polymer tr...
For study of time-dependent conformation, all previous single-molecule imaging studies of polymer tr...
Single-molecule optical imaging is performed of entangled chain dynamics in crowded environments, fo...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
AbstractWe have previously introduced tethered fluorophore motion (TFM), a single-molecule fluoresce...
Single-molecule optical imaging is performed of entangled chain dynamics in crowded environments, fo...
The study of polymer dynamics has been an active area of research for many years. For nearly two dec...
Linear double-stranded (ds) DNA (5 kbp or larger) exhibits noticeable band broadening and asymmetry ...
Linear double-stranded (ds) DNA (5 kbp or larger) exhibits noticeable band broadening and asymmetry ...
For several years individual DNA molecules have been observed and photographed during agarose gel el...
Single molecule biophysics aims to understand biological processes by studying them at the single mo...
We describe a straightforward, automated line tracking method to visualize linear macromolecules as ...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...
For study of time-dependent conformation, all previous single-molecule imaging studies of polymer tr...
For study of time-dependent conformation, all previous single-molecule imaging studies of polymer tr...
For study of time-dependent conformation, all previous single-molecule imaging studies of polymer tr...
Single-molecule optical imaging is performed of entangled chain dynamics in crowded environments, fo...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
AbstractWe have previously introduced tethered fluorophore motion (TFM), a single-molecule fluoresce...
Single-molecule optical imaging is performed of entangled chain dynamics in crowded environments, fo...
The study of polymer dynamics has been an active area of research for many years. For nearly two dec...
Linear double-stranded (ds) DNA (5 kbp or larger) exhibits noticeable band broadening and asymmetry ...
Linear double-stranded (ds) DNA (5 kbp or larger) exhibits noticeable band broadening and asymmetry ...
For several years individual DNA molecules have been observed and photographed during agarose gel el...
Single molecule biophysics aims to understand biological processes by studying them at the single mo...
We describe a straightforward, automated line tracking method to visualize linear macromolecules as ...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...