AbstractSingle-molecule studies probing the end-to-end extension of long DNAs have established that the mechanical properties of DNA are well described by a wormlike chain force law, a polymer model where persistence length is the only adjustable parameter. We present a DNA motion-capture technique in which DNA molecules are labeled with fluorescent quantum dots at specific sites along the DNA contour and their positions are imaged. Tracking these positions in time allows us to characterize how segments within a long DNA are extended by flow and how fluctuations within the molecule are correlated. Utilizing a linear response theory of small fluctuations, we extract elastic forces for the different, ∼2-μm-long segments along the DNA backbone...
Recent measurements of the distribution of end-to-end distance in short DNA molecules infer cooperat...
DNA bending plays a vital role in numerous cellular activities such as transcription, viral packagin...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
AbstractSingle-molecule studies probing the end-to-end extension of long DNAs have established that ...
Mechanical properties of DNA are known to play a significant role in several biological processes li...
The wormlike chain model describes the micromechanics of semiflexible polymers by introducing the pe...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
Although mechanical properties of DNA are well characterized at the kilobase-pair range, a number of...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
Studying the thermal fluctuations of DNA molecules reveals not only a wealth of interesting equilibr...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
Submicrometer elasticity of double-stranded DNA (dsDNA) governs nanoscale bending of DNA segments an...
AbstractRecent measurements of the distribution of end-to-end distance in short DNA molecules infer ...
DNA molecules were used as a model system to investigate fundamental problems in polymer physics; na...
DNA dynamics can only be understood by taking into account its complex mechanical behavior at differ...
Recent measurements of the distribution of end-to-end distance in short DNA molecules infer cooperat...
DNA bending plays a vital role in numerous cellular activities such as transcription, viral packagin...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
AbstractSingle-molecule studies probing the end-to-end extension of long DNAs have established that ...
Mechanical properties of DNA are known to play a significant role in several biological processes li...
The wormlike chain model describes the micromechanics of semiflexible polymers by introducing the pe...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
Although mechanical properties of DNA are well characterized at the kilobase-pair range, a number of...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
Studying the thermal fluctuations of DNA molecules reveals not only a wealth of interesting equilibr...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
Submicrometer elasticity of double-stranded DNA (dsDNA) governs nanoscale bending of DNA segments an...
AbstractRecent measurements of the distribution of end-to-end distance in short DNA molecules infer ...
DNA molecules were used as a model system to investigate fundamental problems in polymer physics; na...
DNA dynamics can only be understood by taking into account its complex mechanical behavior at differ...
Recent measurements of the distribution of end-to-end distance in short DNA molecules infer cooperat...
DNA bending plays a vital role in numerous cellular activities such as transcription, viral packagin...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...