Biomechanics of DNA structures visualized by 4D electron microscopy.
biomechanical · Level V
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- Record sourced from PubMed, PMID 23382239.
- Also identified by DOI 10.1073/pnas.1300630110 and PMC identifier 3581949.
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Abstract
We present a technique for in situ visualization of the biomechanics of DNA structural networks using 4D electron microscopy. Vibrational oscillations of the DNA structure are excited mechanically through a short burst of substrate vibrations triggered by a laser pulse. Subsequently, the motion is probed with electron pulses to observe the impulse response of the specimen in space and time. From the frequency and amplitude of the observed oscillations, we determine the normal modes and eigenfrequencies of the structures involved. Moreover, by selective "nano-cutting" at a given point in the network, it was possible to obtain Young's modulus, and hence the stiffness, of the DNA filament at that position. This experimental approach enables nanoscale mechanics studies of macromolecules and should find applications in other domains of biological networks such as origamis.
Medical subject headings
- DNA
- Microscopy, Electron
- Nucleic Acid Conformation