Many cellular functions require the assembly of multiprotein-DNA complexes. A growing area of structural biology aims to characterize these dynamic structures by combining atomic-resolution crystal structures with lower-resolution data from techniques that provide distributions of species, such as small-angle X-ray scattering, electron microscopy, and atomic force microscopy (AFM). A significant limitation in these combinatorial methods is localization of the DNA within the multiprotein complex. Here, we combine AFM with an electrostatic force microscopy (EFM) method to develop an exquisitely sensitive dual-resonance-frequency-enhanced EFM (DREEM) capable of resolving DNA within protein-DNA complexes. Imaging of nucleosomes and DNA mismatch...
In this thesis for the first AFM has been employed for the high resolution imaging of a protein asse...
International audienceThe Deinococcus radiodurans protein HU (DrHU) was shown to be critical for nuc...
Nearly all cellular processes, notably transcription, translation, and genomic repair, are enacted b...
Atomic Force Microscopy (AFM) is a powerful technique to study the assembly and function of multipro...
Atomic force microscopy (AFM) is a scanning probe technique that allows visualization of single biom...
In the last two decades, the development of the atomic force microscope has progressed hand-in-hand ...
Shelterin protein TRF2 modulates telomere structures by promoting dsDNA compaction and T-loop format...
Recent data on the AFM studies of nucleoprotein complexes of different types are reviewed in this pa...
Atomic force microscopy (AFM) is a powerful imaging technique that allows for structural characteriz...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...
Atomic force microscopy (AFM) has proven to be a powerful tool for the study of DNA-protein interact...
AbstractPhotolyase DNA interactions and the annealing of restriction fragment ends are directly visu...
Development of single-molecule localization microscopy techniques has allowed nanometre scale locali...
Direct observation is arguably the preferred way to investigate the interactions between two molecul...
Multi-protein complexes are ubiquitous and play essential roles in many biological mechanisms. Singl...
In this thesis for the first AFM has been employed for the high resolution imaging of a protein asse...
International audienceThe Deinococcus radiodurans protein HU (DrHU) was shown to be critical for nuc...
Nearly all cellular processes, notably transcription, translation, and genomic repair, are enacted b...
Atomic Force Microscopy (AFM) is a powerful technique to study the assembly and function of multipro...
Atomic force microscopy (AFM) is a scanning probe technique that allows visualization of single biom...
In the last two decades, the development of the atomic force microscope has progressed hand-in-hand ...
Shelterin protein TRF2 modulates telomere structures by promoting dsDNA compaction and T-loop format...
Recent data on the AFM studies of nucleoprotein complexes of different types are reviewed in this pa...
Atomic force microscopy (AFM) is a powerful imaging technique that allows for structural characteriz...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...
Atomic force microscopy (AFM) has proven to be a powerful tool for the study of DNA-protein interact...
AbstractPhotolyase DNA interactions and the annealing of restriction fragment ends are directly visu...
Development of single-molecule localization microscopy techniques has allowed nanometre scale locali...
Direct observation is arguably the preferred way to investigate the interactions between two molecul...
Multi-protein complexes are ubiquitous and play essential roles in many biological mechanisms. Singl...
In this thesis for the first AFM has been employed for the high resolution imaging of a protein asse...
International audienceThe Deinococcus radiodurans protein HU (DrHU) was shown to be critical for nuc...
Nearly all cellular processes, notably transcription, translation, and genomic repair, are enacted b...