International audienceWe characterize in real time the composition and catalytic state of the initial Escherichia coli transcription-coupled repair (TCR) machinery by using correlative single-molecule methods. TCR initiates when RNA polymerase (RNAP) stalled by a lesion is displaced by the Mfd DNA translocase, thus giving repair components access to the damage. We previously used DNA nanomanipulation to obtain a nanomechanical readout of protein-DNA interactions during TCR initiation. Here we correlate this signal with simultaneous single-molecule fluorescence imaging of labeled components (RNAP, Mfd or RNA) to monitor the composition and localization of the complex. Displacement of stalled RNAP by Mfd results in loss of nascent RNA but not...
Biological imaging techniques have been dramatically advanced recently. Single-molecule real-time vi...
The maintenance of DNA integrity is a highly involved and regulated process, requiring the coordinat...
Cells dedicate tremendous amounts of energy to express essential genes for survival. During transcri...
International audienceWe characterize in real time the composition and catalytic state of the initia...
International audienceTranscription-coupled DNA repair uses components of the transcription machiner...
International audience: DNA repair is often a complex, multi-component, multi-step process; this mak...
Cellular DNA is constantly under threat from exogenous as well as endogenous genotoxic agents that r...
The goal of my PhD research was to develop and use single-molecule tools to understand the molecular...
DNA repair safeguards the genome against a diversity of DNA damaging agents. Although the mechanisms...
Atomic force microscopy (AFM) has been used to image, at single molecule resolution, transcription e...
The Escherichia coli transcription-repair coupling factor Mfd displaces stalled RNA polymerase and d...
The dynamics of nonspecific and specific Escherichia coli RNA polymerase (RNAP)-DNA complexes have b...
Cellular DNA damage is reversed by balanced repair pathways that avoid accumulation of toxic interme...
AbstractThe dynamics of nonspecific and specific Escherichia coli RNA polymerase (RNAP)-DNA complexe...
Advances in single-molecule techniques have uncovered numerous biological secrets that cannot be dis...
Biological imaging techniques have been dramatically advanced recently. Single-molecule real-time vi...
The maintenance of DNA integrity is a highly involved and regulated process, requiring the coordinat...
Cells dedicate tremendous amounts of energy to express essential genes for survival. During transcri...
International audienceWe characterize in real time the composition and catalytic state of the initia...
International audienceTranscription-coupled DNA repair uses components of the transcription machiner...
International audience: DNA repair is often a complex, multi-component, multi-step process; this mak...
Cellular DNA is constantly under threat from exogenous as well as endogenous genotoxic agents that r...
The goal of my PhD research was to develop and use single-molecule tools to understand the molecular...
DNA repair safeguards the genome against a diversity of DNA damaging agents. Although the mechanisms...
Atomic force microscopy (AFM) has been used to image, at single molecule resolution, transcription e...
The Escherichia coli transcription-repair coupling factor Mfd displaces stalled RNA polymerase and d...
The dynamics of nonspecific and specific Escherichia coli RNA polymerase (RNAP)-DNA complexes have b...
Cellular DNA damage is reversed by balanced repair pathways that avoid accumulation of toxic interme...
AbstractThe dynamics of nonspecific and specific Escherichia coli RNA polymerase (RNAP)-DNA complexe...
Advances in single-molecule techniques have uncovered numerous biological secrets that cannot be dis...
Biological imaging techniques have been dramatically advanced recently. Single-molecule real-time vi...
The maintenance of DNA integrity is a highly involved and regulated process, requiring the coordinat...
Cells dedicate tremendous amounts of energy to express essential genes for survival. During transcri...