International audience: DNA repair is often a complex, multi-component, multi-step process; this makes detailed kinetic analysis of the different steps of repair a challenging task using standard biochemical methods. At the same time, single-molecule methods are well-suited for extracting kinetic information despite time-averaging due to diffusion of biochemical components and stochasticity of chemical reaction steps. Here we discuss recent experiments using DNA nanomanipulation in a magnetic trap to study the initiation of transcription-coupled repair in a model bacterial system comprising the canonical Escherichia coli RNA polymerase and the Mfd translocase which specifically binds to it. These experiments provide kinetic insight into the...
In transcription-coupled repair (TCR), nucleotide excision repair occurs most rapidly in the templat...
Thesis (Ph.D.)--University of Washington, 2020RNA polymerase (RNAP) is the molecular machine respons...
The goal of my PhD research was to develop and use single-molecule tools to understand the molecular...
International audienceTranscription-coupled DNA repair uses components of the transcription machiner...
International audienceWe characterize in real time the composition and catalytic state of the initia...
The Escherichia coli transcription-repair coupling factor Mfd displaces stalled RNA polymerase and d...
Cellular DNA damage is reversed by balanced repair pathways that avoid accumulation of toxic interme...
During transcription elongation, bacterial RNA polymerase (RNAP) can pause, backtrack or stall when ...
Cells dedicate tremendous amounts of energy to express essential genes for survival. During transcri...
The bacterial Mfd protein is a transcription-repair coupling factor that performs two key functions ...
Preferential repair of the transcribed strand of active genes is usually attributed to a coupling pr...
In the model organism Escherichia coli, helix distorting lesions are recognized by the UvrAB damage ...
RNA transcription is the essential first step in the conversion of genetic information stored in DNA...
Cellular DNA is constantly under threat from exogenous as well as endogenous genotoxic agents that r...
The present dissertation uses Optical Tweezers to examine the inner workings of one of the most rele...
In transcription-coupled repair (TCR), nucleotide excision repair occurs most rapidly in the templat...
Thesis (Ph.D.)--University of Washington, 2020RNA polymerase (RNAP) is the molecular machine respons...
The goal of my PhD research was to develop and use single-molecule tools to understand the molecular...
International audienceTranscription-coupled DNA repair uses components of the transcription machiner...
International audienceWe characterize in real time the composition and catalytic state of the initia...
The Escherichia coli transcription-repair coupling factor Mfd displaces stalled RNA polymerase and d...
Cellular DNA damage is reversed by balanced repair pathways that avoid accumulation of toxic interme...
During transcription elongation, bacterial RNA polymerase (RNAP) can pause, backtrack or stall when ...
Cells dedicate tremendous amounts of energy to express essential genes for survival. During transcri...
The bacterial Mfd protein is a transcription-repair coupling factor that performs two key functions ...
Preferential repair of the transcribed strand of active genes is usually attributed to a coupling pr...
In the model organism Escherichia coli, helix distorting lesions are recognized by the UvrAB damage ...
RNA transcription is the essential first step in the conversion of genetic information stored in DNA...
Cellular DNA is constantly under threat from exogenous as well as endogenous genotoxic agents that r...
The present dissertation uses Optical Tweezers to examine the inner workings of one of the most rele...
In transcription-coupled repair (TCR), nucleotide excision repair occurs most rapidly in the templat...
Thesis (Ph.D.)--University of Washington, 2020RNA polymerase (RNAP) is the molecular machine respons...
The goal of my PhD research was to develop and use single-molecule tools to understand the molecular...