Many essential processes in the cell depend on proteins that use nucleoside triphosphates (NTPs). Methods that directly monitor the often-complex dynamics of these proteins at the single-molecule level have helped to uncover their mechanisms of action. However, the measurement throughput is typically limited for NTP-utilizing reactions, and the quantitative dissection of complex dynamics over multiple sequential turnovers remains challenging. Here we present a method for controlling NTP-driven reactions in single-molecule experiments via the local generation of NTPs (LAGOON) that markedly increases the measurement throughput and enables single-turnover observations. We demonstrate the effectiveness of LAGOON in single-molecule fluorescence ...
Single molecule biophysics aims to understand biological processes by studying them at the single mo...
The interconversion of nucleoside triphosphate (NTP) and diphosphate occurs in some of the most -imp...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...
Single-molecule fluorescence imaging techniques have become important tools in biological research t...
Single-molecule experiments provide a unique means for real-time observation of the activity of indi...
International audienceSingle molecule approaches of nucleic acids conformational changes One of the ...
Single-molecule fluorescence measurements have been widely used to explore kinetics and dynamics of ...
Single-molecule detection schemes offer powerful means to overcome static and dynamic heterogeneity ...
Thesis (Ph.D.)--University of Washington, 2020RNA polymerase (RNAP) is the molecular machine respons...
Confocal single-molecule fluorescence is a powerful tool for monitoring conformational dynamics, and...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
The activity of enzymes is traditionally characterised through bulk-phase biochemical methods that o...
RNA Polymerase (RNAP) is a crucial protein molecule that decodes the information stored in DNA as ba...
This thesis focuses on the characterization of DNA polymerases with single-molecule techniques. More...
Technical advance enables us to investigate the veiled details of biological reactions at the molecu...
Single molecule biophysics aims to understand biological processes by studying them at the single mo...
The interconversion of nucleoside triphosphate (NTP) and diphosphate occurs in some of the most -imp...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...
Single-molecule fluorescence imaging techniques have become important tools in biological research t...
Single-molecule experiments provide a unique means for real-time observation of the activity of indi...
International audienceSingle molecule approaches of nucleic acids conformational changes One of the ...
Single-molecule fluorescence measurements have been widely used to explore kinetics and dynamics of ...
Single-molecule detection schemes offer powerful means to overcome static and dynamic heterogeneity ...
Thesis (Ph.D.)--University of Washington, 2020RNA polymerase (RNAP) is the molecular machine respons...
Confocal single-molecule fluorescence is a powerful tool for monitoring conformational dynamics, and...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
The activity of enzymes is traditionally characterised through bulk-phase biochemical methods that o...
RNA Polymerase (RNAP) is a crucial protein molecule that decodes the information stored in DNA as ba...
This thesis focuses on the characterization of DNA polymerases with single-molecule techniques. More...
Technical advance enables us to investigate the veiled details of biological reactions at the molecu...
Single molecule biophysics aims to understand biological processes by studying them at the single mo...
The interconversion of nucleoside triphosphate (NTP) and diphosphate occurs in some of the most -imp...
DNA replication is a fundamental cellular process. However, the structure and dynamics of the eukary...