AbstractSingle-molecule fluorescence techniques have developed into powerful tools for studying the kinetics of biological reactions at the single-molecule level. Using fluorogenic substrates, enzymatic reactions can be observed in real-time with single-turnover resolution. The turnover sequence contains all kinetic information, giving access to reaction substeps and dynamic processes such as fluctuations in the reaction rate. Despite their clearly proven potential, the accuracy of current measurements is limited by the availability of substrates with 1:1 stoichiometry and the signal-to-noise ratio of the measurement. In this review we summarize the state-of-the-art and discuss these limitations using experiments performed with α-chymotryps...
Contains fulltext : 161454.pdf (publisher's version ) (Open Access)Radboud Univers...
AbstractIn this study we introduce the combination of two-color global fluorescence correlation spec...
A novel, fluorescent NAD derivative is processed as substrate by three different NAD-consuming enzym...
Single-molecule fluorescence techniques have developed into powerful tools for studying the kinetics...
Single molecule fluorescence spectroscopy offers great potential for studying enzyme kinetics. A num...
The outstanding catalytic activity and selectivity of enzymes has always interested scientists. Sinc...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Enzymes, and proteins in general, consist of a dynamic ensemble of different conformations, which fl...
AbstractOrganic fluorophores common to fluorescence-based investigations suffer from unwanted photop...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
Contains fulltext : 161454.pdf (publisher's version ) (Open Access)Radboud Univers...
AbstractIn this study we introduce the combination of two-color global fluorescence correlation spec...
A novel, fluorescent NAD derivative is processed as substrate by three different NAD-consuming enzym...
Single-molecule fluorescence techniques have developed into powerful tools for studying the kinetics...
Single molecule fluorescence spectroscopy offers great potential for studying enzyme kinetics. A num...
The outstanding catalytic activity and selectivity of enzymes has always interested scientists. Sinc...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
Enzymes, and proteins in general, consist of a dynamic ensemble of different conformations, which fl...
AbstractOrganic fluorophores common to fluorescence-based investigations suffer from unwanted photop...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
Contains fulltext : 161454.pdf (publisher's version ) (Open Access)Radboud Univers...
AbstractIn this study we introduce the combination of two-color global fluorescence correlation spec...
A novel, fluorescent NAD derivative is processed as substrate by three different NAD-consuming enzym...