Homogeneously labeled protein samples are generated by expressed protein ligation for studying protein interactions. Miniscule amounts of samples are used in single-molecule-sensitive measurements and fluorescence resonance energy transfer experiments
Functional imaging can provide a level of quantification that is not possible in what might be terme...
Single molecule methods have emerged as a powerful new tool for exploring biological phenomena. We p...
Chemical methods that allow for the targeted labelling of a specific protein within a complex biolog...
AbstractWe have developed a new method for the C-terminus-specific fluorescence labeling of proteins...
Probing structures and dynamics within biomolecules using ensemble and single-molecule fluorescence ...
Single-molecule fluorescence spectroscopy has become an important technique for studying the conform...
Single-molecule fluorescence spectroscopy has become an important technique for studying the conform...
Single-molecule fluorescence spectroscopy has become an important technique for studying the conform...
We developed a versatile set of chemical labeling reagents which allow dye ligation to the C-terminu...
This unit provides guidelines on how to use steady-state fluorescence spectroscopy for the quantific...
This unit provides guidelines on how to use steady−state fluorescence spectroscopy for the quantific...
This unit provides guidelines on how to use steady−state fluorescence spectroscopy for the quantific...
We developed a versatile set of chemical labeling reagents which allow dye ligation to the C-terminu...
Fluorescence resonance energy transfer (FRET) is a superb technique for measuring conformational cha...
Single molecule methods have emerged as a powerful new tool for exploring biological phenomena. We p...
Functional imaging can provide a level of quantification that is not possible in what might be terme...
Single molecule methods have emerged as a powerful new tool for exploring biological phenomena. We p...
Chemical methods that allow for the targeted labelling of a specific protein within a complex biolog...
AbstractWe have developed a new method for the C-terminus-specific fluorescence labeling of proteins...
Probing structures and dynamics within biomolecules using ensemble and single-molecule fluorescence ...
Single-molecule fluorescence spectroscopy has become an important technique for studying the conform...
Single-molecule fluorescence spectroscopy has become an important technique for studying the conform...
Single-molecule fluorescence spectroscopy has become an important technique for studying the conform...
We developed a versatile set of chemical labeling reagents which allow dye ligation to the C-terminu...
This unit provides guidelines on how to use steady-state fluorescence spectroscopy for the quantific...
This unit provides guidelines on how to use steady−state fluorescence spectroscopy for the quantific...
This unit provides guidelines on how to use steady−state fluorescence spectroscopy for the quantific...
We developed a versatile set of chemical labeling reagents which allow dye ligation to the C-terminu...
Fluorescence resonance energy transfer (FRET) is a superb technique for measuring conformational cha...
Single molecule methods have emerged as a powerful new tool for exploring biological phenomena. We p...
Functional imaging can provide a level of quantification that is not possible in what might be terme...
Single molecule methods have emerged as a powerful new tool for exploring biological phenomena. We p...
Chemical methods that allow for the targeted labelling of a specific protein within a complex biolog...