Fluorescence resonance energy transfer (FRET) in analysis of transcription-complex structure and function.
Methods Enzymol 371 (2003) 144-159
The power and prospects of fluorescence microscopies and spectroscopies.
Annu Rev Biophys Biomol Struct 32 (2003) 161-182
Abstract:
Recent years have witnessed a renaissance of fluorescence microscopy techniques and applications, from live-animal multiphoton confocal microscopy to single-molecule fluorescence spectroscopy and imaging in living cells. These achievements have been made possible not so much because of improvements in microscope design, but rather because of development of new detectors, accessible continuous wave and pulsed laser sources, sophisticated multiparameter analysis on one hand, and the development of new probes and labeling chemistries on the other. This review tracks the lineage of ideas and the evolution of thinking that have led to the actual developments, and presents a comprehensive overview of the field, with emphasis put on our laboratory's interest in single-molecule microscopy and spectroscopy.Fluorescent probes and bioconjugation chemistries for single-molecule fluorescence analysis of biomolecules
The Journal of Chemical Physics AIP Publishing 117:24 (2002) 10953-10964
Structural organization of bacterial RNA polymerase holoenzyme and the RNA polymerase-promoter open complex.
Cell 108:5 (2002) 599-614