Single-molecule enzymology : fluorescence-based and high-throughput methods /
Clasificación: | Libro Electrónico |
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Otros Autores: | , |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Cambridge, MA :
Elsevier : Academic Press,
2016.
|
Colección: | Methods in enzymology ;
v. 581. |
Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Chapter 1. Direct fluorescent imaging of translocation and unwinding by individual DNA helicases
- Chapter 2. Single-molecule imaging with one color fluorescence
- Chapter 3. Measuring membrane protein dimerization equilibrium in lipid bilayers by single-molecule fluorescence microsopy
- Chapter 4. Fluorescent labeling of proteins in whole cell extracts for single-molecule imaging
- Chapter 5. Quantifying the assembly of multicomponent molecular machines by single-molecule total internal reflection fluorescence microscopy
- Chapter 6. How to measure separations and angles between intramolecular fluorescent markers
- Chapter 7. Precisely and accurately inferring single-molecule rate constants
- Chapter 8. Quantification of functional dynamics of membrane proteins reconstituted in nanodiscs membranes by single turnover functional readout
- Chapter 9. Putting Humpty-Dumpty together: clustering the functional dynamics of single biomolecular machines such as the splicosome
- Chapter 10. Single-molecule FRET to measure conformational dynamics of DNA mismatch repair proteins
- Chapter 11. Single-molecule confocal FRET microscopy to dissect conformational changes in the catalytic cycle of DNA topoisomerases
- Chapter 12. Probing the conformational landscape of DNA polymerases using diffusion-based single-molecule FRET
- Chapter 13. Methods for investigating DNA accessibility with single nucleosomes
- Chapter 14. Single-molecule fluorescence studies of fast protein folding
- Chapter 15. Single-molecule multicolor FRET assay for studying structural dynamics of biomolecules
- Chapter 16. A multicolor single-molecule FRET approach to study protein dynamics and interactions simultaneously
- Chapter 17. Interferometric scattering microscopy for the study of molecular motors
- Chapter 18. Enzyme kinetics in femtoliter arrays
- Author index
- Subject index.