Oligomerization Dynamics of Cell Surface Receptors in Living Cells by Total Internal Reflection Fluorescence Microscopy Combined with Number and Brightness Analysis
Please note that all translations are AI generated. Click here for the English version.
TIRF Imaging: Alignment of the Laser Line and Optimization of TIRF Illumination
4:05
TIRF Imaging: Capture of the Time Series
5:46
Number & Brightness (N&B): Quality Check of the Time Series
6:34
Number & Brightness (N&B): Computation of the B-values in Selected Region-of-interest (ROI)
8:19
Results: N&B Analysis and Kinetics of FGFR1 Oligomerization
9:42
Conclusion
Transcribir
Receptor clustering is ubiquitous and often necessary for the signaling a cascade activation. However, few methods are available to measure the degree of clustering. We use total internal reflection fluorescence, TIRF microscopy, to follow the dif
Inicia sesión o comienza tu prueba gratuita para acceder a este contenido
We describe an imaging approach for the determination of the average oligomeric state of mEGFP-tagged-receptor oligomers induced by ligand binding in the plasma membrane of living cells. The protocol is based on Total Internal Reflection Fluorescence (TIRF) microscopy combined with Number and Brightness (N&B) analysis.