Fluorescence cross-correlation spectroscopy in living cells
Top Cited Papers
- 23 January 2006
- journal article
- perspective
- Published by Springer Nature in Nature Methods
- Vol. 3 (2), 83-89
- https://doi.org/10.1038/nmeth822
Abstract
Cell biologists strive to characterize molecular interactions directly in the intracellular environment. The intrinsic resolution of optical microscopy, however, allows visualization of only coarse subcellular localization. By extracting information from molecular dynamics, fluorescence cross-correlation spectroscopy (FCCS) grants access to processes on a molecular scale, such as diffusion, binding, enzymatic reactions and codiffusion, and has become a valuable tool for studies in living cells. Here we review basic principles of FCCS and focus on seminal applications, including examples of intracellular signaling and trafficking. We consider FCCS in the context of fluorescence resonance energy transfer and multicolor imaging techniques and discuss application strategies and recent technical advances.Keywords
This publication has 44 references indexed in Scilit:
- One-step analysis of protein complexes in microliters of cell lysateNature Methods, 2005
- Two‐Hybrid Fluorescence Cross‐Correlation Spectroscopy Detects Protein–Protein Interactions In VivoChemphyschem, 2005
- Single-molecule spectroscopic methodsCurrent Opinion in Structural Biology, 2004
- SNAREs Prefer Liquid-disordered over “Raft” (Liquid-ordered) Domains When Reconstituted into Giant Unilamellar VesiclesPublished by Elsevier ,2004
- Dual‐Color Fluorescence Cross‐Correlation Spectroscopy Using Single Laser Wavelength ExcitationChemphyschem, 2004
- FRET imagingNature Biotechnology, 2003
- Zero-Mode Waveguides for Single-Molecule Analysis at High ConcentrationsScience, 2003
- Scanning Dual-Color Cross-Correlation Analysis for Dynamic Co-Localization Studies of Immobile MoleculesSingle Molecules, 2002
- Fluorescence lifetime imaging microscopy: spatial resolution of biochemical processes in the cellTrends in Cell Biology, 1999
- Lateral Diffusion in Planar Lipid BilayersScience, 1977