Chapter Three-Tracking Single Proteins in Live Cells Using Single-Chain Antibody Fragment-Fluorescent Quantum Dot Affinity Pair

G Iyer, X Michalet, YP Chang, S. Weiss

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

Quantum dots (QDs) are extremely bright fluorescent imaging probes that are particularly useful for tracking individual molecules in living cells. Here, we show how a two-component system composed of a high-affinity single-chain fragment antibody and its cognate hapten (fluorescein) can be utilized for tracking individual proteins in various cell types. The single-chain fragment antibody against fluorescein is genetically appended to the protein of interest, while the hapten fluorescein is attached to the end of the peptide that is used to coat the QDs. We describe (i) the method used to functionalize QDs with fluorescein peptides; (ii) the method used to control the stoichiometry of the hapten on the surface of the QD; and (iii) the technical details necessary to observe single molecules in living cells.
Original languageAmerican English
Title of host publicationMethods in enzymology
EditorsWalter NG
PublisherElsevier
Pages61-79
StatePublished - 2010

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