Snap-tag Labeling

SNAP-tag labeling is a covalent protein-labeling technique that enables researchers to attach fluorescent, affinity, or other chemical probes selectively to proteins of interest in living cells or purified biochemical systems. It uses a genetically encoded SNAP-tag, an engineered O6-alkylguanine-DNA alkyltransferase, which recognizes a benzylguanine-linked substrate and transfers the probe to itself through an irreversible covalent reaction. Because labeling is specific and stable, the method supports protein localization, trafficking, turnover, and interaction studies while allowing probe choice to match the experiment. In biochemistry, SNAP-tag labeling connects molecular structure and dynamics with function and complements fluorescence microscopy, biochemical purification, and quantitative assays.

Snap-tag Labeling - Related Videos

Research

JoVE Journal - Biology
Free Sample

Fluorescent Labeling of COS-7 Expressing SNAP-tag Fusion Proteins for Live Cell Imaging

0 Views •

Cited by 8 •

2010

SNAP-tag and CLIP-tag protein labeling systems enable the specific, covalent attachment of molecules, including fluorescent dyes, to a protein of interest in live cells. Once cloned and expressed, the tagged protein can be used with a variety of substrates for numerous downstream applications without having to clone again.

Education

JoVE Science Education - Psychology

Evaluating the Accuracy of Snap Judgments

0 Views •

2023

Source: Diego Reinero & Jay Van Bavel—New York University Social psychologists have long been interested in the way people form impressions of others. Much of this work has focused on the errors people make in judging others, such as the exaggerated influence of central traits (such as "warm" and "cold"), the insufficient weight given to the context in which others' behavior takes place, and the tendency for people to make judgments that conform to their initial expectations about another.

Enhanced Sample Multiplexing of Tissues Using Combined Precursor Isotopic Labeling and Isobaric Tagging (cPILOT)

0 Views •

Cited by 10 •

2017

Combined precursor isotopic labeling and isobaric tagging (cPILOT) is a quantitative proteomics strategy that enhances sample multiplexing capabilities of isobaric tags. This protocol describes the application of cPILOT to tissues from an Alzheimer's disease mouse model and wild-type controls.

A Snap Chip Technology for a Cross-Reactivity-Free Multiplexed Sandwich Immunoassay

0 Views •

2025

The video showcases the implementation of snap chip technology for cross-reactivity-free multiplexed sandwich immunoassays. The simple action of snapping two microarray slides, each containing different reagents, ensures reagent transfer without cross-contamination and helps to detect multiple proteins using sandwich immunoassay.

Snap Chip for Cross-reactivity-free and Spotter-free Multiplexed Sandwich Immunoassays

0 Views •

Cited by 3 •

2017

We demonstrate a snap chip technology for performing cross-reactivity-free multiplexed sandwich immunoassays by simply snapping two slides. A snap apparatus is used for reliably transferring reagents from microarray-to-microarray. The snap chip can be used for any biochemical reactions requiring colocalization of different reagents without cross-contamination.

View All Results

FAQs

Related Topics