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Journal ArticleDOI

Specific Covalent Labeling of Recombinant Protein Molecules Inside Live Cells

B. Albert Griffin, +2 more
- 10 Jul 1998 - 
- Vol. 281, Iss: 5374, pp 269-272
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TLDR
This system provides a recipe for slightly modifying a target protein so that it can be singled out from the many other proteins inside live cells and fluorescently stained by small nonfluorescent dye molecules added from outside the cells.
Abstract
Recombinant proteins containing four cysteines at the i , i + 1, i + 4, and i + 5 positions of an α helix were fluorescently labeled in living cells by extracellular administration of 4′,5′-bis(1,3,2-dithioarsolan-2-yl)fluorescein. This designed small ligand is membrane-permeant and nonfluorescent until it binds with high affinity and specificity to the tetracysteine domain. Such in situ labeling adds much less mass than does green fluorescent protein and offers greater versatility in attachment sites as well as potential spectroscopic and chemical properties. This system provides a recipe for slightly modifying a target protein so that it can be singled out from the many other proteins inside live cells and fluorescently stained by small nonfluorescent dye molecules added from outside the cells.

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Visualization of the pH-dependent dynamic distribution of G2A in living cells

TL;DR: The amount of G 2A on the cell surface was controlled by suppressing the G2A internalization rate by one‐tenth in response to the extracellular acidic pH, and this acidic pH‐induced G2a accumulation on cell surfaces may be explained by proton‐induced dissociation of G1A from endocytic machinery.
Journal ArticleDOI

Site-Selective Lysine Reactions Guided by Protein–Peptide Interaction

TL;DR: P proximal lysine conjugation reactions through peptide-guided fluorodinitrobenzene, isothiocyanate, and phenyl ester reactions are explored and the site-specific targeting of the ε-amino group of one single lysines in natural proteins that contain multiple lysin residues is validated.
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Advanced analytical tools in proteomics.

TL;DR: Recent advances in the bioassay development have provided sensitive and selective tools for high-throughput identification and characterizations of enzymes, and the recently developed bioimaging techniques to visualize and quantify proteins in living cells are discussed.
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Organic Arsenicals as Functional Motifs in Polymer and Biomaterials Science.

TL;DR: Current examples of polymeric/macromolecular arsenicals are reported to stimulate interest and highlight their potential as a novel platform for functional, responsive, and bioactive materials.
References
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Journal ArticleDOI

The green fluorescent protein

TL;DR: In just three years, the green fluorescent protein from the jellyfish Aequorea victoria has vaulted from obscurity to become one of the most widely studied and exploited proteins in biochemistry and cell biology.
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Rapid colorimetric assay for cell growth and survival. Modifications to the tetrazolium dye procedure giving improved sensitivity and reliability.

TL;DR: The reliability and sensitivity of the test have been increased to the point where it can in many cases replace the [3H]thymidine uptake assay to measure cell proliferation or survival in growth factor or cytotoxicity assays.
Journal ArticleDOI

Fluorescent indicators for Ca2+based on green fluorescent proteins and calmodulin

TL;DR: New fluorescent indicators for Ca2+ that are genetically encoded without cofactors and are targetable to specific intracellular locations are constructed and dubbed ‘cameleons’.
Journal ArticleDOI

Crystal structure of the Aequorea victoria green fluorescent protein.

TL;DR: The green fluorescent protein (GFP) from the Pacific Northwest jellyfish Aequorea victoria has generated intense interest as a marker for gene expression and localization of gene products.
Journal ArticleDOI

Engineering green fluorescent protein for improved brightness, longer wavelengths and fluorescence resonance energy transfer

TL;DR: The results demonstrate that the production of more and better GFP variants is possible and worthwhile, and facilitates multicolor imaging of differential gene expression, protein localization or cell fate.
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