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Journal ArticleDOI

Mammalian cell-based optimization of the biarsenical-binding tetracysteine motif for improved fluorescence and affinity.

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TLDR
Improved biarsenical-tetracysteine motifs should enable detection of a much broader spectrum of cellular proteins, culminating in a >20-fold increase in contrast.
Abstract
Membrane-permeant biarsenical dyes such as FlAsH and ReAsH fluoresce upon binding to genetically encoded tetracysteine motifs expressed in living cells, yet spontaneous nonspecific background staining can prevent detection of weakly expressed or dilute proteins. If the affinity of the tetracysteine peptide could be increased, more stringent dithiol washes should increase the contrast between specific and nonspecific staining. Residues surrounding the tetracysteine motif were randomized and fused to GFP, retrovirally transduced into mammalian cells and iteratively sorted by fluorescence-activated cell sorting for high FRET from GFP to ReAsH in the presence of increasing concentrations of dithiol competitors. The selected sequences show higher fluorescence quantum yields and markedly improved dithiol resistance, culminating in a >20-fold increase in contrast. The selected tetracysteine sequences, HRWCCPGCCKTF and FLNCCPGCCMEP, maintain their enhanced properties as fusions to either terminus of GFP or directly to beta-actin. These improved biarsenical-tetracysteine motifs should enable detection of a much broader spectrum of cellular proteins.

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MiMIC: a highly versatile transposon insertion resource for engineering Drosophila melanogaster genes.

TL;DR: It is demonstrated the versatility of a collection of insertions of the transposon Minos-mediated integration cassette (MiMIC), in Drosophila melanogaster, which can revert insertions that function as gene traps and cause mutant phenotypes to revert to wild type by RMCE and modify insertions to control GAL4 or QF overexpression systems or perform lineage analysis using the Flp recombinase system.
Journal ArticleDOI

MipZ, a Spatial Regulator Coordinating Chromosome Segregation with Cell Division in Caulobacter

TL;DR: A mechanism that coordinates assembly and placement of the FtsZ cytokinetic ring with bipolar localization of the newly duplicated chromosomal origins in Caulobacter is presented.
Journal ArticleDOI

Analysis of single mammalian cells on-chip

TL;DR: This discussion seeks to summarize the state of the art for conventional technologies in use by biologists for the analysis of single, mammalian cells, and then compare LOC devices engineered for these same single-cell studies.
Journal ArticleDOI

Advances in fluorescence labeling strategies for dynamic cellular imaging

TL;DR: Advances in fluorescent probes and live-cell labeling strategies, two areas that remain pivotal for future advances in imaging technology, are discussed as well as emerging bioengineering techniques that enable their expression at specific genomic loci.
References
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Journal ArticleDOI

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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.
PatentDOI

FACS-optimized mutants of the green fluorescent protein (GFP)

TL;DR: In this article, three classes of GFP mutants having single excitation maxima around 488 nm are shown to be brighter than wild-type GFP following 488-nm excitation.
PatentDOI

Green fluorescent protein

TL;DR: This demonstration indicated that GFP could be used as a marker of gene expression and protein localization in living and fixed tissues and variations with more intense fluorescence or alterations in the excitation and emission spectra have been produced.
Journal ArticleDOI

Specific Covalent Labeling of Recombinant Protein Molecules Inside Live Cells

TL;DR: 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.
Journal ArticleDOI

An improved cyan fluorescent protein variant useful for FRET.

TL;DR: Cerulean is 2.5-fold brighter than ECFP and replacement of ECFP with Cerulean substantially improves the signal-to-noise ratio of a FRET-based sensor for glucokinase activation.
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