2011ACS Combinatorial ScienceRequires access

Recapture of GFP Chromophore Fluorescence in a Protein Host

Anthony Baldridge, Suihan Feng, Young‐Tae Chang, Laren M. Tolbert

Open publisher page 78 citations

Abstract

When encapsulated by human serum albumin (HSA), certain derivatives of the green fluorescent protein (GFP) chromophore recover their fluorescence due to inhibition of torsional motion. These derivatives show remarkable sensitivity and selectivity as well as favorable spectroscopic properties toward HSA, thus providing selective probes for this and similar proteins and demonstrating the use of GFP chromophores as topological fluorophores.

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What this paper is about

When encapsulated by human serum albumin (HSA), certain derivatives of the green fluorescent protein (GFP) chromophore recover their fluorescence due to inhibition of torsional motion. These derivatives show remarkable sensitivity and selectivity as well as favorable spectroscopic properties toward HSA, thus providing selective probes for this and similar proteins and demonstrating the use of GFP chromophores as topological fluorophores.

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OpenAlex reports 78 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

When encapsulated by human serum albumin (HSA), certain derivatives of the green fluorescent protein (GFP) chromophore recover their fluorescence due to inhibition of torsional motion. These derivatives show remarkable sensitivity and selectivity as well as favorable spectroscopic properties toward HSA, thus providing selective probes for this and similar proteins and demonstrating the use of GFP chromophores as topological fluorophores.

Key concepts: Chromophore, Green fluorescent protein, Chemistry, Fluorescence, Human serum albumin, Fluorescent protein, Photochemistry, Biophysics

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