Literature DB >> 21351768

Light-activated reassembly of split green fluorescent protein.

Kevin P Kent1, Steven G Boxer.   

Abstract

Truncated green fluorescent protein (GFP) with the 11th β-strand removed is potentially interesting for bioconjugation, imaging, and the preparation of semisynthetic proteins with novel spectroscopic or functional properties. Surprisingly, the truncated GFP generated by removing the 11th strand, once refolded, does not reassemble with a synthetic peptide corresponding to strand 11 but does reassemble following light activation. The mechanism of this process has been studied in detail by absorption, fluorescence, and Raman spectroscopy. The chromophore in this refolded truncated GFP is found to be in the trans configuration. Upon exposure to light a photostationary state is formed between the trans and cis conformations of the chromophore, and only truncated GFP with the cis configuration of the chromophore binds the peptide. A kinetic model describing the light-activated reassembly of this split GFP is discussed. This unique light-driven reassembly is potentially useful for controlling protein-protein interactions.

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Year:  2011        PMID: 21351768      PMCID: PMC3068246          DOI: 10.1021/ja110256c

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  31 in total

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3.  Highlighted generation of fluorescence signals using simultaneous two-color irradiation on Dronpa mutants.

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4.  Supercharging proteins can impart unusual resilience.

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5.  Structural basis for reversible photobleaching of a green fluorescent protein homologue.

Authors:  J Nathan Henderson; Hui-Wang Ai; Robert E Campbell; S James Remington
Journal:  Proc Natl Acad Sci U S A       Date:  2007-04-09       Impact factor: 11.205

6.  Raman study of chromophore states in photochromic fluorescent proteins.

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Journal:  J Am Chem Soc       Date:  2009-01-14       Impact factor: 15.419

7.  Reverse pH-dependence of chromophore protonation explains the large Stokes shift of the red fluorescent protein mKeima.

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9.  Complementation and reconstitution of fluorescence from circularly permuted and truncated green fluorescent protein.

Authors:  Yao-ming Huang; Christopher Bystroff
Journal:  Biochemistry       Date:  2009-02-10       Impact factor: 3.162

10.  Synthetic control of green fluorescent protein.

Authors:  Kevin P Kent; Luke M Oltrogge; Steven G Boxer
Journal:  J Am Chem Soc       Date:  2009-11-11       Impact factor: 15.419

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  12 in total

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Journal:  J Biol Chem       Date:  2011-11-28       Impact factor: 5.157

2.  Thermodynamics, kinetics, and photochemistry of β-strand association and dissociation in a split-GFP system.

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3.  Mispacking and the Fitness Landscape of the Green Fluorescent Protein Chromophore Milieu.

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4.  Toward Computationally Designed Self-Reporting Biosensors Using Leave-One-Out Green Fluorescent Protein.

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Review 7.  Beta-barrel scaffold of fluorescent proteins: folding, stability and role in chromophore formation.

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8.  Structural Insight into the Photochemistry of Split Green Fluorescent Proteins: A Unique Role for a His-Tag.

Authors:  Alan Deng; Steven G Boxer
Journal:  J Am Chem Soc       Date:  2017-12-21       Impact factor: 15.419

9.  Characterization of Split Fluorescent Protein Variants and Quantitative Analyses of Their Self-Assembly Process.

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10.  Cellular imaging by targeted assembly of hot-spot SERS and photoacoustic nanoprobes using split-fluorescent protein scaffolds.

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