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Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties

The rapid development of new microscopy techniques for cell biology has exposed the need for genetically encoded fluorescent tags with special properties. Fluorescent biomarkers of the same color and spectral range and different fluorescent lifetimes (FLs) became useful for fluorescent lifetime imag...

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Autores principales: Goryacheva, Ekaterina, Efremov, Roman, Krylov, Nikolai, Artemyev, Igor, Bogdanov, Alexey, Mamontova, Anastasia, Pletnev, Sergei, Pletneva, Nadya, Pletnev, Vladimir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094611/
https://www.ncbi.nlm.nih.gov/pubmed/37047378
http://dx.doi.org/10.3390/ijms24076403
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author Goryacheva, Ekaterina
Efremov, Roman
Krylov, Nikolai
Artemyev, Igor
Bogdanov, Alexey
Mamontova, Anastasia
Pletnev, Sergei
Pletneva, Nadya
Pletnev, Vladimir
author_facet Goryacheva, Ekaterina
Efremov, Roman
Krylov, Nikolai
Artemyev, Igor
Bogdanov, Alexey
Mamontova, Anastasia
Pletnev, Sergei
Pletneva, Nadya
Pletnev, Vladimir
author_sort Goryacheva, Ekaterina
collection PubMed
description The rapid development of new microscopy techniques for cell biology has exposed the need for genetically encoded fluorescent tags with special properties. Fluorescent biomarkers of the same color and spectral range and different fluorescent lifetimes (FLs) became useful for fluorescent lifetime image microscopy (FLIM). One such tag, the green fluorescent protein BrUSLEE (Bright Ultimately Short Lifetime Enhanced Emitter), having an extremely short subnanosecond component of fluorescence lifetime (FL~0.66 ns) and exceptional fluorescence brightness, was designed for FLIM experiments. Here, we present the X-ray structure and discuss the structure-functional relations of BrUSLEE. Its development from the EGFP (enhanced green fluorescent proteins) precursor (FL~2.83 ns) resulted in a change of the chromophore microenvironment due to a significant alteration in the side chain conformations. To get further insight into molecular details explaining the observed differences in the photophysical properties of these proteins, we studied their structural, dynamic, and electric properties by all-atom molecular-dynamics simulations in an aqueous solution. It has been shown that compared to BrUSLEE, the mobility of the chromophore in the EGFP is noticeably limited by nonbonded interactions (mainly H-bonds) with the neighboring residues.
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spelling pubmed-100946112023-04-13 Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties Goryacheva, Ekaterina Efremov, Roman Krylov, Nikolai Artemyev, Igor Bogdanov, Alexey Mamontova, Anastasia Pletnev, Sergei Pletneva, Nadya Pletnev, Vladimir Int J Mol Sci Article The rapid development of new microscopy techniques for cell biology has exposed the need for genetically encoded fluorescent tags with special properties. Fluorescent biomarkers of the same color and spectral range and different fluorescent lifetimes (FLs) became useful for fluorescent lifetime image microscopy (FLIM). One such tag, the green fluorescent protein BrUSLEE (Bright Ultimately Short Lifetime Enhanced Emitter), having an extremely short subnanosecond component of fluorescence lifetime (FL~0.66 ns) and exceptional fluorescence brightness, was designed for FLIM experiments. Here, we present the X-ray structure and discuss the structure-functional relations of BrUSLEE. Its development from the EGFP (enhanced green fluorescent proteins) precursor (FL~2.83 ns) resulted in a change of the chromophore microenvironment due to a significant alteration in the side chain conformations. To get further insight into molecular details explaining the observed differences in the photophysical properties of these proteins, we studied their structural, dynamic, and electric properties by all-atom molecular-dynamics simulations in an aqueous solution. It has been shown that compared to BrUSLEE, the mobility of the chromophore in the EGFP is noticeably limited by nonbonded interactions (mainly H-bonds) with the neighboring residues. MDPI 2023-03-29 /pmc/articles/PMC10094611/ /pubmed/37047378 http://dx.doi.org/10.3390/ijms24076403 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Goryacheva, Ekaterina
Efremov, Roman
Krylov, Nikolai
Artemyev, Igor
Bogdanov, Alexey
Mamontova, Anastasia
Pletnev, Sergei
Pletneva, Nadya
Pletnev, Vladimir
Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties
title Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties
title_full Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties
title_fullStr Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties
title_full_unstemmed Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties
title_short Crystal Structure of Bright Fluorescent Protein BrUSLEE with Subnanosecond Fluorescence Lifetime; Electric and Dynamic Properties
title_sort crystal structure of bright fluorescent protein bruslee with subnanosecond fluorescence lifetime; electric and dynamic properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094611/
https://www.ncbi.nlm.nih.gov/pubmed/37047378
http://dx.doi.org/10.3390/ijms24076403
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