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Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold

It is a challenge within the field of biomimetics to recreate the properties of light-harvesting antennae found in plants and photosynthetic bacteria. Attempts to recreate these biological structures typically rely on the alignment of fluorescent moieties via attachment to an inert linear scaffold,...

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Autores principales: Tridgett, Matthew, Moore-Kelly, Charles, Duprey, Jean-Louis H. A., Iturbe, Lorea Orueta, Tsang, Chi W., Little, Haydn A., Sandhu, Sandeep K., Hicks, Matthew R., Dafforn, Timothy R., Rodger, Alison
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333254/
https://www.ncbi.nlm.nih.gov/pubmed/30713683
http://dx.doi.org/10.1039/c8ra05475d
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author Tridgett, Matthew
Moore-Kelly, Charles
Duprey, Jean-Louis H. A.
Iturbe, Lorea Orueta
Tsang, Chi W.
Little, Haydn A.
Sandhu, Sandeep K.
Hicks, Matthew R.
Dafforn, Timothy R.
Rodger, Alison
author_facet Tridgett, Matthew
Moore-Kelly, Charles
Duprey, Jean-Louis H. A.
Iturbe, Lorea Orueta
Tsang, Chi W.
Little, Haydn A.
Sandhu, Sandeep K.
Hicks, Matthew R.
Dafforn, Timothy R.
Rodger, Alison
author_sort Tridgett, Matthew
collection PubMed
description It is a challenge within the field of biomimetics to recreate the properties of light-harvesting antennae found in plants and photosynthetic bacteria. Attempts to recreate these biological structures typically rely on the alignment of fluorescent moieties via attachment to an inert linear scaffold, e.g. DNA, RNA or amyloid fibrils, to enable Förster resonance energy transfer (FRET) between attached chromophores. While there has been some success in this approach, refinement of the alignment of the chromophores is often limited, which may limit the efficiency of energy transfer achieved. Here we demonstrate how linear dichroism spectroscopy may be used to ascertain the overall alignment of chromophores bound to the M13 bacteriophage, a model linear scaffold, and demonstrate how this may be used to distinguish between lack of FRET efficiency due to chromophore separation, and chromophore misalignment. This approach will allow the refinement of artificial light-harvesting antennae in a directed fashion.
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spelling pubmed-63332542019-02-01 Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold Tridgett, Matthew Moore-Kelly, Charles Duprey, Jean-Louis H. A. Iturbe, Lorea Orueta Tsang, Chi W. Little, Haydn A. Sandhu, Sandeep K. Hicks, Matthew R. Dafforn, Timothy R. Rodger, Alison RSC Adv Chemistry It is a challenge within the field of biomimetics to recreate the properties of light-harvesting antennae found in plants and photosynthetic bacteria. Attempts to recreate these biological structures typically rely on the alignment of fluorescent moieties via attachment to an inert linear scaffold, e.g. DNA, RNA or amyloid fibrils, to enable Förster resonance energy transfer (FRET) between attached chromophores. While there has been some success in this approach, refinement of the alignment of the chromophores is often limited, which may limit the efficiency of energy transfer achieved. Here we demonstrate how linear dichroism spectroscopy may be used to ascertain the overall alignment of chromophores bound to the M13 bacteriophage, a model linear scaffold, and demonstrate how this may be used to distinguish between lack of FRET efficiency due to chromophore separation, and chromophore misalignment. This approach will allow the refinement of artificial light-harvesting antennae in a directed fashion. The Royal Society of Chemistry 2018-08-20 /pmc/articles/PMC6333254/ /pubmed/30713683 http://dx.doi.org/10.1039/c8ra05475d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Tridgett, Matthew
Moore-Kelly, Charles
Duprey, Jean-Louis H. A.
Iturbe, Lorea Orueta
Tsang, Chi W.
Little, Haydn A.
Sandhu, Sandeep K.
Hicks, Matthew R.
Dafforn, Timothy R.
Rodger, Alison
Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold
title Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold
title_full Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold
title_fullStr Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold
title_full_unstemmed Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold
title_short Linear dichroism of visible-region chromophores using M13 bacteriophage as an alignment scaffold
title_sort linear dichroism of visible-region chromophores using m13 bacteriophage as an alignment scaffold
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333254/
https://www.ncbi.nlm.nih.gov/pubmed/30713683
http://dx.doi.org/10.1039/c8ra05475d
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