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Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures

Immobile Holliday junctions represent not only the most fundamental building block of structural DNA nanotechnology but are also of tremendous importance for the in vitro investigation of genetic recombination and epigenetics. Here, we present a detailed study on the room-temperature assembly of imm...

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Autores principales: Ramakrishnan, Saminathan, Subramaniam, Sivaraman, Kielar, Charlotte, Grundmeier, Guido, Stewart, A. Francis, Keller, Adrian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663122/
https://www.ncbi.nlm.nih.gov/pubmed/33153073
http://dx.doi.org/10.3390/molecules25215099
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author Ramakrishnan, Saminathan
Subramaniam, Sivaraman
Kielar, Charlotte
Grundmeier, Guido
Stewart, A. Francis
Keller, Adrian
author_facet Ramakrishnan, Saminathan
Subramaniam, Sivaraman
Kielar, Charlotte
Grundmeier, Guido
Stewart, A. Francis
Keller, Adrian
author_sort Ramakrishnan, Saminathan
collection PubMed
description Immobile Holliday junctions represent not only the most fundamental building block of structural DNA nanotechnology but are also of tremendous importance for the in vitro investigation of genetic recombination and epigenetics. Here, we present a detailed study on the room-temperature assembly of immobile Holliday junctions with the help of the single-strand annealing protein Redβ. Individual DNA single strands are initially coated with protein monomers and subsequently hybridized to form a rigid blunt-ended four-arm junction. We investigate the efficiency of this approach for different DNA/protein ratios, as well as for different DNA sequence lengths. Furthermore, we also evaluate the potential of Redβ to anneal sticky-end modified Holliday junctions into hierarchical assemblies. We demonstrate the Redβ-mediated annealing of Holliday junction dimers, multimers, and extended networks several microns in size. While these hybrid DNA–protein nanostructures may find applications in the crystallization of DNA–protein complexes, our work shows the great potential of Redβ to aid in the synthesis of functional DNA nanostructures under mild reaction conditions.
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spelling pubmed-76631222020-11-14 Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures Ramakrishnan, Saminathan Subramaniam, Sivaraman Kielar, Charlotte Grundmeier, Guido Stewart, A. Francis Keller, Adrian Molecules Article Immobile Holliday junctions represent not only the most fundamental building block of structural DNA nanotechnology but are also of tremendous importance for the in vitro investigation of genetic recombination and epigenetics. Here, we present a detailed study on the room-temperature assembly of immobile Holliday junctions with the help of the single-strand annealing protein Redβ. Individual DNA single strands are initially coated with protein monomers and subsequently hybridized to form a rigid blunt-ended four-arm junction. We investigate the efficiency of this approach for different DNA/protein ratios, as well as for different DNA sequence lengths. Furthermore, we also evaluate the potential of Redβ to anneal sticky-end modified Holliday junctions into hierarchical assemblies. We demonstrate the Redβ-mediated annealing of Holliday junction dimers, multimers, and extended networks several microns in size. While these hybrid DNA–protein nanostructures may find applications in the crystallization of DNA–protein complexes, our work shows the great potential of Redβ to aid in the synthesis of functional DNA nanostructures under mild reaction conditions. MDPI 2020-11-03 /pmc/articles/PMC7663122/ /pubmed/33153073 http://dx.doi.org/10.3390/molecules25215099 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ramakrishnan, Saminathan
Subramaniam, Sivaraman
Kielar, Charlotte
Grundmeier, Guido
Stewart, A. Francis
Keller, Adrian
Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures
title Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures
title_full Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures
title_fullStr Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures
title_full_unstemmed Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures
title_short Protein-Assisted Room-Temperature Assembly of Rigid, Immobile Holliday Junctions and Hierarchical DNA Nanostructures
title_sort protein-assisted room-temperature assembly of rigid, immobile holliday junctions and hierarchical dna nanostructures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663122/
https://www.ncbi.nlm.nih.gov/pubmed/33153073
http://dx.doi.org/10.3390/molecules25215099
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