Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions

Current strategies for protein encapsulation in DNA vessels for controlled enzymatic catalysis or therapeutic delivery rely on formation of covalent complexes. Here, the authors design a system that mimics natural reversible non-covalent host–guest interactions between a DNA host and the protein Deg...

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Autores principales: Andreas Sprengel, Pascal Lill, Pierre Stegemann, Kenny Bravo-Rodriguez, Elisa-C. Schöneweiß, Melisa Merdanovic, Daniel Gudnason, Mikayel Aznauryan, Lisa Gamrad, Stephan Barcikowski, Elsa Sanchez-Garcia, Victoria Birkedal, Christos Gatsogiannis, Michael Ehrmann, Barbara Saccà
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/5226d94ebae64287be29caae8f6fe6be
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spelling oai:doaj.org-article:5226d94ebae64287be29caae8f6fe6be2021-12-02T15:39:02ZTailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions10.1038/ncomms144722041-1723https://doaj.org/article/5226d94ebae64287be29caae8f6fe6be2017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14472https://doaj.org/toc/2041-1723Current strategies for protein encapsulation in DNA vessels for controlled enzymatic catalysis or therapeutic delivery rely on formation of covalent complexes. Here, the authors design a system that mimics natural reversible non-covalent host–guest interactions between a DNA host and the protein DegP.Andreas SprengelPascal LillPierre StegemannKenny Bravo-RodriguezElisa-C. SchöneweißMelisa MerdanovicDaniel GudnasonMikayel AznauryanLisa GamradStephan BarcikowskiElsa Sanchez-GarciaVictoria BirkedalChristos GatsogiannisMichael EhrmannBarbara SaccàNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-12 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Andreas Sprengel
Pascal Lill
Pierre Stegemann
Kenny Bravo-Rodriguez
Elisa-C. Schöneweiß
Melisa Merdanovic
Daniel Gudnason
Mikayel Aznauryan
Lisa Gamrad
Stephan Barcikowski
Elsa Sanchez-Garcia
Victoria Birkedal
Christos Gatsogiannis
Michael Ehrmann
Barbara Saccà
Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions
description Current strategies for protein encapsulation in DNA vessels for controlled enzymatic catalysis or therapeutic delivery rely on formation of covalent complexes. Here, the authors design a system that mimics natural reversible non-covalent host–guest interactions between a DNA host and the protein DegP.
format article
author Andreas Sprengel
Pascal Lill
Pierre Stegemann
Kenny Bravo-Rodriguez
Elisa-C. Schöneweiß
Melisa Merdanovic
Daniel Gudnason
Mikayel Aznauryan
Lisa Gamrad
Stephan Barcikowski
Elsa Sanchez-Garcia
Victoria Birkedal
Christos Gatsogiannis
Michael Ehrmann
Barbara Saccà
author_facet Andreas Sprengel
Pascal Lill
Pierre Stegemann
Kenny Bravo-Rodriguez
Elisa-C. Schöneweiß
Melisa Merdanovic
Daniel Gudnason
Mikayel Aznauryan
Lisa Gamrad
Stephan Barcikowski
Elsa Sanchez-Garcia
Victoria Birkedal
Christos Gatsogiannis
Michael Ehrmann
Barbara Saccà
author_sort Andreas Sprengel
title Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions
title_short Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions
title_full Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions
title_fullStr Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions
title_full_unstemmed Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactions
title_sort tailored protein encapsulation into a dna host using geometrically organized supramolecular interactions
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/5226d94ebae64287be29caae8f6fe6be
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