Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard

The design and optimisation of 3D DNA-origami can be a barrier to rapid application. Here the authors design barrel structure of stacked 2D double helical rings with complex surface patterns.

Bibliographic Details
Main Authors: Shelley F. J. Wickham, Alexander Auer, Jianghong Min, Nandhini Ponnuswamy, Johannes B. Woehrstein, Florian Schueder, Maximilian T. Strauss, Jörg Schnitzbauer, Bhavik Nathwani, Zhao Zhao, Steven D. Perrault, Jaeseung Hahn, Seungwoo Lee, Maartje M. Bastings, Sarah W. Helmig, Anne Louise Kodal, Peng Yin, Ralf Jungmann, William M. Shih
Format: Article
Language:English
Published: Nature Portfolio 2020-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-020-18910-x
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author Shelley F. J. Wickham
Alexander Auer
Jianghong Min
Nandhini Ponnuswamy
Johannes B. Woehrstein
Florian Schueder
Maximilian T. Strauss
Jörg Schnitzbauer
Bhavik Nathwani
Zhao Zhao
Steven D. Perrault
Jaeseung Hahn
Seungwoo Lee
Maartje M. Bastings
Sarah W. Helmig
Anne Louise Kodal
Peng Yin
Ralf Jungmann
William M. Shih
author_facet Shelley F. J. Wickham
Alexander Auer
Jianghong Min
Nandhini Ponnuswamy
Johannes B. Woehrstein
Florian Schueder
Maximilian T. Strauss
Jörg Schnitzbauer
Bhavik Nathwani
Zhao Zhao
Steven D. Perrault
Jaeseung Hahn
Seungwoo Lee
Maartje M. Bastings
Sarah W. Helmig
Anne Louise Kodal
Peng Yin
Ralf Jungmann
William M. Shih
author_sort Shelley F. J. Wickham
collection DOAJ
description The design and optimisation of 3D DNA-origami can be a barrier to rapid application. Here the authors design barrel structure of stacked 2D double helical rings with complex surface patterns.
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spelling doaj.art-2cd547b483ad48338c20f9b42b9fa0bf2022-12-21T19:27:48ZengNature PortfolioNature Communications2041-17232020-11-0111111010.1038/s41467-020-18910-xComplex multicomponent patterns rendered on a 3D DNA-barrel pegboardShelley F. J. Wickham0Alexander Auer1Jianghong Min2Nandhini Ponnuswamy3Johannes B. Woehrstein4Florian Schueder5Maximilian T. Strauss6Jörg Schnitzbauer7Bhavik Nathwani8Zhao Zhao9Steven D. Perrault10Jaeseung Hahn11Seungwoo Lee12Maartje M. Bastings13Sarah W. Helmig14Anne Louise Kodal15Peng Yin16Ralf Jungmann17William M. Shih18Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolFaculty of Physics and Center for Nanoscience, Ludwig Maximilian UniversityDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolFaculty of Physics and Center for Nanoscience, Ludwig Maximilian UniversityFaculty of Physics and Center for Nanoscience, Ludwig Maximilian UniversityFaculty of Physics and Center for Nanoscience, Ludwig Maximilian UniversityFaculty of Physics and Center for Nanoscience, Ludwig Maximilian UniversityDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolDanish National Research Foundation: Centre for DNA Nanotechnology at Interdisciplinary Nanoscience Center (iNANO), Department of Chemistry, Aarhus UniversityDanish National Research Foundation: Centre for DNA Nanotechnology at Interdisciplinary Nanoscience Center (iNANO), Department of Chemistry, Aarhus UniversityWyss Institute for Biologically Inspired EngineeringFaculty of Physics and Center for Nanoscience, Ludwig Maximilian UniversityDepartment of Biological Chemistry and Molecular Pharmacology, Harvard Medical SchoolThe design and optimisation of 3D DNA-origami can be a barrier to rapid application. Here the authors design barrel structure of stacked 2D double helical rings with complex surface patterns.https://doi.org/10.1038/s41467-020-18910-x
spellingShingle Shelley F. J. Wickham
Alexander Auer
Jianghong Min
Nandhini Ponnuswamy
Johannes B. Woehrstein
Florian Schueder
Maximilian T. Strauss
Jörg Schnitzbauer
Bhavik Nathwani
Zhao Zhao
Steven D. Perrault
Jaeseung Hahn
Seungwoo Lee
Maartje M. Bastings
Sarah W. Helmig
Anne Louise Kodal
Peng Yin
Ralf Jungmann
William M. Shih
Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard
Nature Communications
title Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard
title_full Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard
title_fullStr Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard
title_full_unstemmed Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard
title_short Complex multicomponent patterns rendered on a 3D DNA-barrel pegboard
title_sort complex multicomponent patterns rendered on a 3d dna barrel pegboard
url https://doi.org/10.1038/s41467-020-18910-x
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