The equipment of technical devices with biogenic adapter structures enables effective integration of biofunctional units into advanced sensor, filtration or catalytic layouts. Plant virus-derived self-organizing supramolecular complexes are among the most promising soft-matter adapters due to their multivalence on the nanometer scale, precise dimensions, high availability and compatibility with routine conjugation chemistry. Bioengineering can tailor both the templates’ shapes and coupling sites and has been applied here to develop nucleoprotein ‘nanorings’ made of tobacco mosaic virus (TMV) building blocks. Short RNA-scaffolded four-turn helices of ≈68 protein subunits and ≈9 nm length, with 18 nm outer and 4 nm inner diameters, were generated efficiently in vitro. A structure-directing single-stranded 204-nucleotide ribonucleic acid containing the TMV origin of assembly-yielded colloidal preparations that have structural integrity and are well dispersed in a pH range from about 7 to 9. Two selectively addressable protein types with either an amino or a thiol group accessible were combined in the ring-like objects, allowing dual covalent coupling of a fluorescent dye first and to an isothiocyanate-covered substrate thereafter. Such precisely shaped nanoconstructs with distinct functional groups exposed in high surface densities offer novel opportunities as versatile adapter elements for the fabrication of extended bio/synthetic hybrid materials.
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1 December 2017
Research Article|
April 18 2017
RNA-stabilized protein nanorings: high-precision adapters for biohybrid design
Klara Altintoprak, Dr. rer. nat.;
Klara Altintoprak, Dr. rer. nat.
Research Assistant
Department of Molecular Biology and Plant Virology, Institute of Biomaterials and Biomolecular Systems, University of Stuttgart, Stuttgart, Germany
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Axel Seidenstücker, Dr. rer. nat.;
Axel Seidenstücker, Dr. rer. nat.
Research Assistant
Institute of Solid State Physics, University of Ulm, Ulm, Germany
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Peter Krolla-Sidenstein, Dipl.-Biol.;
Peter Krolla-Sidenstein, Dipl.-Biol.
Research Assistant
Institute of Functional Interfaces, Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen, Germany
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Alfred Plettl, Dr. rer. nat.;
Alfred Plettl, Dr. rer. nat.
Group Leader
Institute of Solid State Physics, University of Ulm, Ulm, Germany
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Holger Jeske, Dr. rer. nat.;
Holger Jeske, Dr. rer. nat.
Professor
Department of Molecular Biology and Plant Virology, Institute of Biomaterials and Biomolecular Systems, University of Stuttgart, Stuttgart, Germany
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Hartmut Gliemann, Dr. rer. nat.;
Hartmut Gliemann, Dr. rer. nat.
Head of Department
Institute of Functional Interfaces, Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen, Germany
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Christina Wege, Dr. rer. nat.
Christina Wege, Dr. rer. nat.
*
Professor
Department of Molecular Biology and Plant Virology, Institute of Biomaterials and Biomolecular Systems, University of Stuttgart, Stuttgart, Germany
*Corresponding author e-mail address: christina.wege@bio.uni-stuttgart.de
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*Corresponding author e-mail address: christina.wege@bio.uni-stuttgart.de
Publisher: Emerald Publishing
Received:
December 09 2016
Accepted:
April 11 2017
Online ISSN: 2045-9866
Print ISSN: 2045-9858
ICE Publishing: All rights reserved
2017
Bioinspired, Biomimetic and Nanobiomaterials (2017) 6 (4): 208–223.
Article history
Received:
December 09 2016
Accepted:
April 11 2017
Citation
Altintoprak K, Seidenstücker A, Krolla-Sidenstein P, Plettl A, Jeske H, Gliemann H, Wege C (2017), "RNA-stabilized protein nanorings: high-precision adapters for biohybrid design". Bioinspired, Biomimetic and Nanobiomaterials, Vol. 6 No. 4 pp. 208–223, doi: https://doi.org/10.1680/jbibn.16.00047
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