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Mechanically rigid supramolecular assemblies formed from an Fmoc-guanine conjugated peptide nucleic acid.


ABSTRACT: The variety and complexity of DNA-based structures make them attractive candidates for nanotechnology, yet insufficient stability and mechanical rigidity, compared to polyamide-based molecules, limit their application. Here, we combine the advantages of polyamide materials and the structural patterns inspired by nucleic-acids to generate a mechanically rigid fluorenylmethyloxycarbonyl (Fmoc)-guanine peptide nucleic acid (PNA) conjugate with diverse morphology and photoluminescent properties. The assembly possesses a unique atomic structure, with each guanine head of one molecule hydrogen bonded to the Fmoc carbonyl tail of another molecule, generating a non-planar cyclic quartet arrangement. This structure exhibits an average stiffness of 69.6 ± 6.8 N m-1 and Young's modulus of 17.8 ± 2.5 GPa, higher than any previously reported nucleic acid derived structure. This data suggests that the unique cation-free "basket" formed by the Fmoc-G-PNA conjugate can serve as an attractive component for the design of new materials based on PNA self-assembly for nanotechnology applications.

SUBMITTER: Basavalingappa V 

PROVIDER: S-EPMC6868146 | biostudies-literature | 2019 Nov

REPOSITORIES: biostudies-literature

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Mechanically rigid supramolecular assemblies formed from an Fmoc-guanine conjugated peptide nucleic acid.

Basavalingappa Vasantha V   Bera Santu S   Xue Bin B   Azuri Ido I   Tang Yiming Y   Tao Kai K   Shimon Linda J W LJW   Sawaya Michael R MR   Kolusheva Sofiya S   Eisenberg David S DS   Kronik Leeor L   Cao Yi Y   Wei Guanghong G   Gazit Ehud E  

Nature communications 20191120 1


The variety and complexity of DNA-based structures make them attractive candidates for nanotechnology, yet insufficient stability and mechanical rigidity, compared to polyamide-based molecules, limit their application. Here, we combine the advantages of polyamide materials and the structural patterns inspired by nucleic-acids to generate a mechanically rigid fluorenylmethyloxycarbonyl (Fmoc)-guanine peptide nucleic acid (PNA) conjugate with diverse morphology and photoluminescent properties. The  ...[more]

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