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Defined covalent assembly of protein molecules on graphene using a genetically encoded photochemical reaction handle.


ABSTRACT: We have created modified protein variants by introducing a non-canonical amino acid p-azido-l-phenylalanine (azF) into defined positions for photochemically-induced covalent attachment to graphene. Attachment of GFP, TEM and cyt b 562 proteins was verified through a combination of atomic force and scanning tunnelling microscopy, resistance measurements, Raman data and fluorescence measurements. This method can in principle be extended to any protein which can be engineered in this way without adversely affecting its structural stability.

SUBMITTER: Zaki AJ 

PROVIDER: S-EPMC9078156 | biostudies-literature | 2018 Feb

REPOSITORIES: biostudies-literature

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Defined covalent assembly of protein molecules on graphene using a genetically encoded photochemical reaction handle.

Zaki Athraa J AJ   Hartley Andrew M AM   Reddington Samuel C SC   Thomas Suzanne K SK   Watson Peter P   Hayes Anthony A   Moskalenko Andy V AV   Craciun Monica F MF   Macdonald J Emyr JE   Jones D Dafydd DD   Elliott Martin M  

RSC advances 20180205 11


We have created modified protein variants by introducing a non-canonical amino acid <i>p</i>-azido-l-phenylalanine (azF) into defined positions for photochemically-induced covalent attachment to graphene. Attachment of GFP, TEM and cyt <i>b</i> <sub>562</sub> proteins was verified through a combination of atomic force and scanning tunnelling microscopy, resistance measurements, Raman data and fluorescence measurements. This method can in principle be extended to any protein which can be engineer  ...[more]

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