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Modular assembly of proteins on nanoparticles

Version 4 2024-03-12, 16:27
Version 3 2023-10-29, 12:49
journal contribution
posted on 2024-03-12, 16:27 authored by Wenwei Ma, Angela Saccardo, Danilo RoccatanoDanilo Roccatano, Dorothy Aboagye-Mensah, Mohammad Alkaseem, Matthew Jewkes, Francesca Di Nezza, Mark Baron, Mikhail Soloviev, Enrico FerrariEnrico Ferrari

Generally, the high diversity of protein properties necessitates the development of unique nanoparticle bio-conjugation methods, optimized for each different protein. Here we describe a universal bio-conjugation approach which makes use of a new recombinant fusion protein combining two distinct domains. The N-terminal part is Glutathione S-Transferase (GST) from Schistosoma japonicum, for which we identify and characterize the remarkable ability to bind gold nanoparticles (GNPs) by forming gold–sulfur bonds (Au–S). The C-terminal part of this multi-domain construct is the SpyCatcher from Streptococcus pyogenes, which provides the ability to capture recombinant proteins encoding a SpyTag. Here we show that SpyCatcher can be immobilized covalently on GNPs through GST without the loss of its full functionality. We then show that GST-SpyCatcher activated particles are able to covalently bind a SpyTag modified protein by simple mixing, through the spontaneous formation of an unusual isopeptide bond.

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School affiliated with

  • Department of Life Sciences (Research Outputs)

Publication Title

Nature Communications

Volume

9

Issue

1

Pages/Article Number

1489

Publisher

Nature Publishing Group

eISSN

2041-1723

Date Submitted

2018-04-16

Date Accepted

2018-03-21

Date of First Publication

2018-04-16

Date of Final Publication

2018-12-31

Date Document First Uploaded

2018-04-16

ePrints ID

31706

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