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Orthogonal Protein Assembly on DNA Nanostructures Using Relaxases.


ABSTRACT: DNA-binding proteins are promising reagents for the sequence-specific modification of DNA-based nanostructures. Here, we investigate the utility of a series of relaxase proteins-TrwC, TraI, and MobA-for nanofunctionalization. Relaxases are involved in the conjugative transfer of plasmids between bacteria, and bind to their DNA target sites via a covalent phosphotyrosine linkage. We study the binding of the relaxases to two standard DNA origami structures-rodlike six-helix bundles and flat rectangular origami sheets. We find highly orthogonal binding of the proteins with binding yields of 40-50?% per binding site, which is comparable to other functionalization methods. The yields differ for the two origami structures and also depend on the position of the binding sites. Due to their specificity for a single-stranded DNA target, their orthogonality, and their binding properties, relaxases are a uniquely useful addition to the toolbox available for the modification of DNA nanostructures with proteins.

SUBMITTER: Sagredo S 

PROVIDER: S-EPMC5067690 | biostudies-literature | 2016 Mar

REPOSITORIES: biostudies-literature

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Orthogonal Protein Assembly on DNA Nanostructures Using Relaxases.

Sagredo Sandra S   Pirzer Tobias T   Aghebat Rafat Ali A   Goetzfried Marisa A MA   Moncalian Gabriel G   Simmel Friedrich C FC   de la Cruz Fernando F  

Angewandte Chemie (International ed. in English) 20160224 13


DNA-binding proteins are promising reagents for the sequence-specific modification of DNA-based nanostructures. Here, we investigate the utility of a series of relaxase proteins-TrwC, TraI, and MobA-for nanofunctionalization. Relaxases are involved in the conjugative transfer of plasmids between bacteria, and bind to their DNA target sites via a covalent phosphotyrosine linkage. We study the binding of the relaxases to two standard DNA origami structures-rodlike six-helix bundles and flat rectan  ...[more]

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