Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes
Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes
The optimisation and further expansion of methods for the synthesis of oligonucleotide conjugates is receiving increased attention due to their importance for further advancement of therapeutic and diagnostic nucleic acid-based applications. Current methodologies, particularly those relying on maleimide-type linkers, are often hampered by linker instability. Herein, we present a versatile method for the direct functionalisation of readily available amino-modified oligonucleotides (AONs), where a 5-hydroxy-1,5-dihydro-2H-pyrrol-2-ones (5HP2O) Michael acceptor is directly formed in a rapid and efficient manner on a free primary amine. The methodology demonstrates broad applicability, tolerating various amino-modifiers and their positions within different oligonucleotide types, including DNA, LNA, PNA, and phosphorothioate-modified oligonucleotide strands. Most importantly, the possibility to introduce an additional second orthogonal reactive handle uniquely enables a direct single-site dual-functionalisation (Michael acceptor and click handle) of AONs for the assembly of complex constructs, as exemplified by the synthesis of a fluorescent peptide-oligonucleotide construct.
Meffert, Jan H.
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Lopes, Mónica
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Cadoni, Enrico
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Bollmark, Martin
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Tedebark, Ulf
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Madder, Annemieke
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Meffert, Jan H.
5ec4a9e5-70d8-42ca-949a-35e7b2270f1a
Lopes, Mónica
791e65ee-28ff-475b-b5f4-4baff811f64f
Cadoni, Enrico
3976c8a3-7c8b-4f35-aebc-bcc767d9f709
Bollmark, Martin
8518b787-dd1f-4bf5-abfb-5479e8d66249
Tedebark, Ulf
ed9527f9-cc70-4bbc-b2d1-0ae6cde9f2bc
Madder, Annemieke
80329595-afd9-4d59-be6d-fbb2b8863fd9
Meffert, Jan H., Lopes, Mónica, Cadoni, Enrico, Bollmark, Martin, Tedebark, Ulf and Madder, Annemieke
(2026)
Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes.
Communications Chemistry, 9 (1), [80].
(doi:10.1038/s42004-025-01882-8).
Abstract
The optimisation and further expansion of methods for the synthesis of oligonucleotide conjugates is receiving increased attention due to their importance for further advancement of therapeutic and diagnostic nucleic acid-based applications. Current methodologies, particularly those relying on maleimide-type linkers, are often hampered by linker instability. Herein, we present a versatile method for the direct functionalisation of readily available amino-modified oligonucleotides (AONs), where a 5-hydroxy-1,5-dihydro-2H-pyrrol-2-ones (5HP2O) Michael acceptor is directly formed in a rapid and efficient manner on a free primary amine. The methodology demonstrates broad applicability, tolerating various amino-modifiers and their positions within different oligonucleotide types, including DNA, LNA, PNA, and phosphorothioate-modified oligonucleotide strands. Most importantly, the possibility to introduce an additional second orthogonal reactive handle uniquely enables a direct single-site dual-functionalisation (Michael acceptor and click handle) of AONs for the assembly of complex constructs, as exemplified by the synthesis of a fluorescent peptide-oligonucleotide construct.
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Accepted/In Press date: 26 December 2025
e-pub ahead of print date: 10 January 2026
Additional Information:
© 2026. The Author(s).
Identifiers
Local EPrints ID: 510162
URI: http://eprints.soton.ac.uk/id/eprint/510162
ISSN: 2399-3669
PURE UUID: 4fc80c90-dc54-4038-be11-31000a70c699
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Date deposited: 19 Mar 2026 17:37
Last modified: 20 Mar 2026 03:02
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Contributors
Author:
Jan H. Meffert
Author:
Mónica Lopes
Author:
Enrico Cadoni
Author:
Martin Bollmark
Author:
Ulf Tedebark
Author:
Annemieke Madder
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