TY - JOUR
T1 - Oxocarbenium Lewis acid complex
T2 - A neutral thiol-specific bioconjugation reagent
AU - Li, Bohan
AU - Situmorang, Daniel Paniroi
AU - Zhang, Zhenguo
AU - Tio, Raymond
AU - Xie, Peizhong
AU - Loh, Teck Peng
N1 - Publisher Copyright:
© 2025 Fudan University
PY - 2025
Y1 - 2025
N2 - Oxocarbenium ions are pivotal intermediates in organic synthesis, driving key transformations like glycosylation, rearrangement and cyclization. However, their generation typically requires Lewis or Brønsted acids, limiting their use with acid-sensitive substrates such as proteins. In this study, we present a neutral oxocarbenium Lewis acid complex that enables thiol-specific bioconjugation of cysteine residues in proteins without compromising their structure. The conjugated products are highly stable across various conditions—unlike maleimide-based conjugates, which often undergo retro-Michael reactions. This complex forms an ionic liquid at room temperature, offering versatility in diverse environments. Our method demonstrates broad substrate scope, efficiently modifying aromatic and aliphatic lactols and thiols, providing a precise and robust platform for applications such as antibody-drug conjugates.
AB - Oxocarbenium ions are pivotal intermediates in organic synthesis, driving key transformations like glycosylation, rearrangement and cyclization. However, their generation typically requires Lewis or Brønsted acids, limiting their use with acid-sensitive substrates such as proteins. In this study, we present a neutral oxocarbenium Lewis acid complex that enables thiol-specific bioconjugation of cysteine residues in proteins without compromising their structure. The conjugated products are highly stable across various conditions—unlike maleimide-based conjugates, which often undergo retro-Michael reactions. This complex forms an ionic liquid at room temperature, offering versatility in diverse environments. Our method demonstrates broad substrate scope, efficiently modifying aromatic and aliphatic lactols and thiols, providing a precise and robust platform for applications such as antibody-drug conjugates.
KW - Biocompatible
KW - Oxocarbenium Lewis acid complex
KW - Protein modification
KW - Thiol-specific bioconjugation
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U2 - 10.1016/j.gresc.2025.06.010
DO - 10.1016/j.gresc.2025.06.010
M3 - Article
AN - SCOPUS:105012775597
SN - 2666-5549
JO - Green Synthesis and Catalysis
JF - Green Synthesis and Catalysis
ER -