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January 22, 2026Organic Letters0 citations

N -Acyl Benzisothiazolinones ( N -acyl BITs) Enable Efficient Amide Bond Formation in Aqueous and Organic Media

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JMJunyoung MoonSLSo Yeon LeeHOHan Bin Oh

Key Points

  • This research aims to explore the effectiveness of N-acyl benzisothiazolinones in facilitating amide bond formation.
  • Introduced N-acyl BITs as acylating reagents for amines.
  • Performed reactions in both organic solvents and mixed organic/water systems.
  • Compared hydrolysis resistance of N-acyl BITs with N-hydroxysuccinimide esters.
  • Demonstrated biotinylation of peptides using a BIT-biotin derivative.
  • N-acyl BITs showed fast and efficient acyl transfer to various types of amines.
  • Amidation occurred under mild conditions without additives.
  • N-acyl BITs were more resistant to hydrolysis than traditional acylating agents.
  • Successful N-terminal biotinylation of peptides was achieved in mixed solvent environments.

Abstract

N-Acyl benzisothiazolinones (N-acyl BITs) are introduced as a class of bench-stable acylating reagents that undergo efficient acyl transfer to amines under mild conditions. Unlike the well-known N-S bond cleavage pathways of benzisothiazolinone derivatives, N-acyl BITs operate through direct acyl-nitrogen bond activation, enabling rapid amide formation without additives in a wide range of organic solvents as well as mixed organic/water solvent systems. These reagents display broad compatibility with primary, secondary, and aromatic amines and exhibit enhanced resistance to hydrolysis compared with commonly used N-hydroxysuccinimide esters. A BIT-biotin derivative further demonstrates the applicability of this platform to amine modification in mixed solvent environments, achieving efficient N-terminal biotinylation of peptides under the employed reaction conditions. Together, these results establish N-acyl BITs as practical and robust reagents for amide bond formation under water-compatible conditions.

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Cite This Study

Moon et al. (2026) studied this question.

synapsesocial.com/papers/6971be50642b1836717e2f07https://doi.org/10.1021/acs.orglett.5c05019
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