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Nitroalkanes as Thioacyl Equivalents to Access Thioamides and Thiopeptides

Version 2 2024-03-13, 10:11
Version 1 2024-03-01, 12:43
journal contribution
posted on 2024-03-13, 10:11 authored by Xiaonan Wang, Silong Xu, Yuhai Tang, Martin LearMartin Lear, He Wanxiao, Jing Li

Thioamides are an important, but a largely underexplored class of amide bioisostere in peptides. Replacement of oxoamide units with thioamides in peptide therapeutics is a valuable tactic to improve biological activity and resistance to enzymatic hydrolysis. This tactic, however, has been hampered by insufficient methods to introduce thioamide bonds into peptide or protein backbones in a site-specific and stereo-retentive fashion. In this work, we developed an efficient and mild thioacylation method to react nitroalkanes with amines directly in the presence of elemental sulfur and sodium sulfide to form a diverse range of thioamides in high yields. Notably, this convenient method can be employed for the controlled thioamide coupling of multifunctionalized peptides without epimerization of stereocenters, including the late stage thioacylation of advanced compounds of biological and medicinal interest. Experimental interrogation of postulated mechanisms currently supports the intermediacy of thioacyl species.

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School affiliated with

  • School of Chemistry (Research Outputs)

Publication Title

Nature Communications

Volume

14

Publisher

Nature Research

ISSN

2041-1723

eISSN

2041-1723

Date Submitted

2023-08-31

Date Accepted

2023-07-20

Date of First Publication

2023-08-02

Date of Final Publication

2023-08-02

Date Document First Uploaded

2023-08-02

ePrints ID

55649

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