4.8 Article

Functional elucidation of TfuA in peptide backbone thioamidation

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NATURE CHEMICAL BIOLOGY
卷 17, 期 5, 页码 585-592

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NATURE PORTFOLIO
DOI: 10.1038/s41589-021-00771-0

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  1. National Institutes of Health [S10 RR027109 A]
  2. Alice Helm Graduate Research Excellence Fellowship in Microbiology

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YcaO enzymes catalyze various post-translational modifications on peptide substrates, with thioamidation being one of them. TfuA protein plays a crucial role in thioamidation by hydrolyzing thiocarboxylated ThiS to enhance the affinity of YcaO towards the thioamidation substrate.
YcaO enzymes catalyze several post-translational modifications on peptide substrates, including thioamidation, which substitutes an amide oxygen with sulfur. Most predicted thioamide-forming YcaO enzymes are encoded adjacent to TfuA, which when present, is required for thioamidation. While activation of the peptide amide backbone is well established for YcaO enzymes, the function of TfuA has remained enigmatic. Here we characterize the TfuA protein involved in methyl-coenzyme M reductase thioamidation and demonstrate that TfuA catalyzes the hydrolysis of thiocarboxylated ThiS (ThiS-COSH), a proteinaceous sulfur donor, and enhances the affinity of YcaO toward the thioamidation substrate. We also report a crystal structure of a TfuA, which displays a new protein fold. Our structural and mutational analyses of TfuA have uncovered conserved binding interfaces with YcaO and ThiS in addition to revealing a hydrolase-like active site featuring a Ser-Lys catalytic pair.

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