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A biosynthetic pathway to aromatic amines that uses glycyl-tRNA as nitrogen donor
Journal article   Peer reviewed

A biosynthetic pathway to aromatic amines that uses glycyl-tRNA as nitrogen donor

Page N Daniels, Hyunji Lee, Rebecca A Splain, Chi P Ting, Lingyang Zhu, Xiling Zhao, Bradley S Moore and Wilfred A van der Donk
Nature chemistry, Vol.14(1), pp.71-77
01/2022
Handle:
https://hdl.handle.net/10192/67610
PMCID: PMC8758506
PMID: 34725492

Abstract

Amines - metabolism Nitrogen - metabolism RNA, Transfer - metabolism
Aromatic amines in nature are typically installed with Glu or Gln as the nitrogen donor. Here we report a pathway that features glycyl-tRNA instead. During the biosynthesis of pyrroloiminoquinone-type natural products such as ammosamides, peptide-aminoacyl tRNA ligases append amino acids to the C-terminus of a ribosomally synthesized peptide. First, [Formula: see text] adds Trp in a Trp-tRNA-dependent reaction and the flavoprotein AmmC then carries out three hydroxylations of the indole ring of Trp. After oxidation to the corresponding ortho-hydroxy para-quinone, [Formula: see text] attaches Gly to the indole ring in a Gly-tRNA dependent fashion. Subsequent decarboxylation and hydrolysis results in an amino-substituted indole. Similar transformations are catalysed by orthologous enzymes from Bacillus halodurans. This pathway features three previously unknown biochemical processes using a ribosomally synthesized peptide as scaffold for non-ribosomal peptide extension and chemical modification to generate an amino acid-derived natural product.

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