Aug 2026· Nature Chemistry· 0 citations· 48 references
Medicine
TL;DR
It is shown that chemical reactions of metabolic intermediates produced intracellularly in living cells can include intermolecular nitrene transfers.
Abstract
Synthetic biology has enabled the production of natural and unnatural products from inexpensive sustainable feedstocks. Yet, the scope of available products has been limited largely to compounds accessible from nature's chemical reactions. Evolved enzymes can catalyse reactions of unnatural substrates or reactions not found in nature but often require the addition of synthetic reagents to purified enzymes or to resting cells containing those enzymes. Here we show that chemical reactions of metabolic intermediates produced intracellularly in living cells can include intermolecular nitrene transfers. The biosynthesis of N-acetoxyanilines, in combination with the generation and transfer of N-aryl nitrene intermediates from them catalysed by a cytochrome P450, generates amino alcohols, diamines, diarylamines and aminoalkyl arenes from simple carbon feedstocks. These products-common substructures of pharmaceuticals and agrochemicals-are challenging to synthesize by standard organic chemistry and were produced from inexpensive, renewable feedstocks. Evolution of the enzymes in this pathway showed that titres can be increased by engineering and that the products can be synthesized with high enantioselectivity.
This review addresses the central question of how biosynthetic precision and chemical diversification can be coupled when conventional metabolic engineering alone cannot fully overcome low titers, enzyme promiscuity limits, intermediate toxicity, and scale-up heterogeneity.
Sha Liu, Pan Chen, Hai-Tao Li et al.· Frontiers in Microbiology· 0 citations
The noncanonical amino acid l-azidohomoalanine (Aha) can replace methionine in ribosomal translation under tightly controlled conditions. Aha has been commonly employed to functionalize proteins by the bioorthogonal conjugation with alkynes, the so-called “click chemistry”. However, its application for scalable recom...
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Oleanane-type pentacyclic triterpenoids are a class of naturally occurring specialized metabolites with diverse biological activities. Conventional plant extraction and chemical synthesis are constrained by low yields, high costs, and a reliance on natural resources. With the development of synthetic biology and meta...
Fu-Yan Yuan, De-Yue Diao, Shi-Xiang Peng et al.· Journal of Agricultural and...· 0 citations
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