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Tandem ketone reduction in pepstatin biosynthesis reveals an F420H2-dependent statine pathway

Nature Communications. 2025-05; 
Jingjun Mo, Asfandyar Sikandar, Haowen Zhao, Ghader Bashiri, Liujie Huo, Martin Empting, Rolf Müller, Chengzhang Fu Helmholtz Institute for Pharmaceutical Research Saarland (HIPS), Helmholtz Centre for Infection Research (HZI), Saarbrücken, Germany.
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Gene Synthesis The codon-optimized pepI gene was synthesized by GenScript and subsequently amplified using the primers pepI-f/pepI-r. The amplified pepI was cloned into the plasmid pCold I, resulting in the plasmid pCold-pepI. Additionally, the plasmids pET28b-sfpepI, pET28b-svpepI, and pET28b-kvpepI were ordered from GenScript. Get A Quote

摘要

Pepstatins are potent inhibitors of aspartic proteases, featuring two statine residues crucial for target binding. However, the biosynthesis of pepstatins, especially their statine substructure, remains elusive. Here, we discover and characterize an unconventional gene cluster responsible for pepstatin biosynthesis, comprising discrete nonribosomal peptide synthetase and polyketide synthase genes, highlighting its trans-acting and iterative nature. Central to this pathway is PepI, an F420H2-dependent oxidoreductase. The biochemical characterization of PepI reveals its role in the tandem reduction of β-keto pepstatin intermediates. PepI first catalyzes the formation of the central statine, then produces the C-t... More

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