DOI: 10.1073/pnas.2617449123 ISSN: 0027-8424
An N-acetylated daropeptide modulates nematode development
Suze Ma, Ru Li, Xiangyang Gao, Eric Gemmell, Sijia Guo, Heng Chen, Xuedong Huang, Michael Capper, Zhijun Liu, Zixin Deng, Wei Ding, Jesko Köhnke, Xiaohui Wang, Qi Zhang
The symbiotic bacterium
Photorhabdus
is a rich source of bioactive secondary metabolites that mediate tripartite interactions with nematodes and insect hosts. However, natural products of ribosomal origin remain largely underexplored within this ecological niche. Here, we report the identification of aphotorhaptin A, a darobactin-like peptide (daropeptide) natural product from
Photorhabdus asymbiotica
, which structurally features an ether crosslink and an N-terminal acetyl unit. Biosynthetic investigation uncovers aphotorhaptin A is matured via an unexpected leader cleavage step, and the subsequent N-terminal acetylation confers metabolic stability that maintains the hexapeptide scaffold integrity. Biochemical and structural studies demonstrate the acetyltransferase PasC exhibits remarkable substrate promiscuity, facilitated by an expansive active-site cavity that accommodates diverse acyl-CoA donors and peptide substrates. Unlike the antimicrobial darobactin, aphotorhaptin A appears to lack antibacterial activity but modulates nematode development, and this activity requires the ether crosslink and the N-terminal acetyl group in the hexapeptide scaffold. These findings expand the chemical and biosynthetic space of ribosomal peptide family and establish its link with nematode development and reproduction.