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Structural insights into MBOAT2 catalysis, product retention, and ligand exchange

Preprint Created on 09 Sep 2026 bioRxiv

MBOAT2 suppresses ferroptosis independently of GPX4 and FSP1 by transferring monounsaturated acyl chains from acyl-CoA donors to lysophospholipid acceptors, but the structural basis of its catalytic cycle remains unclear. Here, we report the first cryo-EM structures of human MBOAT2, capturing endogenous and substrate-induced ligand-bound states. Unexpectedly, as-purified MBOAT2 contains a co-purified phospholipid-like density consistent with a retained product, together with a second density at a putative acyl-donor entry site. Oleoyl-CoA addition reduces the ordered product-like density and reveals donor density, whereas LPE addition increases local heterogeneity near the archway. The inactive H373A mutant contains endogenous donor- and acceptor-like densities along the two access pathways, consistent with substrate preloading. Together, these structures define the catalytic architecture of MBOAT2, support a product-retained, donor-primed working model, and provide templates for structure-guided ligand discovery.

Liu, F., Li, J., Shin, W., Coria, J., Chen, L.

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