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James S. Fraser

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#protein folding Open access Sep 2026

Structural Plasticity and Ligand Promiscuity of CYP3A4 Revealed by Cryo-EM

Cytochrome P450 3A4 (CYP3A4) metabolizes roughly half of all marketed drugs, and its inhibition can cause clinically significant drug-drug interactions. The enzyme accommodates chemically diverse ligands, making binding modes and metabolic outcomes difficult to predict. Previous X-ray crystallography efforts have leveraged a truncated construct without the N-terminal segment that tethers CYP3A4 to the membrane. Here we show that the same construct assembles into a symmetric trimer that can be resolved by cryo-EM and determine structures of both unliganded and ligand-bound CYP3A4. Multiple ligands are resolved with density consistent with several mutually exclusive conformations. Protein remodeling to reshape the binding pocket is concentrated in the F/G loop, which is poorly resolved and unmodeled in many X-ray structures. These features likely underlie the poor predictive performance of co-folding methods on this target. The routine use of cryo-EM to resolve CYP3A4 ligand-bound complexes will provide the ground truth data needed to make predictive models of drug metabolism useful in practice.

Anna K. Orta, Jan-Hannes Schäfer, G. Correy et al. · 0 citations
Open access Jul 2026

Structural adaptations for enhanced translation kinetics in evolved ribosomes

This work structurally characterize chimeric ribosomes derived from Escherichia coli, Pseudomonas aeruginosa, and Vibrio cholerae using cryo-electron microscopy and uncover a potential relationship between 16S ribosomal RNA (rRNA) stability and translation efficiency, providing new insights into rRNA structural malleability.

Tushar Raskar, Alan Costello, A. Badran et al. · 0 citations

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