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Paula Berman

2 papers in the library · 16 citations · publishing 2024-2026

Papers

The biosynthetic pathway of the hallucinogen mescaline and its heterologous reconstruction

Molecular Plant June 3, 2024 Paula Berman, Luis Alejandro de Haro, Ana-Rita Cavaco et al. 15 citations

Mescaline, one of the earliest identified natural hallucinogens, has potential for psychotherapy, but its biosynthesis in the peyote cactus (Lophophora williamsii) was not fully understood. By combining genome and transcriptome sequencing with chemical profiling, enzymatic assays, and modeling, researchers identified four groups of enzymes responsible for the six catalytic steps in mescaline production, plus an N-methyltransferase that modifies all phenethylamine intermediates and likely modulates mescaline levels. The pathway was successfully reconstructed in tobacco plants and yeast cells, revealing challenges for complete heterologous production. This work enables sustainable production approaches and responsible use of mescaline.

Complete biosynthesis of psychedelic tryptamines from three kingdoms in plants

Science Advances April 1, 2026 Paula Berman, Janka Höfer, Herschel Mehlman et al. 1 citation

A biosynthetic pathway for dimethyltryptamine (DMT) was reconstructed in a plant assay, along with the full pathways of five natural psychedelics: psilocin, psilocybin, DMT, bufotenin, and 5-methoxy-DMT. Halogenated analogs of these molecules, which do not occur naturally and may have therapeutic potential for psychiatric conditions, were also engineered. By blending catalytic functions from different organisms and using rational protein design to create mutant enzymes, the production of indolethylamine components in plants became substantially more efficient. This platform enables concurrent biosynthesis and diversification of psychoactive indolethylamines.