INVESTIGADORES
MASCOTTI Maria laura
artículos
Título:
Ancestral-sequence reconstruction unveils the structural basis of function in mammalian FMOs
Autor/es:
NICOLL, CALLUM R.; BAILLEUL, GAUTIER; FIORENTINI, FILIPPO; MASCOTTI, MARÍA LAURA; FRAAIJE, MARCO W.; MATTEVI, ANDREA
Revista:
Nature Structural and Molecular Biology
Editorial:
Nature Research
Referencias:
Año: 2020 vol. 27 p. 14 - 24
ISSN:
1545-9993
Resumen:
Flavin-containing monooxygenases (FMOs) are ubiquitous in all domains of life and metabolize a myriad of xenobiotics, including toxins, pesticides and drugs. However, despite their pharmacological importance, structural information remains bereft. To further our understanding behind their biochemistry and diversity, we used ancestral-sequence reconstruction, kinetic and crystallographic techniques to scrutinize three ancient mammalian FMOs: AncFMO2, AncFMO3-6 and AncFMO5. Remarkably, all AncFMOs could be crystallized and were structurally resolved between 2.7- and 3.2-Å resolution. These crystal structures depict the unprecedented topology of mammalian FMOs. Each employs extensive membrane-binding features and intricate substrate-profiling tunnel networks through a conspicuous membrane-adhering insertion. Furthermore, a glutamate–histidine switch is speculated to induce the distinctive Baeyer–Villiger oxidation activity of FMO5. The AncFMOs exhibited catalysis akin to human FMOs and, with sequence identities between 82% and 92%, represent excellent models. Our study demonstrates the power of ancestral-sequence reconstruction as a strategy for the crystallization of proteins.