Structurally Guided Reprogramming of Valerenadiene Synthase

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3 Citas (Scopus)

Resumen

Valerena-1,10-diene synthase (VDS) catalyzes the conversion of the universal precursor farnesyl diphosphate into the unusual sesquiterpene valerena-1,10-diene (VLD), which possesses a unique isobutenyl substituent group. In planta, one of VLD's isobutenyl terminal methyl groups becomes oxidized to a carboxylic acid forming valerenic acid (VA), an allosteric modulator of the GABAA receptor. Because a structure-activity relationship study of VA for its modulatory activity is desired, we sought to manipulate the VDS enzyme for the biosynthesis of structurally diverse scaffolds that could ultimately lead to the generation of VA analogues. Using three-dimensional structural homology models, phylogenetic sequence comparisons to well-characterized sesquiterpene synthases, and a substrate-active site contact mapping approach, the contributions of specific amino acid residues within or near the VDS active site to possible catalytic cascades for VLD and other sesquiterpene products were assessed. An essential role of Tyr535 in a germacrenyl route to VLD was demonstrated, while its contribution to a family of other sesquiterpenes derived from a humulyl route was not. No role for Cys415 or Cys452 serving as a proton donor to reaction intermediates in VLD biosynthesis was observed. However, a gatekeeper role for Asn455 in directing farnesyl carbocations down all-trans catalytic cascades (humulyl and germacrenyl routes) versus a cisoid cascade (nerolidyl route) was demonstrated. Altogether, these results have mapped residues that establish a context for the catalytic cascades operating in VDS and future manipulations for generating more structurally constrained scaffolds.

Idioma originalEnglish
Páginas (desde-hasta)3868-3878
Número de páginas11
PublicaciónBiochemistry
Volumen60
N.º51
DOI
EstadoPublished - dic 28 2021

Nota bibliográfica

Publisher Copyright:
© 2021 American Chemical Society.

Financiación

This work was supported by the Digenis Endowment (to J.C.) and the University of Kentucky College of Pharmacy (to G.E.Z.).

Financiadores
Digenis Endowment
University of Kentucky College of Pharmacy

    ASJC Scopus subject areas

    • Biochemistry

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