A conserved amino acid residue critical for product and substrate specificity in plant triterpene synthases

Author:

Salmon Melissa,Thimmappa Ramesha B.,Minto Robert E.,Melton Rachel E.,Hughes Richard K.ORCID,O’Maille Paul E.,Hemmings Andrew M.,Osbourn Anne

Abstract

Triterpenes are structurally complex plant natural products with numerous medicinal applications. They are synthesized through an origami-like process that involves cyclization of the linear 30 carbon precursor 2,3-oxidosqualene into different triterpene scaffolds. Here, through a forward genetic screen in planta, we identify a conserved amino acid residue that determines product specificity in triterpene synthases from diverse plant species. Mutation of this residue results in a major change in triterpene cyclization, with production of tetracyclic rather than pentacyclic products. The mutated enzymes also use the more highly oxygenated substrate dioxidosqualene in preference to 2,3-oxidosqualene when expressed in yeast. Our discoveries provide new insights into triterpene cyclization, revealing hidden functional diversity within triterpene synthases. They further open up opportunities to engineer novel oxygenated triterpene scaffolds by manipulating the precursor supply.

Funder

Norwich Research Park

European Union

Biotechnology and Biological Sciences Research Council

The John Innes Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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