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A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome

[Image: see text] The labdane-related diterpenoids (LRDs) are an important superfamily of natural products whose structural diversity critically depends on the hydrocarbon skeletal structures generated, in large part, by class I diterpene synthases. In the plant kingdom, where the LRDs are predomina...

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Autores principales: Jia, Meirong, Zhou, Ke, Tufts, Samuel, Schulte, Samuel, Peters, Reuben J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5360158/
https://www.ncbi.nlm.nih.gov/pubmed/28170228
http://dx.doi.org/10.1021/acschembio.6b01075
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author Jia, Meirong
Zhou, Ke
Tufts, Samuel
Schulte, Samuel
Peters, Reuben J.
author_facet Jia, Meirong
Zhou, Ke
Tufts, Samuel
Schulte, Samuel
Peters, Reuben J.
author_sort Jia, Meirong
collection PubMed
description [Image: see text] The labdane-related diterpenoids (LRDs) are an important superfamily of natural products whose structural diversity critically depends on the hydrocarbon skeletal structures generated, in large part, by class I diterpene synthases. In the plant kingdom, where the LRDs are predominantly found, the relevant class I diterpene synthases are clearly derived from the ent-kaurene synthase (KS) required in all land plants for phytohormone biosynthesis and, hence, are often termed KS-like (KSL). Previous work, initiated by the distinct function of two alleles of a KSL from rice, OsKSL5, identified a single residue switch with a profound effect on not only OsKSL5 product outcome but also that of land plant KSs more broadly, specifically, replacement of a key isoleucine with threonine, which interrupts formation of the tetracyclic ent-isokaurene at the tricyclic stage, leading to production of ent-pimaradiene instead. Here, further studies of these alleles led to discovery of another, nearby residue that tunes product outcome. Substitution for this newly identified residue is additionally shown to exert an epistatic effect in KSs, altering product distribution only if combined with replacement of the key isoleucine. On the other hand, this pair of residues was found to exert additive effects on the product outcome mediated by distantly related KSLs from the eudicot castor bean. Accordingly, it was possible to use a rational combination of substitutions for this pair of residues to engineer significantly increased (dominant) selectivity for novel 8α-hydroxy-ent-pimar-15-ene product outcome in the KS from the dicot Arabidopsis thaliana, demonstrating the utility of these results.
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spelling pubmed-53601582018-02-07 A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome Jia, Meirong Zhou, Ke Tufts, Samuel Schulte, Samuel Peters, Reuben J. ACS Chem Biol [Image: see text] The labdane-related diterpenoids (LRDs) are an important superfamily of natural products whose structural diversity critically depends on the hydrocarbon skeletal structures generated, in large part, by class I diterpene synthases. In the plant kingdom, where the LRDs are predominantly found, the relevant class I diterpene synthases are clearly derived from the ent-kaurene synthase (KS) required in all land plants for phytohormone biosynthesis and, hence, are often termed KS-like (KSL). Previous work, initiated by the distinct function of two alleles of a KSL from rice, OsKSL5, identified a single residue switch with a profound effect on not only OsKSL5 product outcome but also that of land plant KSs more broadly, specifically, replacement of a key isoleucine with threonine, which interrupts formation of the tetracyclic ent-isokaurene at the tricyclic stage, leading to production of ent-pimaradiene instead. Here, further studies of these alleles led to discovery of another, nearby residue that tunes product outcome. Substitution for this newly identified residue is additionally shown to exert an epistatic effect in KSs, altering product distribution only if combined with replacement of the key isoleucine. On the other hand, this pair of residues was found to exert additive effects on the product outcome mediated by distantly related KSLs from the eudicot castor bean. Accordingly, it was possible to use a rational combination of substitutions for this pair of residues to engineer significantly increased (dominant) selectivity for novel 8α-hydroxy-ent-pimar-15-ene product outcome in the KS from the dicot Arabidopsis thaliana, demonstrating the utility of these results. American Chemical Society 2017-02-07 2017-03-17 /pmc/articles/PMC5360158/ /pubmed/28170228 http://dx.doi.org/10.1021/acschembio.6b01075 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Jia, Meirong
Zhou, Ke
Tufts, Samuel
Schulte, Samuel
Peters, Reuben J.
A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome
title A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome
title_full A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome
title_fullStr A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome
title_full_unstemmed A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome
title_short A Pair of Residues That Interactively Affect Diterpene Synthase Product Outcome
title_sort pair of residues that interactively affect diterpene synthase product outcome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5360158/
https://www.ncbi.nlm.nih.gov/pubmed/28170228
http://dx.doi.org/10.1021/acschembio.6b01075
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