Cargando…

Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases

In the native pathway to therapeutic cannabinoid biosynthesis in Cannabis sativa, the three‐step production of a key intermediate, olivetolic acid, is catalysed by the enzymes tetraketide synthase (TKS; linear tetraketide intermediate production in two stages) and olivetolic acid cyclase (OAC; final...

Descripción completa

Detalles Bibliográficos
Autores principales: Kearsey, Lewis J., Prandi, Nicole, Karuppiah, Vijaykumar, Yan, Cunyu, Leys, David, Toogood, Helen, Takano, Eriko, Scrutton, Nigel S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7217186/
https://www.ncbi.nlm.nih.gov/pubmed/31605668
http://dx.doi.org/10.1111/febs.15089
_version_ 1783532565630550016
author Kearsey, Lewis J.
Prandi, Nicole
Karuppiah, Vijaykumar
Yan, Cunyu
Leys, David
Toogood, Helen
Takano, Eriko
Scrutton, Nigel S.
author_facet Kearsey, Lewis J.
Prandi, Nicole
Karuppiah, Vijaykumar
Yan, Cunyu
Leys, David
Toogood, Helen
Takano, Eriko
Scrutton, Nigel S.
author_sort Kearsey, Lewis J.
collection PubMed
description In the native pathway to therapeutic cannabinoid biosynthesis in Cannabis sativa, the three‐step production of a key intermediate, olivetolic acid, is catalysed by the enzymes tetraketide synthase (TKS; linear tetraketide intermediate production in two stages) and olivetolic acid cyclase (OAC; final C2 → C7 aldol condensation). In the absence of OAC, a nonenzymatic C2 → C7 decarboxylative aldol condensation of the tetraketide intermediate occurs forming olivetol. TKS is a type III polyketide synthase, and the question arises why it is unable to form olivetolic acid directly, but instead forms this unwanted side product. We determined the TKS, CoA complex structure, and performed structurally guided mutagenesis studies to identify potential residues responsible for cyclization pathway discrimination in type III polyketide synthases. Prior studies suggested an ‘aldol switch’ is necessary to allow linear tetraketide intermediate release prior to cyclization, thereby enabling subsequent olivetolic acid production by OAC. However, our studies do not support the presence of a universal or predictable ‘aldol switch’ consensus sequence. Instead, we propose the mode of ordered active site water activation between type III polyketide synthases catalysing different cyclization mechanisms is subtle and homologue‐specific. Our work indicates that subtle structural variations between homologous enzymes can have a major mechanistic impact on the catalytic outcome. This highlights the importance of embedding high‐resolution structural analysis of multiple enzyme homologues with classical site‐directed mutagenesis studies when investigating highly similar enzymes with different mechanistic pathway outcomes. ENZYMES: TKS, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/206.html; OAC, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC4/4/1/26.html; chalcone synthase, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/74.html; stilbene synthase, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/95.html; 2‐PS, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/-.html. ACCESSION NUMBERS: The atomic coordinates and structure factors for the crystal structure of TKS have been deposited in the Protein Data Bank with accession number http://www.rcsb.org/pdb/search/structidSearch.do?structureId=6GW3.
format Online
Article
Text
id pubmed-7217186
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-72171862020-05-13 Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases Kearsey, Lewis J. Prandi, Nicole Karuppiah, Vijaykumar Yan, Cunyu Leys, David Toogood, Helen Takano, Eriko Scrutton, Nigel S. FEBS J Editor's Choice In the native pathway to therapeutic cannabinoid biosynthesis in Cannabis sativa, the three‐step production of a key intermediate, olivetolic acid, is catalysed by the enzymes tetraketide synthase (TKS; linear tetraketide intermediate production in two stages) and olivetolic acid cyclase (OAC; final C2 → C7 aldol condensation). In the absence of OAC, a nonenzymatic C2 → C7 decarboxylative aldol condensation of the tetraketide intermediate occurs forming olivetol. TKS is a type III polyketide synthase, and the question arises why it is unable to form olivetolic acid directly, but instead forms this unwanted side product. We determined the TKS, CoA complex structure, and performed structurally guided mutagenesis studies to identify potential residues responsible for cyclization pathway discrimination in type III polyketide synthases. Prior studies suggested an ‘aldol switch’ is necessary to allow linear tetraketide intermediate release prior to cyclization, thereby enabling subsequent olivetolic acid production by OAC. However, our studies do not support the presence of a universal or predictable ‘aldol switch’ consensus sequence. Instead, we propose the mode of ordered active site water activation between type III polyketide synthases catalysing different cyclization mechanisms is subtle and homologue‐specific. Our work indicates that subtle structural variations between homologous enzymes can have a major mechanistic impact on the catalytic outcome. This highlights the importance of embedding high‐resolution structural analysis of multiple enzyme homologues with classical site‐directed mutagenesis studies when investigating highly similar enzymes with different mechanistic pathway outcomes. ENZYMES: TKS, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/206.html; OAC, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC4/4/1/26.html; chalcone synthase, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/74.html; stilbene synthase, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/95.html; 2‐PS, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC2/3/1/-.html. ACCESSION NUMBERS: The atomic coordinates and structure factors for the crystal structure of TKS have been deposited in the Protein Data Bank with accession number http://www.rcsb.org/pdb/search/structidSearch.do?structureId=6GW3. John Wiley and Sons Inc. 2019-10-28 2020-04 /pmc/articles/PMC7217186/ /pubmed/31605668 http://dx.doi.org/10.1111/febs.15089 Text en © 2019 The Authors. The FEBS Journal published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Editor's Choice
Kearsey, Lewis J.
Prandi, Nicole
Karuppiah, Vijaykumar
Yan, Cunyu
Leys, David
Toogood, Helen
Takano, Eriko
Scrutton, Nigel S.
Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases
title Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases
title_full Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases
title_fullStr Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases
title_full_unstemmed Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases
title_short Structure of the Cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type III polyketide synthases
title_sort structure of the cannabis sativa olivetol‐producing enzyme reveals cyclization plasticity in type iii polyketide synthases
topic Editor's Choice
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7217186/
https://www.ncbi.nlm.nih.gov/pubmed/31605668
http://dx.doi.org/10.1111/febs.15089
work_keys_str_mv AT kearseylewisj structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases
AT prandinicole structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases
AT karuppiahvijaykumar structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases
AT yancunyu structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases
AT leysdavid structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases
AT toogoodhelen structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases
AT takanoeriko structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases
AT scruttonnigels structureofthecannabissativaolivetolproducingenzymerevealscyclizationplasticityintypeiiipolyketidesynthases