Functional characterization and structural modelling of Helianthus annuus (sunflower) ketoacyl-CoA synthases and their role in seed oil composition.
Acetyltransferases
/ chemistry
Acyl Coenzyme A
/ metabolism
Aldehydes
/ metabolism
Amino Acid Sequence
Arabidopsis Proteins
/ genetics
DNA, Complementary
/ genetics
Fatty Acid Synthases
/ chemistry
Fatty Acids
/ metabolism
Helianthus
/ enzymology
Models, Structural
Phylogeny
Plant Proteins
/ chemistry
Saccharomyces cerevisiae
/ genetics
Seeds
/ enzymology
Sequence Alignment
Sunflower Oil
/ metabolism
Fatty acid elongase
Helianthus annuus
Ketoacyl-CoA synthase
Sunflower seeds
Very long chain fatty acids
Journal
Planta
ISSN: 1432-2048
Titre abrégé: Planta
Pays: Germany
ID NLM: 1250576
Informations de publication
Date de publication:
Jun 2019
Jun 2019
Historique:
received:
22
01
2019
accepted:
04
03
2019
pubmed:
9
3
2019
medline:
21
5
2019
entrez:
9
3
2019
Statut:
ppublish
Résumé
The enzymes HaKCS1 and HaKCS2 are expressed in sunflower seeds and contribute to elongation of C18 fatty acids, resulting in the C20-C24 fatty acids in sunflower oil. Most plant fatty acids are produced by plastidial soluble fatty acid synthases that produce fatty acids of up to 18 carbon atoms. However, further acyl chain elongations can take place in the endoplasmic reticulum, catalysed by membrane-bound synthases that act on acyl-CoAs. The condensing enzymes of these complexes are the ketoacyl-CoA synthase (KCSs), responsible for the synthesis of very long chain fatty acids (VLCFAs) and their derivatives in plants, these including waxes and cuticle hydrocarbons, as well as fatty aldehydes. Sunflower seeds accumulate oil that contains around 2-3% of VLCFAs and studies of the fatty acid elongase activity in developing sunflower embryos indicate that two different KCS isoforms drive the synthesis of these fatty acids. Here, two cDNAs encoding distinct KCSs were amplified from RNAs extracted from developing sunflower embryos and named HaKCS1 and HaKCS2. These genes are expressed in developing seeds during the period of oil accumulation and they are clear candidates to condition sunflower oil synthesis. These two KCS cDNAs complement a yeast elongase null mutant and when expressed in yeast, they alter the host's fatty acid profile, proving the encoded KCSs are functional. The structure of these enzymes was modelled and their contribution to the presence of VLCFAs in sunflower oil is discussed based on the results obtained.
Identifiants
pubmed: 30847571
doi: 10.1007/s00425-019-03126-1
pii: 10.1007/s00425-019-03126-1
doi:
Substances chimiques
Acyl Coenzyme A
0
Aldehydes
0
Arabidopsis Proteins
0
DNA, Complementary
0
Fatty Acids
0
Plant Proteins
0
Sunflower Oil
0
fatty aldehyde
0
Acetyltransferases
EC 2.3.1.-
KCS2 protein, Arabidopsis
EC 2.3.1.-
KCS20 protein, Arabidopsis
EC 2.3.1.-
Fatty Acid Synthases
EC 2.3.1.85
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
1823-1836Subventions
Organisme : Ministerio de Economía y Competitividad
ID : AGL2014-53537-R
Organisme : Ministerio de Economía y Competitividad
ID : AGL2017-83449-R