Cargando…

Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids

Numerous Δ12-, Δ15- and multifunctional membrane fatty acid desaturases (FADs) have been identified in fungi, revealing great variability in the enzymatic specificities of FADs involved in biosynthesis of polyunsaturated fatty acids (PUFAs). Here, we report gene isolation and characterization of nov...

Descripción completa

Detalles Bibliográficos
Autores principales: Buček, Aleš, Matoušková, Petra, Sychrová, Hana, Pichová, Iva, Hrušková-Heidingsfeldová, Olga
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3969366/
https://www.ncbi.nlm.nih.gov/pubmed/24681902
http://dx.doi.org/10.1371/journal.pone.0093322
_version_ 1782309264476340224
author Buček, Aleš
Matoušková, Petra
Sychrová, Hana
Pichová, Iva
Hrušková-Heidingsfeldová, Olga
author_facet Buček, Aleš
Matoušková, Petra
Sychrová, Hana
Pichová, Iva
Hrušková-Heidingsfeldová, Olga
author_sort Buček, Aleš
collection PubMed
description Numerous Δ12-, Δ15- and multifunctional membrane fatty acid desaturases (FADs) have been identified in fungi, revealing great variability in the enzymatic specificities of FADs involved in biosynthesis of polyunsaturated fatty acids (PUFAs). Here, we report gene isolation and characterization of novel Δ12/Δ15- and Δ15-FADs named CpFad2 and CpFad3, respectively, from the opportunistic pathogenic yeast Candida parapsilosis. Overexpression of CpFad3 in Saccharomyces cerevisiae strains supplemented with linoleic acid (Δ9,Δ12-18:2) and hexadecadienoic acid (Δ9,Δ12-16:2) leads to accumulation of Δ15-PUFAs, i.e., α-linolenic acid (Δ9,Δ12,Δ15-18:3) and hexadecatrienoic acid with an unusual terminal double bond (Δ9,Δ12,Δ15-16:3). CpFad2 produces a range of Δ12- and Δ15-PUFAs. The major products of CpFad2 are linoleic and hexadecadienoic acid (Δ9,Δ12-16:2), accompanied by α-linolenic acid and hexadecatrienoic acid (Δ9,Δ12,Δ15-16:3). Using GC/MS analysis of trimethylsilyl derivatives, we identified ricinoleic acid (12-hydroxy-9-octadecenoic acid) as an additional product of CpFad2. These results demonstrate that CpFAD2 is a multifunctional FAD and indicate that detailed analysis of fatty acid derivatives might uncover a range of enzymatic selectivities in other Δ12-FADs from budding yeasts (Ascomycota: Saccharomycotina).
format Online
Article
Text
id pubmed-3969366
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39693662014-04-01 Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids Buček, Aleš Matoušková, Petra Sychrová, Hana Pichová, Iva Hrušková-Heidingsfeldová, Olga PLoS One Research Article Numerous Δ12-, Δ15- and multifunctional membrane fatty acid desaturases (FADs) have been identified in fungi, revealing great variability in the enzymatic specificities of FADs involved in biosynthesis of polyunsaturated fatty acids (PUFAs). Here, we report gene isolation and characterization of novel Δ12/Δ15- and Δ15-FADs named CpFad2 and CpFad3, respectively, from the opportunistic pathogenic yeast Candida parapsilosis. Overexpression of CpFad3 in Saccharomyces cerevisiae strains supplemented with linoleic acid (Δ9,Δ12-18:2) and hexadecadienoic acid (Δ9,Δ12-16:2) leads to accumulation of Δ15-PUFAs, i.e., α-linolenic acid (Δ9,Δ12,Δ15-18:3) and hexadecatrienoic acid with an unusual terminal double bond (Δ9,Δ12,Δ15-16:3). CpFad2 produces a range of Δ12- and Δ15-PUFAs. The major products of CpFad2 are linoleic and hexadecadienoic acid (Δ9,Δ12-16:2), accompanied by α-linolenic acid and hexadecatrienoic acid (Δ9,Δ12,Δ15-16:3). Using GC/MS analysis of trimethylsilyl derivatives, we identified ricinoleic acid (12-hydroxy-9-octadecenoic acid) as an additional product of CpFad2. These results demonstrate that CpFAD2 is a multifunctional FAD and indicate that detailed analysis of fatty acid derivatives might uncover a range of enzymatic selectivities in other Δ12-FADs from budding yeasts (Ascomycota: Saccharomycotina). Public Library of Science 2014-03-28 /pmc/articles/PMC3969366/ /pubmed/24681902 http://dx.doi.org/10.1371/journal.pone.0093322 Text en © 2014 Buček et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Buček, Aleš
Matoušková, Petra
Sychrová, Hana
Pichová, Iva
Hrušková-Heidingsfeldová, Olga
Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids
title Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids
title_full Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids
title_fullStr Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids
title_full_unstemmed Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids
title_short Δ12-Fatty Acid Desaturase from Candida parapsilosis Is a Multifunctional Desaturase Producing a Range of Polyunsaturated and Hydroxylated Fatty Acids
title_sort δ12-fatty acid desaturase from candida parapsilosis is a multifunctional desaturase producing a range of polyunsaturated and hydroxylated fatty acids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3969366/
https://www.ncbi.nlm.nih.gov/pubmed/24681902
http://dx.doi.org/10.1371/journal.pone.0093322
work_keys_str_mv AT bucekales d12fattyaciddesaturasefromcandidaparapsilosisisamultifunctionaldesaturaseproducingarangeofpolyunsaturatedandhydroxylatedfattyacids
AT matouskovapetra d12fattyaciddesaturasefromcandidaparapsilosisisamultifunctionaldesaturaseproducingarangeofpolyunsaturatedandhydroxylatedfattyacids
AT sychrovahana d12fattyaciddesaturasefromcandidaparapsilosisisamultifunctionaldesaturaseproducingarangeofpolyunsaturatedandhydroxylatedfattyacids
AT pichovaiva d12fattyaciddesaturasefromcandidaparapsilosisisamultifunctionaldesaturaseproducingarangeofpolyunsaturatedandhydroxylatedfattyacids
AT hruskovaheidingsfeldovaolga d12fattyaciddesaturasefromcandidaparapsilosisisamultifunctionaldesaturaseproducingarangeofpolyunsaturatedandhydroxylatedfattyacids