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Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids

Protein glycosylation requires dolichyl phosphate as a carbohydrate carrier. Dolichols are α-saturated polyprenols, and their saturation in S. cerevisiae is catalyzed by polyprenyl reductase Dfg10 together with some other unknown enzymes. The aim of this study was to identify such enzymes in Candida...

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Autores principales: Janik, Anna, Perlińska-Lenart, Urszula, Gawarecka, Katarzyna, Augustyniak, Justyna, Bratek-Gerej, Ewelina, Bernat, Przemysław, Piłsyk, Sebastian, Skalmowska, Patrycja, Palamarczyk, Grażyna, Swiezewska, Ewa, Kruszewska, Joanna S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8745096/
https://www.ncbi.nlm.nih.gov/pubmed/35008833
http://dx.doi.org/10.3390/ijms23010409
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author Janik, Anna
Perlińska-Lenart, Urszula
Gawarecka, Katarzyna
Augustyniak, Justyna
Bratek-Gerej, Ewelina
Bernat, Przemysław
Piłsyk, Sebastian
Skalmowska, Patrycja
Palamarczyk, Grażyna
Swiezewska, Ewa
Kruszewska, Joanna S.
author_facet Janik, Anna
Perlińska-Lenart, Urszula
Gawarecka, Katarzyna
Augustyniak, Justyna
Bratek-Gerej, Ewelina
Bernat, Przemysław
Piłsyk, Sebastian
Skalmowska, Patrycja
Palamarczyk, Grażyna
Swiezewska, Ewa
Kruszewska, Joanna S.
author_sort Janik, Anna
collection PubMed
description Protein glycosylation requires dolichyl phosphate as a carbohydrate carrier. Dolichols are α-saturated polyprenols, and their saturation in S. cerevisiae is catalyzed by polyprenyl reductase Dfg10 together with some other unknown enzymes. The aim of this study was to identify such enzymes in Candida. The Dfg10 polyprenyl reductase from S. cerevisiae comprises a C-terminal 3-oxo-5-alpha-steroid 4-dehydrogenase domain. Alignment analysis revealed such a domain in two ORFs (orf19.209 and orf19.3293) from C. albicans, which were similar, respectively, to Dfg10 polyprenyl reductase and Tsc13 enoyl-transferase from S. cerevisiae. Deletion of orf19.209 in Candida impaired saturation of polyprenols. The Tsc13 homologue turned out not to be capable of saturating polyprenols, but limiting its expression reduce the cellular level of dolichols and polyprenols. This reduction was not due to a decreased expression of genes encoding cis-prenyltransferases from the dolichol branch but to a lower expression of genes encoding enzymes of the early stages of the mevalonate pathway. Despite the resulting lower consumption of acetyl-CoA, the sole precursor of the mevalonate pathway, it was not redirected towards fatty acid synthesis or elongation. Lowering the expression of TSC13 decreased the expression of the ACC1 gene encoding acetyl-CoA carboxylase, the key regulatory enzyme of fatty acid synthesis and elongation.
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spelling pubmed-87450962022-01-11 Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids Janik, Anna Perlińska-Lenart, Urszula Gawarecka, Katarzyna Augustyniak, Justyna Bratek-Gerej, Ewelina Bernat, Przemysław Piłsyk, Sebastian Skalmowska, Patrycja Palamarczyk, Grażyna Swiezewska, Ewa Kruszewska, Joanna S. Int J Mol Sci Article Protein glycosylation requires dolichyl phosphate as a carbohydrate carrier. Dolichols are α-saturated polyprenols, and their saturation in S. cerevisiae is catalyzed by polyprenyl reductase Dfg10 together with some other unknown enzymes. The aim of this study was to identify such enzymes in Candida. The Dfg10 polyprenyl reductase from S. cerevisiae comprises a C-terminal 3-oxo-5-alpha-steroid 4-dehydrogenase domain. Alignment analysis revealed such a domain in two ORFs (orf19.209 and orf19.3293) from C. albicans, which were similar, respectively, to Dfg10 polyprenyl reductase and Tsc13 enoyl-transferase from S. cerevisiae. Deletion of orf19.209 in Candida impaired saturation of polyprenols. The Tsc13 homologue turned out not to be capable of saturating polyprenols, but limiting its expression reduce the cellular level of dolichols and polyprenols. This reduction was not due to a decreased expression of genes encoding cis-prenyltransferases from the dolichol branch but to a lower expression of genes encoding enzymes of the early stages of the mevalonate pathway. Despite the resulting lower consumption of acetyl-CoA, the sole precursor of the mevalonate pathway, it was not redirected towards fatty acid synthesis or elongation. Lowering the expression of TSC13 decreased the expression of the ACC1 gene encoding acetyl-CoA carboxylase, the key regulatory enzyme of fatty acid synthesis and elongation. MDPI 2021-12-30 /pmc/articles/PMC8745096/ /pubmed/35008833 http://dx.doi.org/10.3390/ijms23010409 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Janik, Anna
Perlińska-Lenart, Urszula
Gawarecka, Katarzyna
Augustyniak, Justyna
Bratek-Gerej, Ewelina
Bernat, Przemysław
Piłsyk, Sebastian
Skalmowska, Patrycja
Palamarczyk, Grażyna
Swiezewska, Ewa
Kruszewska, Joanna S.
Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids
title Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids
title_full Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids
title_fullStr Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids
title_full_unstemmed Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids
title_short Synthesis of Dolichols in Candida albicans Is Co-Regulated with Elongation of Fatty Acids
title_sort synthesis of dolichols in candida albicans is co-regulated with elongation of fatty acids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8745096/
https://www.ncbi.nlm.nih.gov/pubmed/35008833
http://dx.doi.org/10.3390/ijms23010409
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