Article
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Citation
Li Y, Yin Z, Dong Y, Wang S, Monroig ?, Tocher DR & You C (2019) Ppar¦Ã Is Involved in the Transcriptional Regulation of Liver LC-PUFA Biosynthesis by Targeting the ¦¤6¦¤5 Fatty Acyl Desaturase Gene in the Marine Teleost Siganus canaliculatus. Marine Biotechnology, 21 (1), pp. 19-29. https://doi.org/10.1007/s10126-018-9854-0
Abstract
As the first marine teleost demonstrated to have the ability of long-chain polyunsaturated fatty acids (LC-PUFA) biosynthesis from C18 PUFA precursors, the rabbitfish Siganus canaliculatus provides us a unique model for clarifying the regulatory mechanisms of LC-PUFA biosynthesis in teleosts aiming at the replacement of dietary fish oil (rich in LC-PUFA) with vegetable oils (rich in C18 PUFA precursors but devoid of LC-PUFA). In the study of transcription regulation of gene encoding the ¦¤6¦¤5 fatty acyl desaturase (¦¤6¦¤5 Fads), a rate-limiting enzyme catalyzing the first step of LC-PUFA biosynthesis in rabbitfish, a binding site for the transcription factor (TF), peroxisome proliferator-activated receptor ¦Ã (Ppar¦Ã), was predicted in ¦¤6¦¤5 fads2 promoter by bioinformatics analysis, and thus the present study focused on the regulatory roles of Ppar¦Ã on ¦¤6¦¤5 fads2. First, the activity of the ¦¤6¦¤5 fads2 promoter was proved to be downregulated by ppar¦Ã overexpression and upregulated by treatment of Ppar¦Ã antagonist (GW9662), respectively, in HEK 293T cells with the dual luciferase reporter assay. Ppar¦Ã was further confirmed to interact with the promoter by electrophoretic mobility shift assay. Moreover, in S. canaliculatus hepatocyte line (SCHL) cells, GW9662 decreased the expression of ppar¦Ã together with increase of ¦¤6¦¤5 fads2 mRNA. Besides, ¦¤6¦¤5 fads2 expression was increased by ppar¦Ã RNAi knockdown and reduced by its mRNA overexpression. Furthermore, knockdown of ppar¦Ã induced a high conversion of 18:3n?3 to 18:4n?3 and 18:2n?6 to 18:3n?6, while ppar¦Ã mRNA overexpression led to a lower conversion of that, and finally a significant decrease of 20:4n-6(ARA), 20:5n-3(EPA), and 22:6n-3(DHA) production. The results indicate that Ppar¦Ã is involved in the transcriptional regulation of liver LC-PUFA biosynthesis by targeting ¦¤6¦¤5 fads2 in rabbitfish, which is the first report of Ppar¦Ã involvement in the regulation of LC-PUFA biosynthesis in teleosts.
Keywords
LC-PUFA; Fatty acyl desaturase; Transcriptional regulation; Siganus canaliculatus
Journal
Marine Biotechnology: Volume 21, Issue 1
Status | Published |
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Publication date | 28/02/2019 |
Publication date online | 11/09/2018 |
Date accepted by journal | 28/08/2018 |
URL | |
ISSN | 1436-2228 |
eISSN | 1436-2236 |