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Publication Details
AFRICAN RESEARCH NEXUS
SHINING A SPOTLIGHT ON AFRICAN RESEARCH
biochemistry, genetics and molecular biology
Highly unsaturated fatty acid synthesis in marine fish: Cloning, functional characterization, and nutritional regulation of fatty acyl Δ6 desaturase of atlantic cod (Gadus morhua L.)
Lipids, Volume 41, No. 11, Year 2006
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Description
This study reports the cloning, functional characterization, tissue expression, and nutritional regulation of a Δ6 fatty acyl desaturase of Atlantic cod (Gadus morhua). PCR primers were designed based on the sequences of conserved motifs in available fish desaturases and used to isolate a cDNA fragment from cod liver, with full-length cDNA obtained by rapid amplification of cDNA ends. The cDNA for the putative desaturase was shown to comprise 1900 bp, including a 261-bp 5′-UTK, a 375-bp 3′-UTR, and an ORF of 1344 bp that specified a protein of 447 amino acids. The protein sequence included three histidine boxes, two transmembrane regions, and an N-terminal cytochrome by domain containing the heme-binding motif HPCG, all characteristic of microsomal fatty acyl desaturases. The cDNA displayed Δ6 desaturase activity in a yeast expression system. Quantitative real-time PCR assay of gene expression in cod showed that the Δ6 desaturase gene was expressed highly in brain, to a slightly lesser extent in liver, kidney, intestine, red muscle, and gill, and at much lower levels in white muscle, spleen, and heart. The expression of the Δ6 desaturase gene did not appear to be under significant nutritional regulation, with levels in liver and intestine being barely altered in fish led a vegetable oil blend, in comparison with levels in fish led fish oil. This was reflected in enzyme activity, as hepatocytes or enterocytes showed very little highly unsaturated FA biosynthesis activity irrespective of diet. Further studies are required to determine why the Δ6 desaturase appears to be barely functional in cod under the conditions tested. Copyright © 2006 by AOCS Press.
Authors & Co-Authors
Tocher, Douglas R.
United Kingdom, Stirling
University of Stirling
Zheng, Xiaozhong
United Kingdom, Stirling
University of Stirling
Dick, James R.
United Kingdom, Stirling
University of Stirling
Teale, Alan J.
United Kingdom, Stirling
University of Stirling
Statistics
Citations: 217
Authors: 4
Affiliations: 2
Identifiers
Doi:
10.1007/s11745-006-5051-4
ISSN:
00244201
Research Areas
Genetics And Genomics
Study Approach
Quantitative