Research Articles
Diversification of substrate specificities in teleostei Fads2: characterization of Δ4 and Δ6Δ5 desaturases of Chirostoma estor[S]

https://doi.org/10.1194/jlr.M049791Get rights and content
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Currently existing data show that the capability for long-chain PUFA (LC-PUFA) biosynthesis in teleost fish is more diverse than in other vertebrates. Such diversity has been primarily linked to the subfunctionalization that teleostei fatty acyl desaturase (Fads)2 desaturases have undergone during evolution. We previously showed that Chirostoma estor, one of the few representatives of freshwater atherinopsids, had the ability for LC-PUFA biosynthesis from C18 PUFA precursors, in agreement with this species having unusually high contents of DHA. The particular ancestry and pattern of LC-PUFA biosynthesis activity of C. estor make this species an excellent model for study to gain further insight into LC-PUFA biosynthetic abilities among teleosts. The present study aimed to characterize cDNA sequences encoding fatty acyl elongases and desaturases, key genes involved in the LC-PUFA biosynthesis. Results show that C. estor expresses an elongase of very long-chain FA (Elovl)5 elongase and two Fads2 desaturases displaying Δ4 and Δ6/Δ5 specificities, thus allowing us to conclude that these three genes cover all the enzymatic abilities required for LC-PUFA biosynthesis from C18 PUFA. In addition, the specificities of the C. estor Fads2 enabled us to propose potential evolutionary patterns and mechanisms for subfunctionalization of Fads2 among fish lineages.

biosynthesis
elongase of very long-chain fatty acids
evolution
fatty acyl desaturase 2
long-chain polyunsaturated fatty acids
teleosts

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This study and O.M. were supported by a Marie Curie Reintegration Grant within the 7th European Community Framework Programme (PERG08-GA-2010-276916, LONGFA). Additional funding was obtained from CONACYT, Mexico (INSAM FOINS 102/2012) and from the Ministry of Science and Innovation (Spanish Government) through the OCTOPHYS Project (AGL-2010-22120-C03-02). The authors have no conflicts of interest related to this work.

    Abbreviations:

    aa

    amino acid

    ARA

    arachidonic acid (20:4n-6)

    Elovl

    elongase of very long-chain FA

    Fads

    fatty acyl desaturase

    FAME

    fatty acyl methyl ester

    FID

    flame ionization detector

    LC-PUFA

    long-chain PUFA

    LNA

    α-linolenic acid (18:3n-3)

    LOA

    linoleic acid (18:2n-6)

    OD

    optical density

    ORF

    open reading frame

    qPCR

    quantitative real-time PCR

    RACE

    rapid amplification of cDNA ends

    SCMM

    Saccharomyces cerevisiae minimal medium

[S]

The online version of this article (available at http://www.jlr.org) contains supplementary data in the form of one table.