首页> 美国卫生研究院文献>Journal of Lipid Research >Diversification of substrate specificities in teleostei Fads2: characterization of Δ4 and Δ6Δ5 desaturases of Chirostoma estor
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Diversification of substrate specificities in teleostei Fads2: characterization of Δ4 and Δ6Δ5 desaturases of Chirostoma estor

机译:硬骨鱼Fads2中底物特异性的多样化:手性鸡血藤的Δ4和Δ6Δ5去饱和酶的表征

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摘要

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.
机译:当前现有的数据表明,硬骨鱼中长链PUFA(LC-PUFA)生物合成的能力比其他脊椎动物中的多样化。这种多样性主要与硬骨鱼脂肪酰基脱氢酶(Fads)2脱氢酶在进化过程中发生的亚功能相关。我们以前表明,淡水动脉粥样硬化的少数代表之一,鸡血藤(Crosostoma estor)具有从C18 PUFA前体中进行LC-PUFA生物合成的能力,这与DHA含量异常高的物种一致。 C. estor的LC-PUFA生物合成活性的特殊血统和模式使该物种成为研究硬骨鱼类中LC-PUFA生物合成能力的绝佳模型。本研究旨在表征编码脂肪酰基延伸酶和去饱和酶的cDNA序列,所述脂肪酰基延长酶和去饱和酶是参与LC-PUFA生物合成的关键基因。结果显示C. estor表达超长链FA(Elovl)5延伸酶的延伸酶和两个显示Δ4和Δ6/Δ5特异性的Fads2去饱和酶,因此,我们可以得出结论,这三个基因涵盖了LC-所需的所有酶促能力。 C18 PUFA的PUFA生物合成。此外,C。estor Fads2的特异性使我们能够提出鱼类谱系中Fads2亚功能化的潜在进化模式和机制。

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