首页> 外文OA文献 >Hnf4α is involved in the regulation of vertebrate LC-PUFA biosynthesis: insights into the regulatory role of Hnf4α on expression of liver fatty acyl desaturases in the marine teleost Siganus canaliculatus
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Hnf4α is involved in the regulation of vertebrate LC-PUFA biosynthesis: insights into the regulatory role of Hnf4α on expression of liver fatty acyl desaturases in the marine teleost Siganus canaliculatus

机译:HNF4α参与脊椎动物LC-PUFA生物合成的调节:洞察HNF4α对肝脏脂肪酰亚氨基植物的表达对肝脏脂肪酰库酶的调节作用

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摘要

Long chain polyunsaturated fatty acid (LC-PUFA) biosynthesis is an important metabolic pathway in vertebrates, especially fish, considering they are the major source of n-3 LC-PUFA in the human diet. However, most fish have only limited capability for biosynthesis of LC-PUFA. The rabbitfish (Siganus canaliculatus) is able to synthesize LC-PUFA as it has all the key enzyme activities required including Δ6Δ5 Fads2, Δ4 Fads2, Elovl5 and Elovl4. We previously reported a direct interaction between the transcription factor Hnf4α and the promoter regions of Δ4 and Δ6Δ5 Fads2, which suggested that Hnf4α was involved in the transcriptional regulation of fads2 in rabbitfish. For further functionally investigating it, a full-length cDNA of 1736 bp encoding rabbitfish Hnf4α with 454 amino acids was cloned, which was highly expressed in intestine, followed by liver and eyes. Similar to the expression characteristics of its target genes Δ4 and Δ6Δ5 fads2, levels of hnf4α mRNA in liver and eyes were higher in fish reared at low salinity than those reared in high salinity. After the rabbitfish primary hepatocytes were respectively incubated with Alverine, Benfluorex or BI6015, which were anticipated agonists or antagonist for Hnf4α, the mRNA level of Δ6Δ5 and Δ4 fads2 displayed a similar change tendency with that of hnf4α mRNA. Furthermore, when the mRNA level of hhf4α was knocked down using siRNA, the expression of Δ6Δ5 and Δ4 fads2 also decreased. Together, these data suggest that Hnf4α is involved in the transcriptional regulation of LC-PUFA biosynthesis, specifically, by targeting Δ4 and Δ6Δ5 fads2 in rabbitfish.
机译:长链多不饱和脂肪酸(LC-PUFA)生物合成是脊椎动物,尤其是鱼类的重要代谢途径,考虑到它们是人类饮食中N-3 LC-PUFA的主要来源。然而,大多数鱼类对LC-PUFA的生物合成具有有限的能力。兔鱼(Siganus Canaliculatus)能够合成LC-PUFA,因为它具有所需的所有关键酶活性,包括Δ6Δ5FADS2,Δ4FADS2,ELOVL5和ELOVL4。我们之前报道了转录因子HNF4α与Δ4和Δ6Δ5的启动子区域之间的直接相互作用,这表明HNF4α参与了Rabbitfish中的FADS2的转录调节。为了进一步在一起,克隆了1736bp的全长cDNA,其编码具有454个氨基酸的兔虾HNF4α,其在肠道中高度表达,然后是肝脏和眼睛。类似于其靶基因Δ4和Δ6Δ5的表达特征,肝脏和眼中的HNF4αmRNA水平高于低盐度的鱼类高于高盐度的鱼类。在兔幼儿肝细胞分别与亚羟氢,Benfluorex或Bi6015孵育,其预期的激动剂或HNF4α的拮抗剂,Δ6Δ5和Δ4的mRNA水平与HNF4αmRNA的mRNA水平显示出类似的变化趋势。此外,当使用siRNA敲击HHF4α的mRNA水平时,Δ6Δ5和Δ4使用的表达也降低。这些数据表明,HNF4α参与LC-PUFA生物合成的转录调节,具体地,通过靶向Δ4和Δ6Δ5时2在兔子中靶向。

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