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鉴定 miR-145 作为一种关键调控因子,通过靶向海洋硬骨鱼中的 α 参与 LC-PUFA 生物合成。

Identification of miR-145 as a Key Regulator Involved in LC-PUFA Biosynthesis by Targeting α in the Marine Teleost .

机构信息

Guangdong Provincial Key Laboratory of Marine Biotechnology, Institute of Marine Sciences, Shantou University, 243 DaXue Road, Shantou 515063, China.

Guangdong Laboratory for Lingnan Modern Agriculture, School of Marine Sciences of South China Agricultural University, Guangzhou 510642, China.

出版信息

J Agric Food Chem. 2020 Dec 23;68(51):15123-15133. doi: 10.1021/acs.jafc.0c04649. Epub 2020 Dec 8.

Abstract

Fish, particularly marine species, are considered as the major source of long-chain polyunsaturated fatty acids (LC-PUFA) in the human diet. The extent to which fish can synthesize LC-PUFA varies with species and is regulated by dietary fatty acids and ambient salinity. Therefore, to enable fish to produce more LC-PUFA, comprehending the mechanisms underlying the regulation of LC-PUFA biosynthesis is necessary. Here, the regulatory roles of miR-145 were investigated in the marine teleost rabbitfish . The hepatic abundance of miR-145 was lower in rabbitfish reared in low salinity (10 ppt) in comparison with that of those cultured in seawater (32 ppt), while the opposite pattern was observed for the transcripts of the transcription factor hepatocyte nuclear factor 4 alpha (Hnf4α), known to affect rabbitfish LC-PUFA biosynthesis. Rabbitfish α was identified as a target of miR-145 by luciferase reporter assays, and overexpression of miR-145 in the hepatocyte line (SCHL) markedly reduced the expression of Hnf4α and its target genes involved in LC-PUFA biosynthesis, namely, Δ4 , Δ6Δ5 , and . The opposite pattern was observed when miR-145 was knocked down in SCHL cells, with these effects being attenuated by subsequent α knockdown. Moreover, increasing endogenous Hnf4α by the knockdown of miR-145 increased the expression of LC-PUFA biosynthesis genes and enhanced the synthesis of LC-PUFA in both SCHL cells and rabbitfish in vivo. This is the first report to identify miR-145 as a key effector of LC-PUFA biosynthesis by targeting α, providing a novel insight into the mechanisms of the regulation of LC-PUFA biosynthesis in vertebrates.

摘要

鱼类,尤其是海洋物种,被认为是人类饮食中长链多不饱和脂肪酸(LC-PUFA)的主要来源。鱼类合成 LC-PUFA 的程度因物种而异,并受膳食脂肪酸和环境盐度的调节。因此,为了使鱼类能够产生更多的 LC-PUFA,有必要了解 LC-PUFA 生物合成的调控机制。在这里,研究了 miR-145 在海洋硬骨鱼兔鱼中的调节作用。与在海水中(32 ppt)培养的兔鱼相比,在低盐度(10 ppt)下饲养的兔鱼肝组织中 miR-145 的丰度较低,而转录因子肝细胞核因子 4 阿尔法(Hnf4α)的转录本则相反,已知该因子影响兔鱼 LC-PUFA 的生物合成。通过荧光素酶报告基因实验鉴定出兔鱼α是 miR-145 的靶标,并且 miR-145 在肝细胞系(SCHL)中的过表达显著降低了 Hnf4α及其参与 LC-PUFA 生物合成的靶基因的表达,即 Δ4 、 Δ6Δ5 、和. 当 SCHL 细胞中 miR-145 被敲低时,观察到相反的模式,这些影响在随后的 α 敲低时减弱。此外,通过 miR-145 的敲低增加内源性 Hnf4α,增加了 LC-PUFA 生物合成基因的表达,并增强了 SCHL 细胞和兔鱼体内 LC-PUFA 的合成。这是首次报道 miR-145 通过靶向 α 成为 LC-PUFA 生物合成的关键效应因子,为脊椎动物 LC-PUFA 生物合成的调控机制提供了新的见解。

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