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首页> 外文期刊>Journal of Lipid Research >A novel FADS1 isoform potentiates FADS2-mediated production of eicosanoid precursor fatty acids
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A novel FADS1 isoform potentiates FADS2-mediated production of eicosanoid precursor fatty acids

机译:新型FADS1亚型可增强FADS2介导的类花生酸前体脂肪酸的产生

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The fatty acid desaturase (FADS) genes code for the rate-limiting enzymes required for the biosynthesis of long-chain polyunsaturated fatty acids (LCPUFA). Here we report discovery and function of a novel FADS1 splice variant. FADS1 alternative transcript 1 (FADS1AT1) enhances desaturation of FADS2, leading to increased production of eicosanoid precursors, the first case of an isoform modulating the enzymatic activity encoded by another gene. Multiple protein isoforms were detected in primate liver, thymus, and brain. In human neuronal cells, their expression patterns are modulated by differentiation and result in alteration of cellular fatty acids. FADS1, but not FADS1AT1, localizes to endoplasmic reticulum and mitochondria. Ribosomal footprinting demonstrates that all three FADS genes are translated at similar levels. The noncatalytic regulation of FADS2 desaturation by FADS1AT1 is a novel, plausible mechanism by which several phylogenetically conserved FADS isoforms may regulate LCPUFA biosynthesis in a manner specific to tissue, organelle, and developmental stage.
机译:脂肪酸去饱和酶(FADS)基因编码长链多不饱和脂肪酸(LCPUFA)生物合成所需的限速酶。在这里,我们报告新型FADS1剪接变体的发现和功能。 FADS1替代转录本1(FADS1AT1)增强了FADS2的去饱和作用,导致类花生酸前体的产量增加,这是同种型调节由另一个基因编码的酶活性的第一种情况。在灵长类动物的肝脏,胸腺和大脑中检测到多种蛋白亚型。在人类神经元细胞中,它们的表达模式受到分化的调节,并导致细胞脂肪酸的改变。 FADS1,而不是FADS1AT1,定位于内质网和线粒体。核糖体足迹表明,所有三个FADS基因均以相似的水平翻译。 FADS1AT1对FADS2脱饱和的非催化调节是一种新颖的,可行的机制,通过该机制,几种系统发育上保守的FADS亚型可以以组织,细胞器和发育阶段特有的方式调节LCPUFA的生物合成。

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