首页> 外文期刊>Fish Physiology and Biochemistry >Identification of five genes in endoplasmic reticulum (ER) stress-apoptosis pathways in yellow catfish Pelteobagrus fulvidraco and their transcriptional responses to dietary lipid levels
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Identification of five genes in endoplasmic reticulum (ER) stress-apoptosis pathways in yellow catfish Pelteobagrus fulvidraco and their transcriptional responses to dietary lipid levels

机译:鉴定黄鲶植物盆种富毒剂中的内质网(ER)应激凋亡途径的五种基因及其对膳食脂质水平的转录反应

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摘要

The activating transcription factor 4 (ATF4), DNA damage-inducible transcript 3 (DDIT3), growth arrest, and DNA damage-inducible protein 34 (GADD34), endoplasmic reticulum oxidoreductin 1 alpha (ERO1 alpha), and tumor necrosis factor receptor associated factor 2 (TRAF2) cDNAs were first characterized from yellow catfish Pelteobagrus fulvidraco. Compared to corresponding genes of mammals, all of these proteins shared similar conserved domains. Their mRNAs were widely expressed in various tissues, but at variable levels. Dietary lipid levels did not significantly influence ATF4 mRNA expression. mRNA expression of DDIT3 and GADD34 was highest for fish fed the low-lipid diets and lowest for fish fed middle-lipid diets. The mRNA levels of ERO1 alpha and TRAF2 declined with increasing dietary lipid levels. For the first time, we characterized the full-length cDNA sequences of ATF4, DDIT3, GADD34, ERO1 alpha, and TRAF2 and determined their tissue expression profiles and transcriptional responses to dietary lipid levels, which would contribute to our exploration into their biological functions, and providing new insights on relations between ER stress and lipid metabolism in fish.
机译:激活转录因子4(ATF4),DNA损伤诱导型转录物3(DDIT3),生长停滞和DNA损伤可诱导蛋白34(GADD34),内质网氧化还原素1α(ERO1α)和肿瘤坏死因子受体相关因子2(TRAF2)CDNA首先从黄色鲶鱼蛋白质富勒卡群中征。与相应的哺乳动物基因相比,所有这些蛋白质共用了类似的保守结构域。他们的MRNA在各种组织中广泛表达,但在可变水平下。膳食脂质水平没有显着影响ATF4 mRNA表达。 DDIT3和GADD34的mRNA表达对于喂养低脂肪饮食的鱼是最高的,并且用于喂养中脂肪饮食的鱼最低。随着膳食脂质水平的增加,ERO1α和TRAF2的mRO1α和TRAF2的mRNA水平下降。我们首次表征ATF4,DDIT3,GADD34,ERO1α和TRAF2的全长cDNA序列,并确定其组织表达谱和对膳食脂质水平的转录反应,这将有助于我们探索其生物学功能,并对鱼类抗压力与脂质代谢的关系提供新的见解。

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