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Energy balance-dependent regulation of ovine glucose 6-phosphate dehydrogenase protein isoform expression

机译:能量平衡依赖性调节绵羊葡萄糖6-磷酸脱氢酶蛋白亚型的表达

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摘要

G6PDH is the rate-limiting enzyme of the pentose phosphate pathway and one of the principal source of NADPH, a major cellular reductant. Importantly, in ruminant's metabolism the aforementioned NADPH provided, is utilized for de novo fatty acid synthesis. Previous work of cloning the ovine (Ovis aries) og6pdh gene has revealed the presence of two cDNA transcripts (og6pda and og6pdb), og6pdb being a product of alternative splicing not similar to any other previously reported.1 In the current study the effect of energy balance in the ovine G6PDH protein expression was investigated, shedding light on the biochemical features and potential physiological role of the oG6PDB isoform. Changes in energy balance leads to protein expression changes in both transcripts, to the opposite direction and not in a proportional way. Negative energy balance was not in favor of the presence of any particular isoform, while both protein expression levels were not significantly different (P > 0.05). In contrast, at the transition point from negative to positive and on the positive energy balance, there is a significant increase of oG6PDA compared with oG6PDB protein expression (P & 0.001). Both oG6PDH protein isoforms changed significantly toward the positive energy balance. oG6PDA is escalating, while oG6PDB is falling, under the same stimulus (positive energy balance alteration). This change is also positively associated with increasing levels in enzyme activity, 4 weeks post-weaning in ewes’ adipose tissue. Furthermore, regression analysis clearly demonstrated the linear correlation of both proteins in response to the WPW, while energy balance, enzyme activity, and oG6PDA relative protein expression follow the same escalating trend; in contrast, oG6PDB relative protein expression falls in time, similar to both transcripts accumulation pattern, as reported previously.2
机译:G6PDH是戊糖磷酸途径的限速酶,是主要的细胞还原剂NADPH的主要来源之一。重要的是,在反刍动物的代谢中,上述提供的NADPH被用于从头合成脂肪酸。克隆绵羊(Ovis aries)og6pdh基因的先前工作表明存在两个cDNA转录本(og6pda和og6pdb),og6pdb是替代剪接的产物,与先前报道的其他报道均不相似。 1 目前研究了能量平衡对绵羊G6PDH蛋白表达的影响,阐明了oG6PDB亚型的生化特征和潜在的生理作用。能量平衡的变化导致两个转录本中蛋白质表达的变化,朝相反的方向变化,而不是成比例的变化。负能量平衡不利于任何特定同工型的存在,而两种蛋白质表达水平均无显着差异(P> 0.05)。相反,在从负能量到正能量的过渡点上以及在正能量平衡上,与oG6PDB蛋白表达相比,oG6PDA显着增加(P <0.001)。两种oG6PDH蛋白同工型都朝着正能量平衡发生了显着变化。在相同的刺激下(正能量平衡改变),oG6PDA正在升级,而oG6PDB正在下降。断奶后4周,母羊脂肪组织中的这种变化也与酶活性的增加呈正相关。此外,回归分析清楚地表明了两种蛋白质对WPW的线性相关,而能量平衡,酶活性和oG6PDA相对蛋白质表达遵循相同的上升趋势。相反,oG6PDB的相对蛋白表达随时间下降,类似于两个转录本的积累模式,如先前报道。 2

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