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Fasting differentially alters the hypothalamic proteome of chickens from lines with the propensity to be anorexic or obese

机译:空腹差异性地改变了鸡的下丘脑蛋白质组,使其倾向于厌食或肥胖

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Background The hypothalamus is the ultimate modulator of appetite and energy balance and therefore sensitive to changes in nutritional state. Chicks from lines selected for low (LWS) and high (HWS) body weight are hypophagic and compulsive eaters, respectively, and differ in their propensity to become obese and in their hypothalamic mRNA response to fasting. Methods As fasting-induced changes in hypothalamic proteins are unknown, we investigated the hypothalamic proteomes of 5-day old LWS and HWS chicks in the fed and fasted states using a label-free liquid chromatography-tandem mass spectrometry (LC-MS/MS) approach. Results A total of 744 proteins were identified in the chicken hypothalamus, and 268 differentially abundant proteins were identified among four pairwise comparisons. Ninety-five proteins were associated with the response to fasting in HWS chicks, and 23 proteins were associated with the response to fasting in LWS chicks. Fasting-responsive proteins in HWS chicks were significantly enriched in ATP metabolic processes, glyoxylate/dicarboxylate metabolism, and ribosome function. There was no enrichment for any pathways in LWS chicks in response to fasting. In the fasted and fed states, 159 and 119 proteins differed between HWS and LWS, respectively. Oxidative phosphorylation, citric acid cycle, and carbon metabolism were the main pathways associated with differences between the two lines of chicks. Enzymes associated with metabolic pathways differed between HWS and LWS in both nutritional states, including fumarase, aspartate aminotransferase, mitochondrial GOT2, 3-hydroxyisobutyrate dehydrogenase, chondrogenesis associated lipocalin, sialic acid synthase, arylamine N-acetyltransferase, pineal gland isozyme NAT-3, and succinate dehydrogenase [ubiquinone] flavoprotein subunit, mitochondrial. Conclusions These results provide insights into the hypothalamic metabolic pathways that are affected by nutritional status and the regulation of appetite and eating behavior.
机译:背景下丘脑是食欲和能量平衡的最终调节者,因此对营养状态的变化敏感。从低体重(LWS)和高体重(HWS)的品系选出的小鸡分别是吞食不足和强迫食者,它们的肥胖倾向和下丘脑对禁食的mRNA反应不同。方法由于空腹诱导的下丘脑蛋白变化未知,我们使用无标记液相色谱-串联质谱法(LC-MS / MS)研究了处于进食和禁食状态的5日龄LWS和HWS雏鸡的下丘脑蛋白质组方法。结果在鸡下丘脑中共鉴定出744种蛋白质,在四对比较中鉴定出268种差异丰富的蛋白质。九十五种蛋白质与HWS雏鸡对禁食的反应有关,而23种蛋白质与LWS雏鸡对禁食的反应有关。 HWS雏鸡中的空腹反应蛋白在ATP代谢过程,乙醛酸/二羧酸酯代谢和核糖体功能中显着丰富。对禁食的反应,LWS雏鸡中没有任何途径的富集。在禁食和进食状态下,HWS和LWS之间分别有159和119种蛋白质不同。氧化磷酸化,柠檬酸循环和碳代谢是与两条小鸡之间差异相关的主要途径。 HWS和LWS在两种营养状态下与代谢途径相关的酶均不同,包括富马酸酯酶,天冬氨酸转氨酶,线粒体GOT2、3-羟基异丁酸酯脱氢酶,软骨生成相关脂钙蛋白,唾液酸合酶,芳胺N-乙酰基转移酶,松果体同工酶NAT-3和琥珀酸脱氢酶[泛醌]黄素亚基,线粒体。结论这些结果为了解受营养状况以及食欲和饮食行为调节影响的下丘脑代谢途径提供了见识。

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