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首页> 外文期刊>The Journal of Nutritional Biochemistry >Temporal proteomic analysis reveals defects in small-intestinal development of porcine fetuses with intrauterine growth restriction
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Temporal proteomic analysis reveals defects in small-intestinal development of porcine fetuses with intrauterine growth restriction

机译:时间蛋白质组学分析显示有宫内生长受限的猪胎儿小肠发育的缺陷

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The fetuseonate with intrauterine growth restriction (IUGR) has a high perinatal mortality and morbidity rate, as well as reduced efficiency for nutrients utilization. Our previous studies showed alterations of intestinal proteome in IUGR piglets both at birth and during the nursing period. Considering the potential long-term impacts of fetal programming and substantial increases in amounts of amniotic fluid nutrients from mid-gestation in pigs, the present study involved 1UGR porcine fetuses from days 60 to 110 of gestation (mid to late gestation). We identified 59 differentially expressed proteins in the fetal small intestine that are related to intestinal growth, development and reprogramming. Our results further indicated increased abundances of proteins and enzymes associated with oxidative stress, apoptosis and protein degradation, as well as decreased abundances of proteins that are required for maintenance of cell structure and motility, absorption and transport of nutrients, energy metabolism, and protein synthesis in the fetal gut. Moreover, 1UGR from middle to late gestation was associated with reduced expression of intestinal proteins that participate in regulation of gene expression and signal transduction. Collectively, these findings provide the first evidence for altered proteomes in the small intestine of IUGR fetuses, thereby predisposing the gut to metabolic defects during gestation and neonatal periods. (C) 2014 Elsevier Inc. All rights reserved.
机译:具有宫内生长限制(IUGR)的胎儿/新生儿的围产期死亡率和发病率较高,并且营养利用效率降低。我们以前的研究表明,IUGR仔猪出生时和哺乳期肠道蛋白质组均发生变化。考虑到胎儿编程的潜在长期影响以及妊娠中期猪的羊水营养物质的大量增加,本研究涉及从妊娠60天到110天(妊娠中期至晚期)的1UGR猪胎儿。我们在胎儿小肠中鉴定出59种差异表达的蛋白质,这些蛋白质与肠的生长,发育和重编程有关。我们的结果进一步表明,与氧化应激,细胞凋亡和蛋白质降解相关的蛋白质和酶丰度增加,以及维持细胞结构和运动,营养物质的吸收和运输,能量代谢和蛋白质合成所需的蛋白质丰度降低。在胎儿肠道中。此外,从妊娠中期到晚期的1UGR与参与基因表达和信号转导调控的肠道蛋白质表达降低有关。这些发现共同为IUGR胎儿的小肠中的蛋白质组改变提供了第一个证据,从而使肠道在妊娠和新生儿期间容易发生代谢缺陷。 (C)2014 Elsevier Inc.保留所有权利。

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