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宫内生长迟缓会改变胎儿和幼年大鼠骨骼肌中的线粒体基因表达及功能。

Intrauterine growth retardation alters mitochondrial gene expression and function in fetal and juvenile rat skeletal muscle.

作者信息

Lane R H, Chandorkar A K, Flozak A S, Simmons R A

机构信息

Department of Pediatrics, University of Pittsburgh School of Medicine, Magee-Women's Research Institute, Pennsylvania 15213, USA.

出版信息

Pediatr Res. 1998 May;43(5):563-70. doi: 10.1203/00006450-199805000-00001.

Abstract

Uteroplacental insufficiency alters the anabolic metabolism of the fetus, resulting in intrauterine growth retardation (IUGR). The metabolic and physiologic factors that cause IUGR have long standing consequences after birth. Postnatal growth and glucose metabolism are altered in the IUGR infant. Skeletal muscle is an important component of growth and metabolizes up to 70% of i.v. glucose. The ability of skeletal muscle to metabolize glucose is affected by ATP availability. We hypothesized that gene expression and function of proteins involved in mitochondrial ATP production and distribution would be altered in juvenile IUGR muscle. To test this hypothesis, we used a model of IUGR, induced by bilateral uterine artery ligation in the pregnant rat, that mimics uteroplacental insufficiency in the human. RT-PCR was used to measure the mRNA levels of three important mitochondrial proteins; NADH-ubiquinone-oxireductase subunit 4L(ND-4L), subunit C of the F1F0-ATP synthase (SUC), and adenine nucleotide translocator 1 (ANT1) in IUGR and control rats in fetal and juvenile life. In the fetus, mRNA levels of all three proteins were significantly increased in IUGR skeletal muscle. In contrast, in juvenile animals, mRNA levels of all three proteins were significantly decreased. mRNA levels of other metabolically important proteins, glucose-6-phosphate dehydrogenase and carnitine-palmitoyl-transferase II, were not significantly altered in IUGR juvenile animals. To assess if decreased gene expression is associated with altered mitochondrial function, we measured the mitochondrial NAD+/NADH ratio in d 21 juvenile control and IUGR muscle. At d 21, decreased gene expression if ND-4L, SUC, and ANTI is associated with a decreased mitochondrial NAD+/NADH ratio. The results of our study suggest that the metabolic alterations associated with uteroplacental insufficiency in the rat result in altered fetal and postnatal muscle mitochondrial mRNA expression as well as altered postnatal mitochondrial function.

摘要

子宫胎盘功能不全改变胎儿的合成代谢,导致宫内生长受限(IUGR)。导致IUGR的代谢和生理因素在出生后具有长期影响。IUGR婴儿的出生后生长和葡萄糖代谢会发生改变。骨骼肌是生长的重要组成部分,代谢高达70%的静脉注射葡萄糖。骨骼肌代谢葡萄糖的能力受ATP可用性的影响。我们假设,参与线粒体ATP产生和分布的蛋白质的基因表达和功能在幼年IUGR肌肉中会发生改变。为了验证这一假设,我们使用了一种IUGR模型,该模型由怀孕大鼠双侧子宫动脉结扎诱导,模拟人类子宫胎盘功能不全。采用逆转录-聚合酶链反应(RT-PCR)检测胎儿期和幼年期IUGR大鼠及对照大鼠中三种重要线粒体蛋白的mRNA水平;NADH-泛醌氧化还原酶亚基4L(ND-4L)、F1F0-ATP合酶亚基C(SUC)和腺嘌呤核苷酸转位酶1(ANT1)。在胎儿中,IUGR骨骼肌中所有三种蛋白质的mRNA水平均显著升高。相比之下,在幼年动物中,所有三种蛋白质的mRNA水平均显著降低。IUGR幼年动物中其他代谢重要蛋白质葡萄糖-6-磷酸脱氢酶和肉碱-棕榈酰转移酶II的mRNA水平没有显著改变。为了评估基因表达降低是否与线粒体功能改变有关,我们测量了第21天幼年对照和IUGR肌肉中的线粒体NAD+/NADH比值。在第21天,ND-4L、SUC和ANT1基因表达降低与线粒体NAD+/NADH比值降低有关。我们的研究结果表明,与大鼠子宫胎盘功能不全相关的代谢改变导致胎儿期和出生后肌肉线粒体mRNA表达改变以及出生后线粒体功能改变。

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