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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Mitochondrial Transcription Factor A Is Increased but Expression of ATP Synthase β Subunit and Medium-Chain Acyl-CoA Dehydrogenase Genes Are Decreased in Hearts of Copper-Deficient Rats
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Mitochondrial Transcription Factor A Is Increased but Expression of ATP Synthase β Subunit and Medium-Chain Acyl-CoA Dehydrogenase Genes Are Decreased in Hearts of Copper-Deficient Rats

机译:线粒体转录因子A增加,但在铜缺陷大鼠的心脏中,ATP合酶β亚基和中链酰基-CoA脱氢酶基因的表达降低

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The mechanism(s) by which impaired mitochondrial respiratory function and the accumulation of lipid droplets and mitochondria in hearts of copper-deficient rats occur remains unclear. It is not known whether specific components of the regulatory pathway involved in mitochondrial biogenesis, such as mitochondrial transcription factor A (mtTFA) and nuclear respiratory factors 1 and 2 (NRF-1 and NRF-2), are activated in copper deficiency. Little is known about gene expression of enzymes involved in fatty acid oxidation (FAO) in hearts of copper-deficient rats. Male weanling rats were fed copper-adequate (CuA), copper-deficient (CuD) or pair-fed (CuP) diets for 5 wk. Mitochondria and lipid droplet volume densities from electron micrographs were greater and there was an elevation in the mtTFA protein level in hearts of copper-deficient rats. DNA binding activities of NRF-1 and NRF-2 did not differ among the groups. Northern blot analysis of cardiac tissue revealed that transcripts of F1F0-ATP synthase subunit c were greater, but mRNA levels of ATP synthase β subunit and the FAO enzyme, medium-chain acyl-CoA dehydrogenase (MCAD), were lower in hearts of copper-deficient rats. Long-chain acyl-CoA dehydrogenase (LCAD) mRNA levels did not differ among treatment groups. These results suggest that certain components of the mitochondrial biogenesis program are activated in hearts of copper-deficient rats. F1F0-ATP synthase β subunit and MCAD transcript levels remain low, which may contribute to impaired mitochondrial respiratory function, decreased fatty acid utilization and lipid droplet accumulation in hearts of copper-deficient rats.
机译:受电机呼吸功能受损的机制和脂肪液滴的积累和铜缺乏大鼠心脏的积累仍然尚不清楚。尚不清楚语线粒体生物发生的调节途径的特定组分,例如线粒体转录因子A(MTTFA)和核呼吸道因子1和2(NRF-1和NRF-2),在铜缺乏中被激活。关于铜缺陷大鼠的心脏中参与脂肪酸氧化(粮农组织)的酶的基因表达很少。男性断奶大鼠喂食铜足够(CUA),铜缺乏(CUD)或配对喂食(杯)饮食5周。来自电子显微照片的线粒体和脂质液滴体积密度更大,并且在铜缺乏大鼠心脏中MTTFA蛋白质水平升高。 NRF-1和NRF-2的DNA结合活性在组中没有不同。心脏组织的Northern印迹分析表明,F1F0-ATP合酶亚单位C的转录物更大,但ATP合酶β亚基和粮农组织酶,中链酰基-CoA脱氢酶(MCAD)的mRNA水平较低 - 缺乏大鼠。长链酰基 - CoA脱氢酶(LCAD)mRNA水平在治疗组中没有不同。这些结果表明,线粒体生物发生程序的某些组分在铜缺乏大鼠的心中被激活。 F1F0-ATP合酶β亚基和MCAD转录水平仍然很低,这可能有助于受损的线粒体呼吸功能,降低铜缺乏大鼠心脏脂肪酸利用和脂质液滴积累。

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