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首页> 外文期刊>American Journal of Physiology >Expression of genes participating in regulation of fatty acid and glucose utilization and energy metabolism in developing rat hearts.
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Expression of genes participating in regulation of fatty acid and glucose utilization and energy metabolism in developing rat hearts.

机译:发育中大鼠心脏中参与脂肪酸和葡萄糖利用以及能量代谢调节的基因表达。

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The heart is a unique organ that can use several fuels for energy production. During development, the heart undergoes changes in fuel supply, and it must be able to respond to these changes. We have examined changes in the expression of several genes that regulate fuel transport and metabolism in rat hearts during early development. At birth, there was increased expression of fatty acid transporters and enzymes of fatty acid metabolism that allow fatty acids to become the major source of energy for cardiac muscle during the first 2 wk of life. At the same time, expression of genes that control glucose transport and oxidation was downregulated. After 2 wk, expression of genes for glucose uptake and oxidation was increased, and expression of genes for fatty acid uptake and utilization was decreased. Expression of carnitine palmitoyltransferase I (CPT I) isoforms during development was different from published data obtained from rabbit hearts. CPT Ialpha and Ibeta isoforms were both highly expressed in hearts before birth, and both increased further at birth. Only after the second week did CPT Ialpha expression decrease appreciably below the level of CPT Ibeta expression. These results represent another example of different expression patterns of CPT I isoforms among various mammalian species. In rats, changes in gene expression followed nutrient availability during development and may render cardiac fatty acid oxidation less sensitive to factors that influence malonyl-CoA content (e.g., fluctuations in glucose concentration) and thereby favor fatty acid oxidation as an energy source for cardiomyocytes in early development.
机译:心脏是一个独特的器官,可以使用多种燃料来产生能量。在发育过程中,心脏的燃料供应发生变化,它必须能够应对这些变化。我们已经检查了在早期发育过程中调节大鼠心脏燃料运输和代谢的几种基因表达的变化。出生时,脂肪酸转运蛋白和脂肪酸代谢酶的表达增加,这使得脂肪酸在生命的前两周成为心肌的主要能量来源。同时,控制葡萄糖转运和氧化的基因表达被下调。 2周后,葡萄糖摄取和氧化的基因表达增加,而脂肪酸摄取和利用的基因表达减少。肉碱棕榈酰转移酶I(CPT I)同工型在发育过程中的表达与从兔心脏获得的公开数据不同。 CPT Ialpha和Ibeta亚型均在出生前在心脏中高表达,并且在出生时都进一步增加。仅在第二周之后,CPT Ialpha表达才明显降低到CPT Ibeta表达水平以下。这些结果代表了各种哺乳动物物种之间CPT I亚型不同表达模式的另一个例子。在大鼠中,基因表达的变化随发育过程中养分的供应而变化,并可能使心脏脂肪酸氧化对影响丙二酰辅酶A含量(例如,葡萄糖浓度的波动)的因素较不敏感,从而有利于脂肪酸氧化作为心肌中心肌细胞的能源早期发展。

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