Djouadi F, Bastin J, Kelly D P, Merlet-Benichou C
INSERM U319, Université Paris 7, France.
Biochem J. 1996 Apr 15;315 ( Pt 2)(Pt 2):555-62. doi: 10.1042/bj3150555.
Mitochondrial fatty acid beta-oxidation plays a major role in providing the ATP required for reabsorptive processes in the adult rat kidney. However, the molecular mechanisms and signals involved in induction of the enzymes of fatty acid oxidation during development in this and other organs are unknown. We therefore studied the changes in the steady-state levels of mRNA encoding medium-chain acyl-CoA dehydrogenase (MCAD), which catalyses the initial step in mitochondrial fatty acid beta-oxidation, in the rat kidney cortex and medulla between postnatal days 10 and 30. Furthermore, we investigated whether the expression of MCAD and of mitochondrial malate dehydrogenase (mMDH), a key enzyme in the tricarboxylic acid cycle, might be co-ordinately regulated by circulating glucocorticoids in the immature kidney during development. In the cortex, the levels of MCAD mRNA rose 4-fold between day 10 and day 21, and then decreased from day 21 to day 30. In the medulla a postnatal increase in the concentration of MCAD mRNA (8-fold) was observed during the same period. Adrenalectomy prevented the 16-21-day developmental increases in MCAD and mMDH mRNA levels in the cortex and medulla; these could be restored by dexamethasone treatment. A single injection of dexamethasone into 10-day-old rats led to a rise in MCAD and mMDH mRNA levels in the renal cortex due to stimulation of gene transcription, as shown by nuclear run-on assays. Therefore MCAD and mMDH gene expression is tightly regulated at the transcriptional level by developmental changes in circulating glucocorticoid levels. These hormones might thus represent a good candidate as a co-ordinating factor in the expression of nuclear genes encoding mitochondrial enzymes in the kidney during postnatal development.
线粒体脂肪酸β-氧化在为成年大鼠肾脏重吸收过程提供所需ATP方面发挥着重要作用。然而,该器官及其他器官发育过程中脂肪酸氧化酶诱导所涉及的分子机制和信号尚不清楚。因此,我们研究了出生后第10天至第30天大鼠肾皮质和髓质中编码中链酰基辅酶A脱氢酶(MCAD)的mRNA稳态水平的变化,MCAD催化线粒体脂肪酸β-氧化的第一步。此外,我们还研究了发育过程中未成熟肾脏中MCAD和三羧酸循环中的关键酶线粒体苹果酸脱氢酶(mMDH)的表达是否可能受到循环糖皮质激素的协同调节。在皮质中,MCAD mRNA水平在第10天至第21天之间上升了4倍,然后从第21天至第30天下降。在髓质中,同期观察到MCAD mRNA浓度在出生后增加(8倍)。肾上腺切除术可阻止皮质和髓质中MCAD和mMDH mRNA水平在16 - 21天的发育性增加;地塞米松治疗可使其恢复。对10日龄大鼠单次注射地塞米松,由于基因转录受到刺激,导致肾皮质中MCAD和mMDH mRNA水平升高,核运行分析表明了这一点。因此,MCAD和mMDH基因表达在转录水平上受到循环糖皮质激素水平发育变化的严格调控。因此,这些激素可能是出生后发育过程中肾脏中编码线粒体酶的核基因表达的协同调节因子的良好候选者。