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丙酮酸脱氢酶激酶同工型在发育中的大鼠心脏及成年期的表达与调控:甲状腺激素状态和脂质供应的作用

Expression and regulation of pyruvate dehydrogenase kinase isoforms in the developing rat heart and in adulthood: role of thyroid hormone status and lipid supply.

作者信息

Sugden M C, Langdown M L, Harris R A, Holness M J

机构信息

Department of Diabetes and Metabolic Medicine, St Bartholomew's and the Royal London School of Medicine and Dentistry, Queen Mary College, University of London, Mile End Road, London E1 4NS, UK.

出版信息

Biochem J. 2000 Dec 15;352 Pt 3(Pt 3):731-8.

Abstract

Activation of the pyruvate dehydrogenase (PDH) complex (PDHC) promotes glucose disposal, whereas inactivation conserves glucose. The PDH kinases (PDHKs) regulate glucose oxidation through inhibitory phosphorylation of PDHC. The adult rat heart contains three PDHK isoforms PDHK1, PDHK2 and PDHK4. Using Western-blot analysis, with specific antibodies raised against individual recombinant PDHK1, PDHK2 and PDHK4, the present study investigated PDHK isoform expression in the developing rat heart and adulthood. We identified clear differences in the patterns of protein expression of each of these PDHK isoforms during the first 3 weeks of post-natal development, with most marked up-regulation of isoforms PDHK1 and PDHK4. Distinctions between the three cardiac PDHK isoforms were also demonstrated with respect to post-neonatal maturational up-regulation; with greatest up-regulation of PDHK1 and least up-regulation of PDHK4 from the post-neonatal period until maturity. The study also examined the role of thyroid hormone status and lipid supply on PDHK isoform expression. We observed marked selective increases in the amount of PDHK4 protein present relative to total cardiac protein in both hyperthyroidism and high-fat feeding. Overall, our data identify PDHK isoform PDHK1 as being of more potential regulatory importance for glucose oxidation in the adult compared with the neonatal heart, and cardiac PDHK4 as a PDHK isoform whose expression is specifically responsive to changes in lipid supply, suggesting that its up-regulation during early post-natal life may be the perinatal switch to use fatty acids as the energy source. We also identify regulation of pyruvate sensitivity of cardiac PDHK as a physiological variable, a change in which requires factors in addition to a change in lipid supply.

摘要

丙酮酸脱氢酶(PDH)复合体(PDHC)的激活促进葡萄糖的代谢,而其失活则有利于葡萄糖的保存。PDH激酶(PDHKs)通过对PDHC的抑制性磷酸化作用来调节葡萄糖氧化。成年大鼠心脏含有三种PDHK亚型,即PDHK1、PDHK2和PDHK4。本研究采用蛋白质免疫印迹分析,利用针对单个重组PDHK1、PDHK2和PDHK4制备的特异性抗体,对发育中的大鼠心脏和成年大鼠心脏中PDHK亚型的表达进行了研究。我们发现,在出生后发育的前3周,这些PDHK亚型的蛋白质表达模式存在明显差异,其中PDHK1和PDHK4亚型的上调最为显著。三种心脏PDHK亚型在出生后成熟过程中的上调情况也有所不同;从出生后到成熟,PDHK1的上调幅度最大,而PDHK4的上调幅度最小。该研究还考察了甲状腺激素状态和脂质供应对PDHK亚型表达的影响。我们观察到,在甲状腺功能亢进和高脂喂养的情况下,相对于心脏总蛋白,PDHK4蛋白的含量均有显著的选择性增加。总体而言,我们的数据表明,与新生心脏相比,PDHK亚型PDHK1在成年心脏葡萄糖氧化中具有更大的潜在调节重要性,而心脏PDHK4是一种其表达对脂质供应变化具有特异性反应的PDHK亚型,这表明其在出生后早期的上调可能是围产期向以脂肪酸作为能量来源转变的信号。我们还确定心脏PDHK的丙酮酸敏感性调节是一种生理变量,其变化除了需要脂质供应改变外,还需要其他因素。

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