首页> 美国卫生研究院文献>Biochemical Journal >Fibre-type specific modification of the activity and regulation of skeletal muscle pyruvate dehydrogenase kinase (PDK) by prolonged starvation and refeeding is associated with targeted regulation of PDK isoenzyme 4 expression.
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Fibre-type specific modification of the activity and regulation of skeletal muscle pyruvate dehydrogenase kinase (PDK) by prolonged starvation and refeeding is associated with targeted regulation of PDK isoenzyme 4 expression.

机译:长期饥饿和重新进食的骨骼肌丙酮酸脱氢酶激酶(PDK)活性和调节的纤维型特异性修饰与PDK同工酶4表达的靶向调节有关。

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摘要

Using immunoblot analysis with antibodies raised against recombinant pyruvate dehydrogenase kinase (PDK) isoenzymes PDK2 and PDK4, we demonstrate selective changes in PDK isoenzyme expression in slow-twitch versus fast-twitch skeletal muscle types in response to prolonged (48 h) starvation and refeeding after starvation. Starvation increased PDK activity in both slow-twitch (soleus) and fast-twitch (anterior tibialis) skeletal muscle and was associated with loss of sensitivity of PDK to inhibition by pyruvate, with a greater effect in anterior tibialis. Starvation significantly increased PDK4 protein expression in both soleus and anterior tibialis, with a greater response in anterior tibialis. Starvation did not effect PDK2 protein expression in soleus, but modestly increased PDK2 expression in anterior tibialis. Refeeding for 4 h partially reversed the effect of 48-h starvation on PDK activity and PDK4 expression in both soleus and anterior tibialis, but the response was more marked in soleus than in anterior tibialis. Pyruvate sensitivity of PDK activity was also partially restored by refeeding, again with the greater response in soleus. It is concluded that targeted regulation of PDK4 isoenzyme expression in skeletal muscle in response to starvation and refeeding underlies the modulation of the regulatory characteristics of PDK in vivo. We propose that switching from a pyruvate-sensitive to a pyruvate-insensitive PDK isoenzyme in starvation (a) maintains a sufficiently high pyruvate concentration to ensure that the glucose-->alanine-->glucose cycle is not impaired, and (b) may 'spare' pyruvate for anaplerotic entry into the tricarboxylic acid cycle to support the entry of acetyl-CoA derived from fatty acid (FA) oxidation into the tricarboxylic acid cycle. We further speculate that FA oxidation by skeletal muscle is both forced and facilitated by upregulation of PDK4, which is perceived as an essential component of the operation of the glucose-FA cycle in starvation.
机译:使用针对重组丙酮酸脱氢酶激酶(PDK)同工酶PDK2和PDK4产生的抗体的免疫印迹分析,我们证明了响应于长时间(48 h)饥饿和进食后慢肌和快肌骨骼肌类型中PDK同工酶表达的选择性变化饥饿。饥饿会增加慢肌(比目鱼肌)和快肌(胫骨前肌)骨骼肌中的PDK活性,并且与PDK对丙酮酸抑制作用的敏感性丧失有关,对胫骨前肌的影响更大。饥饿显着增加了比目鱼肌和胫前肌中PDK4蛋白的表达,在胫前肌中反应更大。饥饿并不影响比目鱼眼中PDK2蛋白的表达,但会适度增加胫骨前部的PDK2表达。再喂食4 h,部分逆转了48 h饥饿对比目鱼和胫骨前区PDK活性和PDK4表达的影响,但比目鱼肌的反应比胫骨前部更明显。补饲还可以部分恢复PDK活性的丙酮酸敏感性,比目鱼肌反应也更大。结论是,针对饥饿和再进食的骨骼肌中PDK4同工酶表达的靶向调节是PDK体内调节特性调节的基础。我们建议饥饿时从对丙酮酸敏感的PDK同工酶转换为对丙酮酸不敏感的PDK同工酶(a)保持足够高的丙酮酸浓度,以确保不损害葡萄糖->丙氨酸->葡萄糖循环,并且(b) “备用”丙酮酸用于过季进入三羧酸循环,以支持源自脂肪酸(FA)氧化的乙酰辅酶A进入三羧酸循环。我们进一步推测,PDK4的上调既可以促进骨骼肌的FA氧化,又可以促进PDK4的上调,PDK4被认为是饥饿中葡萄糖-FA循环运作的重要组成部分。

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