Richard Roudebush Veterans Affairs Medical Center, 1481 West Tenth Street, Indianapolis, IN 46202, USA.
Biochem J. 2012 May 1;443(3):829-39. doi: 10.1042/BJ20112197.
The importance of PDHK (pyruvate dehydrogenase kinase) 2 and 4 in regulation of the PDH complex (pyruvate dehydrogenase complex) was assessed in single- and double-knockout mice. PDHK2 deficiency caused higher PDH complex activity and lower blood glucose levels in the fed, but not the fasted, state. PDHK4 deficiency caused similar effects, but only after fasting. Double deficiency intensified these effects in both the fed and fasted states. PDHK2 deficiency had no effect on glucose tolerance, PDHK4 deficiency produced only a modest effect, but double deficiency caused a marked improvement and also induced lower insulin levels and increased insulin sensitivity. In spite of these beneficial effects, the double-knockout mice were more sensitive than wild-type and single-knockout mice to long-term fasting, succumbing to hypoglycaemia, ketoacidosis and hypothermia. Stable isotope flux analysis indicated that hypoglycaemia was due to a reduced rate of gluconeogenesis and that slightly more glucose was converted into ketone bodies in the double-knockout mice. The findings establish that PDHK2 is more important in the fed state, PDHK4 is more important in the fasted state, and survival during long-term fasting depends upon regulation of the PDH complex by both PDHK2 and PDHK4.
PDHK(丙酮酸脱氢酶激酶)2 和 4 在调节 PDH 复合物(丙酮酸脱氢酶复合物)中的重要性在单基因和双基因敲除小鼠中进行了评估。PDHK2 缺乏导致进食状态下 PDH 复合物活性升高和血糖水平降低,但在禁食状态下则没有。PDHK4 缺乏也会产生类似的影响,但仅在禁食后才会出现。双重缺乏在进食和禁食状态下都加剧了这些影响。PDHK2 缺乏对葡萄糖耐量没有影响,PDHK4 缺乏仅产生适度影响,但双重缺乏导致明显改善,还降低了胰岛素水平并提高了胰岛素敏感性。尽管有这些有益的效果,但与野生型和单基因敲除小鼠相比,双基因敲除小鼠对长期禁食更为敏感,易发生低血糖、酮症酸中毒和体温过低。稳定同位素通量分析表明,低血糖是由于糖异生率降低所致,并且双基因敲除小鼠中更多的葡萄糖转化为酮体。这些发现确立了 PDHK2 在进食状态下更为重要,PDHK4 在禁食状态下更为重要,而长期禁食期间的生存取决于 PDHK2 和 PDHK4 对 PDH 复合物的调节。