Araki Makoto, Motojima Kiyoto
Department of Biochemistry, Meiji Pharmaceutical University, Tokyo, Japan.
FEBS J. 2006 Apr;273(8):1669-80. doi: 10.1111/j.1742-4658.2006.05183.x.
Pyruvate dehydrogenase kinase 4 (PDK4) is a key regulatory enzyme involved in switching the energy source from glucose to fatty acids in response to physiological conditions. Transcription of the PDK4 gene is activated by fasting or by the administration of a PPARalpha ligand in a tissue-specific manner. Here, we show that the two mechanisms are independent, and that ERRalpha is directly involved in PPARalpha-independent transcriptional activation of the PDK4 gene with PGC-1alpha as a specific partner. This conclusion is based on the following evidence. First, detailed mutation analyses of the cloned PDK4 gene promoter sequence identified a possible ERRalpha-binding motif as the PGC-1alpha responsive element. Second, overexpression of ERRalpha by cotransfection enhanced, and the knockout of it by shRNAs diminished, PGC-1alpha-dependent activation. Third, specific binding of ERRalpha to the identified PGC-1alpha responsive sequence was confirmed by the electrophoresis mobility shift assay. Finally, cell-type-specific responsiveness to PGC-1alpha was observed and this could be explained by differences in the expression levels of ERRalpha, however, ectopic expression of ERRalpha in poorly responsive cells did not restore PGC-1alpha responsiveness, indicating that ERRalpha is necessary, but not sufficient for the response.
丙酮酸脱氢酶激酶4(PDK4)是一种关键的调节酶,参与根据生理状况将能量来源从葡萄糖转换为脂肪酸的过程。PDK4基因的转录可通过禁食或给予PPARα配体以组织特异性方式激活。在此,我们表明这两种机制是独立的,并且ERRα与PGC-1α作为特定伙伴直接参与PDK4基因的不依赖PPARα的转录激活。这一结论基于以下证据。首先,对克隆的PDK4基因启动子序列进行的详细突变分析确定了一个可能的ERRα结合基序作为PGC-1α反应元件。其次,通过共转染过表达ERRα增强了PGC-1α依赖性激活,而通过短发夹RNA敲除ERRα则减弱了这种激活。第三,通过电泳迁移率变动分析证实了ERRα与鉴定出的PGC-1α反应序列的特异性结合。最后,观察到细胞类型对PGC-1α的特异性反应性,这可以通过ERRα表达水平的差异来解释,然而,在反应性较差的细胞中异位表达ERRα并不能恢复PGC-1α反应性,表明ERRα是反应所必需的,但并不充分。