Zimmer Andreas David, Walbrecq Geoffroy, Kozar Ines, Behrmann Iris, Haan Claude
Life Sciences Research Unit, University of Luxembourg, Belvaux, Luxembourg.
Hypoxia (Auckl). 2016 Aug 16;4:135-145. doi: 10.2147/HP.S99044. eCollection 2016.
The pyruvate dehydrogenase complex (PDC) is an important gatekeeper enzyme connecting glycolysis to the tricarboxylic acid (TCA) cycle and oxidative phosphorylation (OXPHOS). Thereby, it has a strong impact on the glycolytic flux as well as the metabolic phenotype of a cell. PDC activity is regulated via reversible phosphorylation of three serine residues on the pyruvate dehydrogenase (PDH) E1α subunit. Phosphorylation of any of these residues by the PDH kinases (PDKs) leads to a strong decrease in PDC activity. Under hypoxia, the inactivation of the PDC has been described to be dependent on the hypoxia-inducible factor 1 (HIF-1)-induced PDK1 protein upregulation. In this study, we show in two hepatocellular carcinoma cell lines (HepG2 and JHH-4) that, during the adaptation to hypoxia, PDH is already phosphorylated at time points preceding HIF-1-mediated transcriptional events and PDK1 protein upregulation. Using siRNAs and small molecule inhibitor approaches, we show that this inactivation of PDC is independent of HIF-1α expression but that the PDKs need to be expressed and active. Furthermore, we show that reactive oxygen species might be important for the induction of this PDH phosphorylation since it correlates with the appearance of an altered redox state in the mitochondria and is also inducible by HO treatment under normoxic conditions. Overall, these results show that neither HIF-1 expression nor PDK1 upregulation is necessary for the phosphorylation of PDH during the first hours of the adaptation to hypoxia.
丙酮酸脱氢酶复合体(PDC)是一种重要的守门酶,它将糖酵解与三羧酸(TCA)循环及氧化磷酸化(OXPHOS)连接起来。因此,它对糖酵解通量以及细胞的代谢表型有很大影响。PDC活性通过丙酮酸脱氢酶(PDH)E1α亚基上三个丝氨酸残基的可逆磷酸化来调节。PDH激酶(PDKs)对这些残基中的任何一个进行磷酸化都会导致PDC活性大幅下降。在缺氧条件下,PDC的失活被认为依赖于缺氧诱导因子1(HIF-1)诱导的PDK1蛋白上调。在本研究中,我们在两种肝癌细胞系(HepG2和JHH-4)中发现,在适应缺氧的过程中,PDH在HIF-1介导的转录事件和PDK1蛋白上调之前的时间点就已经被磷酸化。使用小干扰RNA(siRNAs)和小分子抑制剂方法,我们表明PDC的这种失活独立于HIF-1α的表达,但PDKs需要表达并具有活性。此外,我们表明活性氧可能对这种PDH磷酸化的诱导很重要,因为它与线粒体中氧化还原状态的改变相关,并且在常氧条件下也可被HO处理诱导。总体而言,这些结果表明,在适应缺氧的最初几个小时内,PDH的磷酸化既不需要HIF-1的表达,也不需要PDK1的上调。