Martin M E, Chinenov Y, Yu M, Schmidt T K, Yang X Y
Department of Biochemistry, University of Missouri, Columbia, Missouri 65212, USA.
J Biol Chem. 1996 Oct 11;271(41):25617-23. doi: 10.1074/jbc.271.41.25617.
We have investigated the reduction/oxidation (redox) regulation of the heteromeric transcription factor GA-binding protein (GABP). GABP, also known as nuclear respiratory factor 2, regulates the expression of nuclear encoded mitochondrial proteins involved in oxidative phosphorylation, including cytochrome c oxidase subunits IV and Vb, as well as the expression of mitochondrial transcription factor 1. GABP is composed of two subunits, the Ets-related GABP-alpha, which mediates specific DNA binding, and GABP-beta, which forms heterodimers and heterotetramers on DNA sequences containing the PEA3/Ets motif ((C/A)GGA(A/T)(G/A)). We demonstrate here that GABP DNA binding activity and GABP-dependent gene expression in 3T3 cells are inhibited by pro-oxidant conditions. DNA binding of recombinant GABP-alpha was activated by chemical reduction (dithiothreitol) and by thioredoxin; however, GSSG inhibited GABP DNA binding activity. Treatment of GABP-alpha, but not GABP-beta1, with sulfhydryl-alkylating agents also inhibited GABP DNA binding activity. Our results suggest that GABP DNA binding activity is redox-regulated in vivo, possibly by thioredoxin-mediated reduction and by GSSG-mediated oxidation of the GABP-alpha subunit. The regulation of GABP (nuclear respiratory factor 2) DNA binding activity by cellular redox changes provides an important link between mitochondrial and nuclear gene expression and the redox state of the cell.
我们研究了异源三聚体转录因子GA结合蛋白(GABP)的还原/氧化(redox)调节。GABP,也被称为核呼吸因子2,调节参与氧化磷酸化的核编码线粒体蛋白的表达,包括细胞色素c氧化酶亚基IV和Vb,以及线粒体转录因子1的表达。GABP由两个亚基组成,即介导特异性DNA结合的Ets相关的GABP-α,以及在含有PEA3/Ets基序((C/A)GGA(A/T)(G/A))的DNA序列上形成异二聚体和异四聚体的GABP-β。我们在此证明,促氧化条件会抑制3T3细胞中的GABP DNA结合活性和GABP依赖性基因表达。重组GABP-α的DNA结合通过化学还原(二硫苏糖醇)和硫氧还蛋白被激活;然而,谷胱甘肽二硫化物(GSSG)抑制GABP DNA结合活性。用巯基烷基化剂处理GABP-α而非GABP-β1,也会抑制GABP DNA结合活性。我们的结果表明,GABP DNA结合活性在体内受redox调节,可能是通过硫氧还蛋白介导的GABP-α亚基还原以及GSSG介导的氧化。细胞redox变化对GABP(核呼吸因子2)DNA结合活性的调节,为线粒体和核基因表达与细胞的redox状态之间提供了重要联系。