Berasi Stephen P, Xiu Mei, Yee Amy S, Paulson K Eric
Department of Biochemistry, Tufts University School of Medicine, School of Nutrition, Boston, Massachusetts 02111, USA.
Mol Cell Biol. 2004 Apr;24(7):3011-24. doi: 10.1128/MCB.24.7.3011-3024.2004.
Several studies have linked the production of reactive oxygen species (ROS) by the NADPH oxidase to cellular growth control. In many cases, activation of the NADPH oxidase and subsequent ROS generation is required for growth factor signaling and mitogenesis in nonimmune cells. In this study, we demonstrate that the transcriptional repressor HBP1 (HMG box-containing protein 1) regulates the gene for the p47phox regulatory subunit of the NADPH oxidase. HBP1 represses growth regulatory genes (e.g., N-Myc, c-Myc, and cyclin D1) and is an inhibitor of G(1) progression. The promoter of the p47phox gene contains six tandem high-affinity HBP1 DNA-binding elements at positions -1243 to -1318 bp from the transcriptional start site which were required for repression. Furthermore, HBP1 repressed the expression of the endogenous p47phox gene through sequence-specific binding. With HBP1 expression and the subsequent reduction in p47phox gene expression, intracellular superoxide production was correspondingly reduced. Using both the wild type and a dominant-negative mutant of HBP1, we demonstrated that the repression of superoxide production through the NADPH oxidase contributed to the observed cell cycle inhibition by HBP1. Together, these results indicate that HBP1 may contribute to the regulation of NADPH oxidase-dependent superoxide production through transcriptional repression of the p47phox gene. This study defines a transcriptional mechanism for regulating intracellular ROS levels and has implications in cell cycle regulation.
多项研究已将NADPH氧化酶产生的活性氧(ROS)与细胞生长控制联系起来。在许多情况下,非免疫细胞中的生长因子信号传导和有丝分裂需要NADPH氧化酶的激活及随后的ROS生成。在本研究中,我们证明转录抑制因子HBP1(含HMG盒蛋白1)调节NADPH氧化酶的p47phox调节亚基的基因。HBP1抑制生长调节基因(如N-Myc、c-Myc和细胞周期蛋白D1),并且是G(1)期进程的抑制剂。p47phox基因的启动子在距转录起始位点-1243至-1318 bp处含有六个串联的高亲和力HBP1 DNA结合元件,这些元件是抑制所必需的。此外,HBP1通过序列特异性结合抑制内源性p47phox基因的表达。随着HBP1表达以及随后p47phox基因表达的降低,细胞内超氧化物的产生相应减少。使用HBP1的野生型和显性负性突变体,我们证明通过NADPH氧化酶抑制超氧化物产生导致了HBP1所观察到的细胞周期抑制。总之,这些结果表明HBP1可能通过对p47phox基因的转录抑制来促进对NADPH氧化酶依赖性超氧化物产生的调节。本研究定义了一种调节细胞内ROS水平的转录机制,并对细胞周期调节具有重要意义。