Department of Dermatology, Tohoku University Graduate School of Medicine, Sendai 980-8574, Japan.
J Biol Chem. 2010 Jul 30;285(31):23581-9. doi: 10.1074/jbc.M109.068197. Epub 2010 May 25.
Bach1 is a member of the basic leucine zipper transcription factor family, and the Bach1/small Maf heterodimer specifically represses transcriptional activity directed by the Maf recognition element (MARE). Because Bach1 is a repressor of the oxidative stress response, we examined the function(s) of Bach1 in keratinocytes subjected to oxidative stress. Oxidative stress induced by H(2)O(2) led to an increase in MARE activity and expression of heme oxygenase-1 (HO-1), an inducible antioxidant defense enzyme. Bach1 depletion by small interfering RNAs or by deletion of Bach1 enhanced HO-1 expression in the absence of H(2)O(2), indicating that Bach1 is a critical repressor of HO-1 in keratinocytes. Although Bach1-deficient or -reduced keratinocytes expressed higher levels of HO-1 than control cells in response to H(2)O(2), Bach1 down-regulation did not attenuate the production of reactive oxygen species by H(2)O(2). In contrast, Bach1 overexpression abolished HO-1 induction by H(2)O(2), which led to increased reactive oxygen species accumulation. HO-1 was induced during keratinocyte differentiation, but MARE activity did not change during differentiation. Furthermore, Bach1 overexpression did not inhibit differentiation-associated induction of HO-1 expression, suggesting that HO-1 induction in differentiation is independent of Bach1. Thus, in response to oxidative stress, Bach1 regulates the oxidation state through the negative control of HO-1 expression prior to terminal keratinocyte differentiation. However, Bach1-mediated repression is negated during keratinocyte differentiation.
Bach1 是碱性亮氨酸拉链转录因子家族的成员,Bach1/small Maf 异二聚体特异性抑制 Maf 识别元件(MARE)指导的转录活性。由于 Bach1 是氧化应激反应的抑制剂,我们研究了 Bach1 在受到氧化应激的角质细胞中的功能。H(2)O(2)诱导的氧化应激导致 MARE 活性和血红素加氧酶-1(HO-1)的表达增加,HO-1 是一种诱导型抗氧化防御酶。用小干扰 RNA 或 Bach1 缺失耗尽 Bach1 会在没有 H(2)O(2)的情况下增强 HO-1 的表达,表明 Bach1 是角质细胞中 HO-1 的关键抑制剂。尽管 Bach1 缺陷或减少的角质细胞在响应 H(2)O(2)时比对照细胞表达更高水平的 HO-1,但 Bach1 下调并没有减轻 H(2)O(2)产生的活性氧。相比之下,Bach1 过表达消除了 H(2)O(2 诱导的 HO-1 诱导,导致活性氧积累增加。HO-1 在角质细胞分化过程中被诱导,但 MARE 活性在分化过程中没有变化。此外,Bach1 过表达并没有抑制分化相关的 HO-1 表达诱导,这表明分化过程中的 HO-1 诱导不依赖于 Bach1。因此,在氧化应激下,Bach1 通过在终末角质细胞分化前负调控 HO-1 表达来调节氧化状态。然而,在角质细胞分化过程中,Bach1 介导的抑制作用被否定。