Jeong Young-Il, Kim Sang Woo, Jung In Duk, Lee Jun Sik, Chang Jeong Hyun, Lee Chang-Min, Chun Sung Hak, Yoon Man-Soo, Kim Geun Tae, Ryu Seok Woo, Kim Jong-Suk, Shin Yong Kyoo, Lee Won Suk, Shin Hwa Kyoung, Lee Jae-Dong, Park Yeong-Min
Department of Microbiology, College of Natural Science, Pusan National University, Geumjeong-Gu, Busan 609-735, Korea.
J Biol Chem. 2009 Feb 6;284(6):3700-8. doi: 10.1074/jbc.M807328200. Epub 2008 Dec 15.
Indoleamine 2,3-dioxygenase (IDO) catalyzes the initial and rate-limiting step in the degradation of tryptophan and is strongly induced in interferon-gamma (IFNgamma)-stimulated dendritic cells (DCs). IDO has recently been established as a key enzyme in T-cell suppression-mediated immune tolerance to tumors. STAT1 phosphorylation appears to play an important role in the control of IDO expression by IFNgamma, but the precise regulatory mechanism remains obscure. Here we present a novel mechanism of IFNgamma-induced IDO expression in bone marrow-derived dendritic cells. In addition, we demonstrate that curcumin, an active component of turmeric, significantly inhibited the induction of IDO expression and activity by IFNgamma. We found that curcumin suppressed STAT1 activation by directly inhibiting Janus-activated kinase 1/2 and protein kinase Cdelta phosphorylation in bone marrow-derived DCs, suppressing the subsequent translocation and binding of STAT1 to the GAS element of the IRF-1 promoter. Coincident with these inhibitory effects on IFNgamma-induced IDO expression, curcumin reversed IDO-mediated suppression of T-cell responses. Our results, thus, suggest that down-regulation of IDO in DCs is an important immunomodulatory property of curcumin that may be exploited therapeutically in the control of cancers.
吲哚胺2,3-双加氧酶(IDO)催化色氨酸降解的起始步骤和限速步骤,并且在干扰素-γ(IFNγ)刺激的树突状细胞(DC)中被强烈诱导。IDO最近已被确立为T细胞抑制介导的肿瘤免疫耐受中的关键酶。STAT1磷酸化似乎在IFNγ对IDO表达的调控中起重要作用,但确切的调控机制仍不清楚。在此,我们提出了一种IFNγ诱导骨髓来源树突状细胞中IDO表达的新机制。此外,我们证明姜黄素(姜黄的一种活性成分)可显著抑制IFNγ诱导的IDO表达和活性。我们发现姜黄素通过直接抑制骨髓来源DC中Janus激活激酶1/2和蛋白激酶Cδ的磷酸化来抑制STAT1激活,从而抑制随后STAT1向IRF-1启动子的GAS元件的转位和结合。与这些对IFNγ诱导的IDO表达的抑制作用一致,姜黄素逆转了IDO介导的T细胞反应抑制。因此,我们的结果表明,DC中IDO的下调是姜黄素的一种重要免疫调节特性,可能在癌症治疗中得到应用。