Chon S Y, Hassanain H H, Pine R, Gupta S L
Hipple Cancer Research Center, Dayton, OH 45439, USA.
J Interferon Cytokine Res. 1995 Jun;15(6):517-26. doi: 10.1089/jir.1995.15.517.
Interferon (IFN)-gamma-induced expression of indoleamine 2,3-dioxygenase (IDO) gene is implicated in the antimicrobial and antiproliferative effects of IFN-gamma in cell cultures. Earlier studies identified a 96 base pair (bp) regulatory region upstream of the IDO gene that conferred IFN-gamma response to the chloroamphenicol acetyltransferase (CAT) gene linked to herpesvirus thymidine kinase promoter. The IFN-gamma-responsive region was further narrowed to a 67 bp fragment by 3' deletion. This 67 bp fragment contains several sequence elements of potential interest, including a 14 bp sequence homologous to the ISRE sequence found in IFN-alpha-inducible genes and two palindromic sequences (PE I and PE II) homologous to the GAS sequence identified in IFN-gamma-inducible genes. Site-directed mutagenesis studies showed that IFN-gamma-induced expression of IDO-CAT constructs involved cooperation between two elements: the ISRE homolog and the PE II (but not PE I). Either element alone with its flanking sequence was inadequate in conferring an IFN-gamma response to CAT reporter gene. Two IFN-gamma-regulated protein factors interacting with these two elements were identified. The factor binding to the ISRE region was induced with a slower kinetics, required new protein synthesis, and reacted with antibodies to IRF-1. The factor interacting with the PE II region appeared rapidly after treatment with IFN-gamma independently of new protein synthesis, and its binding to DNA probe was blocked by antibodies to p91 factor, reported to bind to GAS element.(ABSTRACT TRUNCATED AT 250 WORDS)
干扰素(IFN)-γ诱导的吲哚胺2,3-双加氧酶(IDO)基因表达与IFN-γ在细胞培养中的抗菌和抗增殖作用有关。早期研究确定了IDO基因上游一个96碱基对(bp)的调控区域,该区域赋予与疱疹病毒胸苷激酶启动子相连的氯霉素乙酰转移酶(CAT)基因IFN-γ反应性。通过3'缺失将IFN-γ反应区域进一步缩小到一个67 bp的片段。这个67 bp的片段包含几个潜在的重要序列元件,包括一个与IFN-α诱导基因中发现的ISRE序列同源的14 bp序列,以及两个与IFN-γ诱导基因中鉴定的GAS序列同源的回文序列(PE I和PE II)。定点诱变研究表明,IFN-γ诱导的IDO-CAT构建体的表达涉及两个元件之间的协同作用:ISRE同源物和PE II(而非PE I)。单独的任何一个元件及其侧翼序列都不足以赋予CAT报告基因IFN-γ反应性。鉴定出了与这两个元件相互作用的两种IFN-γ调节蛋白因子。与ISRE区域结合的因子诱导动力学较慢,需要新的蛋白质合成,并与抗IRF-1抗体反应。与PE II区域相互作用的因子在IFN-γ处理后迅速出现,与新的蛋白质合成无关,其与DNA探针的结合被据报道与GAS元件结合的p91因子抗体阻断。(摘要截短于250字)