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干扰素共有序列结合蛋白(ICSBP)是干扰素诱导型启动子的条件性阻遏物。

IFN consensus sequence binding protein (ICSBP) is a conditional repressor of IFN inducible promoters.

作者信息

Weisz A, Kirchhoff S, Levi B Z

机构信息

Department of Food Engineering & Biotechnology, Technion, Haifa, Israel.

出版信息

Int Immunol. 1994 Aug;6(8):1125-31. doi: 10.1093/intimm/6.8.1125.

Abstract

IFN stimulated genes (ISGs) contain common DNA motif termed IFN consensus sequence (ICS) at their promoters that enable IFN responsiveness. Different transcription factors capable of interacting with the ICS have been described. Previously, we reported the cloning of a factor capable of binding to the ICS (ICSBP) that demonstrates similarity at DNA the binding domain with three other ICS binding factor, i.e. IRF-1, IRF-2 and ISGF3 gamma. ICSBP is expressed constitutively in hematopoietic cells and its expression is further induced by IFN-gamma. This is a negative trans-acting regulator of ISGs; however, its effect is attenuated following prolonged exposures of cells to both types of IFNs. In this communication, we show that short exposures of cells to IFNs (priming) are sufficient to alleviate ICSBP mediated repression. Further, exposure of primed cells to the synthetic dsRNA (polyl-polyC) results in total abrogation of ICSBP repression. In an attempt to unravel the molecular mechanism governing this conditional repression of ICSBP, the direct involvement of transcriptional activator IRF-1 is demonstrated. We postulate that constitutive expression of ICSBP in hematopoietic cells is mediating submaximal expression of ISGs such as MHC class I. Our data demonstrate that IRF-1 competes with ICSBP for the binding to the ISRE element, resulting in the alleviation of ICSBP repression. Thus, the magnitude of ISGs expression is a result of a fine balance between positive and negative regulators.

摘要

干扰素刺激基因(ISGs)在其启动子区域含有一个称为干扰素共有序列(ICS)的共同DNA基序,该基序使基因具有对干扰素的反应性。已经描述了不同的能够与ICS相互作用的转录因子。此前,我们报道了一种能够与ICS结合的因子(ICSBP)的克隆,该因子在DNA结合结构域与其他三种ICS结合因子,即IRF-1、IRF-2和ISGF3γ具有相似性。ICSBP在造血细胞中组成性表达,其表达可被γ干扰素进一步诱导。它是ISGs的一种负向反式作用调节因子;然而,在细胞长时间暴露于两种类型的干扰素后,其作用会减弱。在本通讯中,我们表明细胞短时间暴露于干扰素(预刺激)足以减轻ICSBP介导的抑制作用。此外,将预刺激的细胞暴露于合成双链RNA(聚I:聚C)会导致ICSBP抑制作用完全消除。为了阐明控制ICSBP这种条件性抑制的分子机制,我们证明了转录激活因子IRF-1的直接参与。我们推测造血细胞中ICSBP的组成性表达介导了诸如MHC I类等ISGs的亚最大表达。我们的数据表明,IRF-1与ICSBP竞争结合ISRE元件,从而减轻ICSBP的抑制作用。因此,ISGs表达的程度是正负调节因子之间精细平衡的结果。

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