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人干扰素共有序列结合蛋白是干扰素诱导基因共有的增强子元件的负调节因子。

Human interferon consensus sequence binding protein is a negative regulator of enhancer elements common to interferon-inducible genes.

作者信息

Weisz A, Marx P, Sharf R, Appella E, Driggers P H, Ozato K, Levi B Z

机构信息

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

出版信息

J Biol Chem. 1992 Dec 15;267(35):25589-96.

PMID:1460054
Abstract

The promoter regions of many interferon-inducible genes share a short DNA sequence motif, termed the interferon consensus sequence (ICS) to which several regulatory proteins bind. A murine cDNA which encodes an ICS binding protein has been reported (M-ICSBP). The cloning of the human homologue of ICSBP (H-ICSBP) is described. H-ICSBP shares high sequence homology with its murine cognate. The derived sequence of H-ICSBP reveals restricted homology within the first 120 amino acids to three other interferon regulatory factors, IRF-1, IRF-2, and ISGF3 gamma. Truncated ICSBP lacking the first 33 amino-terminal amino acids fails to bind to the ICS, indicating that at least part of the DNA binding domain is located within the well conserved amino terminus. H-ICSBP is expressed exclusively in cell lines of hematopoietic origin. The results of transient transfection assays carried out either in hematopoietic or nonhematopoietic cells suggest that ICSBP acts as a negative regulatory factor on ICS-containing promoters. Furthermore, either interferon-gamma (IFN-gamma) or IFN-beta can alleviate the repression mediated by ICSBP. Therefore, ICSBP may be involved in maintaining submaximal transcriptional activity of IFN-inducible genes in hematopoietic cells. IFN treatment would then alleviate repression allowing maximal transcriptional activity of these genes.

摘要

许多干扰素诱导基因的启动子区域共享一个短的DNA序列基序,称为干扰素共有序列(ICS),几种调节蛋白可与之结合。已报道了一种编码ICS结合蛋白的鼠源cDNA(M-ICSBP)。本文描述了人源ICSBP(H-ICSBP)同源物的克隆。H-ICSBP与其鼠源同源物具有高度的序列同源性。H-ICSBP的推导序列显示,在最初的120个氨基酸内,与其他三种干扰素调节因子IRF-1、IRF-2和ISGF3γ具有有限的同源性。缺少前33个氨基末端氨基酸的截短型ICSBP无法与ICS结合,这表明至少部分DNA结合结构域位于高度保守的氨基末端内。H-ICSBP仅在造血来源的细胞系中表达。在造血细胞或非造血细胞中进行的瞬时转染试验结果表明,ICSBP对含ICS的启动子起负调节因子的作用。此外,γ干扰素(IFN-γ)或β干扰素均可减轻ICSBP介导的抑制作用。因此,ICSBP可能参与维持造血细胞中干扰素诱导基因的次最大转录活性。干扰素治疗随后可减轻抑制作用,使这些基因具有最大转录活性。

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