Upreti Meenakshi, Kumar Sanjiv, Rath Pramod C
Molecular Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, 110067, New Delhi, India.
Biochem Biophys Res Commun. 2004 Feb 13;314(3):737-44. doi: 10.1016/j.bbrc.2003.12.156.
Interferon regulatory factor-1 (IRF-1) is a transcription factor exhibiting functional diversity because of its ability to activate transcription from promoters of several IRF-1-dependent genes. It is a modular protein, where the overall structure is not essential for function of its individual domains. A comparison of the mouse and human IRF-1 amino acid sequences enabled us to identify a stretch of six amino acids (198-203) within the transactivation domain of mouse IRF-1, 198MQMDII(203) to be different from that of the human IRF-1, 197IPVEVV(202). This indicated a possible functional significance of the six amino acid stretches in the two IRF-1 molecules. The murine IRF-1 sequence at 198-203 (MQMDII) was replaced by IPVEVV. Recombinant wild type mouse IRF-1 with 198MQMDII(203) and its mutant form with 198IPVEVV(203), expressed as GST-IRF-1-fusion proteins, showed similar DNA-binding activity. However, ectopic expression of the wild type and mutant IRF-1 in the human embryonic kidney (HEK-293) cells showed the effect of replacement of this region on expression of a few chromosomal genes that are transcriptionally activated by IRF-1 viz. IFN-beta, iNOS, and COX-2 genes. In our study, expression of wild type IRF-1 activated these genes as judged by RT-PCR but the mutant IRF-1 did not show this effect. Thus, the MQMDII (198-203 a.a.) region of mouse IRF-1 has a functional context in relation to expression of IRF-1-inducible genes.
干扰素调节因子-1(IRF-1)是一种转录因子,因其能够激活多个IRF-1依赖性基因启动子的转录而表现出功能多样性。它是一种模块化蛋白质,其整体结构对其各个结构域的功能并非必不可少。通过比较小鼠和人类IRF-1的氨基酸序列,我们能够确定小鼠IRF-1反式激活结构域内一段六个氨基酸(198-203)的序列,即198MQMDII(203),与人类IRF-1的该序列197IPVEVV(202)不同。这表明这六个氨基酸序列在两个IRF-1分子中可能具有功能意义。将小鼠IRF-1在198-203位的序列(MQMDII)替换为IPVEVV。以GST-IRF-1融合蛋白形式表达的具有198MQMDII(203)的重组野生型小鼠IRF-1及其具有198IPVEVV(203)的突变形式,显示出相似的DNA结合活性。然而,野生型和突变型IRF-1在人胚肾(HEK-293)细胞中的异位表达表明,该区域的替换对一些由IRF-1转录激活的染色体基因的表达有影响,即IFN-β、诱导型一氧化氮合酶(iNOS)和环氧化酶-2(COX-2)基因。在我们的研究中,通过逆转录-聚合酶链反应(RT-PCR)判断,野生型IRF-1的表达激活了这些基因,但突变型IRF-1没有显示出这种效果。因此,小鼠IRF-1的MQMDII(198-203位氨基酸)区域在IRF-1诱导基因的表达方面具有功能背景。