Ross I L, Yue X, Ostrowski M C, Hume D A
Department of Microbiology, University of Queensland, Brisbane 4072, Australia.
J Biol Chem. 1998 Mar 20;273(12):6662-9. doi: 10.1074/jbc.273.12.6662.
Numerous macrophage-restricted promoters lack TATA boxes or other conventional initiation motifs but contain high affinity binding sites (PU boxes) for the macrophage-restricted Ets family transcription factor PU.1. In RAW264 murine macrophages, multimerized PU boxes were not active as enhancers when placed upstream of a minimal promoter. To model their role in basal promoters, we inserted PU boxes into a promoterless luciferase reporter plasmid. Two sites, regardless of orientation, were necessary and sufficient to direct reporter gene expression in transient transfections of the RAW264 macrophage-like cell line. This activity was absent in transfected 3T3 fibroblasts but could be induced by PU.1 coexpression. Both the model promoter and the macrophage-specific mouse and human c-fms promoters were activated in RAW264 cells by other Ets family transcription factors, Ets-2 and Elf-1. In fibroblasts, the effects of PU.1 and Ets-2 were multiplicative, whereas overexpression of PU.1 in RAW264 cells reduced activation of c-fms or model promoters by the other Ets factors. The PU.1 and Ets-2 binding sites of the mouse c-fms promoter have been located by DNase footprinting. A conserved Ets-like motif at the transcription site, CAGGAAC, that bound only weakly to PU.1, was identified as an additional critical basal c-fms promoter element. Comparison of studies on the model promoter, c-fms and other myeloid promoters provides evidence for a conserved mechanism that involves three separate and functionally distinct Ets-like motifs.
许多巨噬细胞特异性启动子缺乏TATA盒或其他传统的起始基序,但含有巨噬细胞特异性Ets家族转录因子PU.1的高亲和力结合位点(PU盒)。在RAW264小鼠巨噬细胞中,多聚化的PU盒置于最小启动子上游时,作为增强子没有活性。为了模拟它们在基础启动子中的作用,我们将PU盒插入无启动子的荧光素酶报告质粒中。在RAW264巨噬细胞样细胞系的瞬时转染中,两个位点无论其方向如何,对于指导报告基因表达都是必需且充分的。这种活性在转染的3T3成纤维细胞中不存在,但可由PU.1共表达诱导。模型启动子以及巨噬细胞特异性的小鼠和人c-fms启动子在RAW264细胞中都被其他Ets家族转录因子Ets-2和Elf-1激活。在成纤维细胞中,PU.1和Ets-2的作用是相乘的,而在RAW264细胞中PU.1的过表达会降低其他Ets因子对c-fms或模型启动子的激活。小鼠c-fms启动子的PU.1和Ets-2结合位点已通过DNA酶足迹法定位。在转录位点发现了一个保守的Ets样基序CAGGAAC,它与PU.1的结合较弱,被确定为c-fms启动子的另一个关键基础元件。对模型启动子、c-fms和其他髓系启动子的研究比较为一种涉及三个独立且功能不同的Ets样基序的保守机制提供了证据。