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普遍存在的转录因子USF在细胞增殖和转录激活中的细胞类型依赖性活性。

Cell-type-dependent activity of the ubiquitous transcription factor USF in cellular proliferation and transcriptional activation.

作者信息

Qyang Y, Luo X, Lu T, Ismail P M, Krylov D, Vinson C, Sawadogo M

机构信息

Department of Molecular Genetics, University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.

出版信息

Mol Cell Biol. 1999 Feb;19(2):1508-17. doi: 10.1128/MCB.19.2.1508.

Abstract

USF1 and USF2 are basic helix-loop-helix transcription factors implicated in the control of cellular proliferation. In HeLa cells, the USF proteins are transcriptionally active and their overexpression causes marked growth inhibition. In contrast, USF overexpression had essentially no effect on the proliferation of the Saos-2 osteosarcoma cell line. USF1 and USF2 also lacked transcriptional activity in Saos-2 cells when assayed by transient cotransfection with USF-dependent reporter genes. Yet, there was no difference in the expression, subcellular localization, or DNA-binding activity of the USF proteins in HeLa and Saos-2 cells. Furthermore, Gal4-USF1 and Gal4-USF2 fusion proteins activated transcription similarly in both cell lines. Mutational analysis and domain swapping experiments revealed that the small, highly conserved USF-specific region (USR) was responsible for the inactivity of USF in Saos-2 cells. In HeLa, the USR serves a dual function. It acts as an autonomous transcriptional activation domain at promoters containing an initiator element and also induces a conformational change that is required for USF activity at promoters lacking an initiator. Taken together, these results suggest a model in which the transcriptional activity of the USF proteins, and consequently their antiproliferative activity, is tightly controlled by interaction with a specialized coactivator that recognizes the conserved USR domain and, in contrast to USF, is not ubiquitous. The activity of USF is therefore context dependent, and evidence for USF DNA-binding activity in particular cells is insufficient to indicate USF function in transcriptional activation and growth control.

摘要

USF1和USF2是参与细胞增殖调控的碱性螺旋-环-螺旋转录因子。在HeLa细胞中,USF蛋白具有转录活性,其过表达会导致明显的生长抑制。相比之下,USF过表达对Saos-2骨肉瘤细胞系的增殖基本没有影响。当通过与USF依赖性报告基因进行瞬时共转染检测时,USF1和USF2在Saos-2细胞中也缺乏转录活性。然而,HeLa细胞和Saos-2细胞中USF蛋白的表达、亚细胞定位或DNA结合活性并无差异。此外,Gal4-USF1和Gal4-USF2融合蛋白在两种细胞系中激活转录的方式相似。突变分析和结构域交换实验表明,小的、高度保守的USF特异性区域(USR)是导致USF在Saos-2细胞中无活性的原因。在HeLa细胞中,USR具有双重功能。它在含有起始子元件的启动子处作为自主转录激活结构域起作用,并且还诱导一种构象变化,这是在缺乏起始子的启动子处USF活性所必需的。综上所述,这些结果提示了一种模型,即USF蛋白的转录活性及其抗增殖活性通过与一种识别保守USR结构域的特殊共激活因子相互作用而受到严格控制,并且与USF不同,该共激活因子并非普遍存在。因此,USF的活性取决于环境,特定细胞中USF DNA结合活性的证据不足以表明USF在转录激活和生长控制中的功能。

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