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介导脂多糖诱导单核细胞中RANTES/CCL5表达的启动子模块和C/EBP元件的分子及计算机模拟特征分析

Molecular and in silico characterization of a promoter module and C/EBP element that mediate LPS-induced RANTES/CCL5 expression in monocytic cells.

作者信息

Fessele S, Boehlk S, Mojaat A, Miyamoto N G, Werner T, Nelson E L, Schlondorff D, Nelson P J

机构信息

Medizinische Poliklinik, Klinikum Innenstadt, Ludwig-Maximilians-University of Munich, Germany.

出版信息

FASEB J. 2001 Mar;15(3):577-9. doi: 10.1096/fj.00-0459fje. Epub 2001 Jan 5.

Abstract

The chemokine RANTES/CCL5 is a proinflammatory agent produced by a variety of tissues in response to specific stimuli. In human monocytes, RANTES/CCL5 transcription is up-regulated rapidly and transiently in response to LPS. We describe here two regions that help control LPS-driven transcription from the human RANTES/CCL5 promoter in monocytic cells. These sites were analyzed by using DNase I footprinting, transient transfection assays, site-directed mutagenesis, and EMSA. RANTES site E (R(E), -125/-99) constitutively binds C/EBP proteins in monocytic Mono Mac 6 cells. Mutation of region R(E) led to a significant (40%-50%) reduction in LPS-induced promoter reporter activity. Region R(AB) is composed of tandem kB-like elements R(A) and R(B) (-73/-34). These sites working in concert act as an LPS-responsive promoter module. R(A) constitutively binds Sp1, and Rel p50/p65 following LPS stimulation. Either factor can mediate transcriptional effects at R(A). Induced Rel p50/p50 binding to site R(B) is required for LPS regulation of RANTES/CCL5 transcription. A series of computer models based on the RANTES/CCL5 promoter were generated to represent the organization of these functional elements. The models could identify LPS-regulated promoters in human, other vertebrate, and viral sequences in various databases.

摘要

趋化因子RANTES/CCL5是多种组织在特定刺激下产生的促炎因子。在人类单核细胞中,RANTES/CCL5转录在脂多糖(LPS)刺激下迅速且短暂地上调。我们在此描述了两个有助于控制单核细胞中LPS驱动的人类RANTES/CCL5启动子转录的区域。通过使用DNA酶I足迹法、瞬时转染分析、定点诱变和电泳迁移率变动分析(EMSA)对这些位点进行了分析。RANTES位点E(R(E),-125/-99)在单核细胞系Mono Mac 6细胞中持续结合C/EBP蛋白。区域R(E)的突变导致LPS诱导的启动子报告基因活性显著降低(40%-50%)。区域R(AB)由串联的类κB元件R(A)和R(B)(-73/-34)组成。这些协同作用的位点充当LPS反应性启动子模块。R(A)持续结合Sp1,并在LPS刺激后结合Rel p50/p65。任一因子均可介导R(A)处的转录效应。RANTES/CCL5转录的LPS调节需要诱导的Rel p50/p50结合到位点R(B)。基于RANTES/CCL5启动子生成了一系列计算机模型,以展示这些功能元件的组织方式。这些模型能够识别各种数据库中人类、其他脊椎动物和病毒序列中的LPS调节启动子。

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