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来自共享双向启动子的人类TAP1和LMP2基因的协同调控。

Coordinate regulation of the human TAP1 and LMP2 genes from a shared bidirectional promoter.

作者信息

Wright K L, White L C, Kelly A, Beck S, Trowsdale J, Ting J P

机构信息

University of North Carolina Lineberger Comprehensive Cancer Center, Department of Microbiology-Immunology, Chapel Hill 27599, USA.

出版信息

J Exp Med. 1995 Apr 1;181(4):1459-71. doi: 10.1084/jem.181.4.1459.

Abstract

Recently, four genes (TAP1, TAP2, LMP2, LMP7) involved or potentially involved in the processing and transport of major histocompatibility complex class I-associated antigen to the endoplasmic reticulum have been identified. We now report the initial characterization of the bidirectional promoter for the human transporter associated with antigen processing 1 (TAP1) and low molecular mass polypeptide 2 (LMP2) genes. These genes are divergently transcribed from a central promoter region of only 593 bp. Functional analysis using a bidirectional reporter system demonstrates the minimal 593-bp promoter is sufficient for concurrent expression in both directions. There is no TATA box homology at either end but there is a prevalence of GC boxes. Transcription is initiated at multiple sites for each gene without any of the TAP1 transcripts overlapping with the LMP2 transcripts. The region proximal to the TAP1 gene is required for maximal basal level expression of not only TAP1 but also LMP2. Furthermore, this region is necessary for tumor necrosis factor alpha (TNF-alpha) induction of both genes. Site-specific mutations of an NF-kappa B element in the TAP1 proximal region blocked induction by TNF-alpha in both the TAP1 and LMP2 directions. An adjacent GC box was required for basal expression of both genes as well as augmenting the TNF-alpha induction of the distal LMP2 gene. In vivo genomic foot-printing of this region revealed strong protein/DNA interactions at the NF-kappa B and GC box consensus sequences. In vitro binding studies confirmed the capacity of the NF-kappa B site to bind p50/p65 and p52/p65 heterodimers and of the GC box to bind Sp1. Thus, the promoter elements proximal to the TAP1 gene play a significant role in regulating basal and induced expression of both TAP1 and LMP2. The findings presented in this report clearly link LMP2 expression with TAP1 expression and provide additional suggestive evidence linking LMP2 to class I antigen presentation.

摘要

最近,已鉴定出四个与主要组织相容性复合体I类相关抗原加工和转运至内质网有关或可能有关的基因(TAP1、TAP2、LMP2、LMP7)。我们现在报告人抗原加工相关转运蛋白1(TAP1)和低分子量多肽2(LMP2)基因双向启动子的初步特征。这些基因从仅593 bp的中央启动子区域向两个方向转录。使用双向报告系统进行的功能分析表明,最小的593 bp启动子足以支持两个方向的同时表达。两端均无TATA盒同源性,但富含GC盒。每个基因的转录起始于多个位点,且TAP1转录本与LMP2转录本均无重叠。TAP1基因近端区域不仅是TAP1最大基础水平表达所必需的,也是LMP2最大基础水平表达所必需的。此外,该区域对于肿瘤坏死因子α(TNF-α)诱导这两个基因也是必需的。TAP1近端区域中一个NF-κB元件的位点特异性突变阻断了TNF-α在TAP1和LMP2两个方向上的诱导作用。一个相邻的GC盒对于这两个基因的基础表达以及增强远端LMP2基因的TNF-α诱导作用是必需的。该区域的体内基因组足迹分析揭示了在NF-κB和GC盒共有序列处存在强烈的蛋白质/DNA相互作用。体外结合研究证实了NF-κB位点结合p50/p65和p52/p65异二聚体的能力以及GC盒结合Sp1的能力。因此,TAP1基因近端的启动子元件在调节TAP1和LMP2的基础表达和诱导表达中起重要作用。本报告中的研究结果清楚地将LMP2表达与TAP1表达联系起来,并提供了将LMP2与I类抗原呈递联系起来的额外暗示性证据。

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