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Ets结构域转录因子PE1通过拮抗关键AP1元件处的蛋白质-DNA相互作用来抑制人间质胶原酶启动子活性。

Ets domain transcription factor PE1 suppresses human interstitial collagenase promoter activity by antagonizing protein-DNA interactions at a critical AP1 element.

作者信息

Bidder M, Loewy A P, Latifi T, Newberry E P, Ferguson G, Willis D M, Towler D A

机构信息

Department of Molecular Biology and Pharmacology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Biochemistry. 2000 Aug 1;39(30):8917-28. doi: 10.1021/bi000343+.

Abstract

In MC3T3E1 calvarial osteoblasts, fibroblast growth factor receptor (FGFR) signaling elicits multiple transcriptional responses, including upregulation of the interstitial collagenase/matrix metalloproteinase 1 (MMP1) promoter. FGF responsiveness maps to a bipartite Ets/AP1 element at base pairs -123 to -61 in the human MMP1 promoter. Under basal conditions, the MMP1 promoter is repressed in part via protein-DNA interactions at the Ets cognate, and minimally two mechanisms convey MMP1 promoter upregulation by FGF2: (a) transcriptional activation via Fra1/c-Jun containing DNA-protein interactions at the AP1 cognate and (b) derepression of promoter activity regulated by the Ets cognate. To identify osteoblast Ets repressors that potentially participate in gene expression in the osteoblast, we performed reverse transcription-polymerase chain reaction (RT-PCR) analysis of mRNA isolated from MC3T3E1 cells, using degenerative amplimers to the conserved Ets DNA binding domain to survey the Ets genes expressed by these cells. Six distinct Ets mRNAs were identified: Ets2, Fli1, GABPalpha, SAP1, Elk1, and PE1. Of these, only PE1 has extensive homology to the known Ras-regulated Ets transcriptional repressor, ERF. Therefore, we cloned and characterized PE1 cDNA from a mouse brain library and performed functional analysis of this particular Ets family member. A 2 kb transcript was isolated from brain that encodes a approximately 57 kDa protein; the predicted protein contains the known N-terminal Ets domain of PE1 and a novel C-terminal domain with signficant homology to murine ERF. The murine PE1 open reading frame (ORF) is much larger than the previously reported human PE1 ORF. Consistent with this, affinity-purified rabbit anti-mouse PE1 antibody specifically recognizes an approximately 66 kDa protein present only in the nuclear fraction of MC3T3E1 osteoblasts. Recombinant PE1 binds authentic AGGAWG Ets DNA cognates, and transient transfection studies demonstrate that PE1 represses MMP1 promoter activity. Surprisingly, although deletion of the MMP1 Ets cognate at nucleotides -88 to -83 abrogates FGF2 induction, it does not prevent suppression of the AP1-dependent MMP1 promoter by PE1. PE1 regulation maps to the MMP1 promoter region -75 to -61, suggesting that PE1 suppresses transcription via protein-protein interactions with AP1. Consistent with this, recombinant GST-PE1 specifically inhibits the formation of protein-DNA interactions on the MMP1 AP1 site (-72 to -66) when present in an admixture with MC3T3E1 crude nuclear extract. In toto, these data indicate that PE1 participates in the transcriptional regulation of the MMP1 promoter in osteoblasts. As observed with other transcriptional repressors of MMP1 gene expression, transcriptional suppression by PE1 occurs via inhibition of AP1-dependent promoter activity.

摘要

在MC3T3E1颅盖成骨细胞中,成纤维细胞生长因子受体(FGFR)信号引发多种转录反应,包括间质胶原酶/基质金属蛋白酶1(MMP1)启动子的上调。FGF反应性定位于人类MMP1启动子中碱基对-123至-61处的双联体Ets/AP1元件。在基础条件下,MMP1启动子部分通过Ets同源位点的蛋白质-DNA相互作用被抑制,并且至少有两种机制通过FGF2上调MMP1启动子:(a)通过在AP1同源位点含有Fra1/c-Jun的DNA-蛋白质相互作用进行转录激活,以及(b)解除由Ets同源位点调节的启动子活性的抑制。为了鉴定可能参与成骨细胞基因表达的成骨细胞Ets抑制因子,我们使用针对保守Ets DNA结合结构域的简并扩增子对从MC3T3E1细胞分离的mRNA进行逆转录-聚合酶链反应(RT-PCR)分析,以检测这些细胞表达的Ets基因。鉴定出六种不同的Ets mRNA:Ets2、Fli1、GABPα、SAP1、Elk1和PE1。其中,只有PE1与已知的Ras调节的Ets转录抑制因子ERF具有广泛的同源性。因此,我们从小鼠脑文库中克隆并鉴定了PE1 cDNA,并对这个特定的Ets家族成员进行了功能分析。从脑中分离出一个2 kb的转录本,其编码一种约57 kDa的蛋白质;预测的蛋白质包含PE1已知的N端Ets结构域和一个与小鼠ERF具有显著同源性的新型C端结构域。小鼠PE1开放阅读框(ORF)比先前报道的人类PE1 ORF大得多。与此一致的是,亲和纯化的兔抗小鼠PE1抗体特异性识别仅存在于MC3T3E1成骨细胞核部分中的一种约66 kDa的蛋白质。重组PE1结合真实的AGGAWG Ets DNA同源位点,瞬时转染研究表明PE1抑制MMP1启动子活性。令人惊讶的是,尽管在核苷酸-88至-83处删除MMP1 Ets同源位点可消除FGF2诱导,但它并不能阻止PE1对AP1依赖性MMP1启动子的抑制。PE1调节定位于MMP1启动子区域-75至-61,表明PE1通过与AP1的蛋白质-蛋白质相互作用抑制转录。与此一致的是,当与MC3T3E1粗核提取物混合存在时,重组GST-PE1特异性抑制MMP1 AP1位点(-72至-66)上蛋白质-DNA相互作用的形成。总的来说,这些数据表明PE1参与成骨细胞中MMP1启动子的转录调节。正如在其他MMP1基因表达的转录抑制因子中观察到的那样,PE1的转录抑制是通过抑制AP1依赖性启动子活性发生的。

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