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人肽转运体PEPT1启动子的特性:Sp1作为人PEPT1的基础转录调节因子发挥作用。

Characterization of the human peptide transporter PEPT1 promoter: Sp1 functions as a basal transcriptional regulator of human PEPT1.

作者信息

Shimakura Jin, Terada Tomohiro, Katsura Toshiya, Inui Ken-Ichi

机构信息

Dept. of Pharmacy, Kyoto Univ. Hospital, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2005 Sep;289(3):G471-7. doi: 10.1152/ajpgi.00025.2005. Epub 2005 May 19.

Abstract

H+-coupled peptide transporter 1 (PEPT1, SLC15A1) localized at the brush-border membranes of intestinal epithelial cells plays an important role in the intestinal absorption of small peptides and a variety of peptidemimetic drugs. PEPT1 is regulated by various factors, including hormones, dietary conditions, some pharmaceutics, and diurnal rhythm. But there is little information about the transcriptional regulation of PEPT1. In the present study, therefore, we cloned the human (h)PEPT1 promoter region and examined its promoter activity using a human intestinal cell line, Caco-2. Deletion analysis of the hPEPT1 promoter suggested that the region spanning -172 to -35 bp was essential for basal transcriptional activity. This region lacked a TATA-box but contained some GC-rich sites that supposedly bind with the transcription factor Sp1. Mutational analysis revealed that three of these putative Sp1 sites contributed to the transcriptional activity. EMSA showed that Sp1 bound to two GC-rich sites. Furthermore, inhibition of Sp1 binding by mithramycin A treatment significantly reduced the transcriptional activity. Finally, overexpression of Sp1 increased the transcriptional activity in a dose-dependent manner. This study reports the first characterization of the hPEPT1 promoter and shows the significant role of Sp1 in the basal transcriptional regulation of hPEPT1.

摘要

位于肠上皮细胞刷状缘膜上的H⁺偶联肽转运体1(PEPT1,SLC15A1)在小肽及多种拟肽药物的肠道吸收中发挥重要作用。PEPT1受多种因素调控,包括激素、饮食条件、一些药物及昼夜节律。但关于PEPT1转录调控的信息较少。因此,在本研究中,我们克隆了人(h)PEPT1启动子区域,并使用人肠细胞系Caco-2检测其启动子活性。对hPEPT1启动子的缺失分析表明,-172至-35 bp区域对基础转录活性至关重要。该区域缺乏TATA框,但含有一些富含GC的位点,推测与转录因子Sp1结合。突变分析显示,这些假定的Sp1位点中的三个对转录活性有贡献。电泳迁移率变动分析表明Sp1与两个富含GC的位点结合。此外,用放线菌素A处理抑制Sp1结合可显著降低转录活性。最后,Sp1的过表达以剂量依赖方式增加转录活性。本研究首次对hPEPT1启动子进行了表征,并显示了Sp1在hPEPT1基础转录调控中的重要作用。

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