Kajiwara Moto, Terada Tomohiro, Asaka Jun-ichi, Ogasawara Ken, Katsura Toshiya, Ogawa Osamu, Fukatsu Atsushi, Doi Toshio, Inui Ken-ichi
Department of Pharmacy, Kyoto University Hospital, Faculty of Medicine, Kyoto University, Sakyo-ku, Kyoto 606-8507, Japan.
Am J Physiol Renal Physiol. 2007 Nov;293(5):F1564-70. doi: 10.1152/ajprenal.00322.2007. Epub 2007 Sep 12.
A H+/organic cation antiporter (multidrug and toxin extrusion 1: MATE1/SLC47A1) plays important roles in the tubular secretion of various clinically important cationic drugs such as cimetidine. We have recently found that the regulation of this transporter greatly affects the pharmacokinetic properties of cationic drugs in vivo. No information is available about the regulatory mechanisms for the MATE1 gene. In the present study, therefore, we examined the gene regulation of human (h) and rat (r) MATE1, focusing on basal expression. A deletion analysis suggested that the regions spanning -65/-25 and -146/-38 were essential for the basal transcriptional activity of the hMATE1 and rMATE1 promoter, respectively, and that both regions contained putative Sp1-binding sites. Functional involvement of Sp1 was confirmed by Sp1 overexpression, a mutational analysis of Sp1-binding sites, mithramycin A treatment, and an electrophoretic mobility shift assay. Furthermore, we found a single nucleotide polymorphism (SNP) in the promoter region of hMATE1 (G-32A), which belongs to a Sp1-binding site. The allelic frequency of this rSNP was 3.7%, and Sp1-binding and promoter activity were significantly decreased. This is the first study to clarify the transcriptional mechanisms of the MATE1 gene and to identify a SNP affecting the promoter activity of hMATE1.
H⁺/有机阳离子逆向转运体(多药及毒素外排蛋白1:MATE1/SLC47A1)在多种临床重要阳离子药物(如西咪替丁)的肾小管分泌中发挥重要作用。我们最近发现,该转运体的调控对阳离子药物在体内的药代动力学特性有很大影响。目前尚无关于MATE1基因调控机制的信息。因此,在本研究中,我们以基础表达为重点,研究了人(h)和大鼠(r)MATE1的基因调控。缺失分析表明,跨度为-65/-25和-146/-38的区域分别对hMATE1和rMATE1启动子的基础转录活性至关重要,且这两个区域均含有假定的Sp1结合位点。通过Sp1过表达、Sp1结合位点的突变分析、光神霉素A处理和电泳迁移率变动分析证实了Sp1的功能参与。此外,我们在hMATE1启动子区域发现了一个单核苷酸多态性(SNP)(G-32A),其属于一个Sp1结合位点。该rSNP的等位基因频率为3.7%,且Sp1结合和启动子活性显著降低。这是首次阐明MATE1基因转录机制并鉴定出影响hMATE1启动子活性的SNP的研究。