Beck L, Markovich D
Department of Physiology and Pharmacology, the University of Queensland, Brisbane, Queensland 4072, Australia.
J Biol Chem. 2000 Apr 21;275(16):11880-90. doi: 10.1074/jbc.275.16.11880.
NaSi-1 is a Na(+)-sulfate cotransporter expressed on the apical membrane of the renal proximal tubule and plays an important role in sulfate reabsorption. To understand the molecular mechanisms that mediate the regulation of NaSi-1, we have isolated and characterized the mouse NaSi-1 cDNA (mNaSi-1), gene (Nas1), and promoter region and determined Nas1 chromosomal localization. The mNaSi-1 cDNA encodes a protein of 594 amino acids with 13 putative transmembrane segments, inducing high affinity Na(+)-dependent transport of sulfate in Xenopus oocytes. Three different mNaSi-1 transcripts derived from alternative polyadenylation and splicing were identified in kidney and intestine. The Nas1 gene is a single copy gene comprising 15 exons spread over 75 kilobase pairs that maps to mouse chromosome 6. Transcription initiation occurs from a single site, 29 base pairs downstream to a TATA box-like sequence. The promoter is AT-rich (61%), contains a number of well characterized cis-acting elements, and can drive basal transcriptional activity in opossum kidney cells but not in COS-1 or NIH3T3 cells. We demonstrated that 1,25-dihydroxyvitamin D(3) stimulated the transcriptional activity of the Nas1 promoter in transiently transfected opossum kidney cells. This study represents the first characterization of the genomic organization of a Na(+)-sulfate cotransporter gene. It also provides the basis for a detailed analysis of Nas1 gene regulation and the tools required for assessing Nas1 role in sulfate homeostasis using targeted gene manipulation in mice.
NaSi-1是一种在肾近端小管顶端膜上表达的钠-硫酸盐共转运体,在硫酸盐重吸收中起重要作用。为了了解介导NaSi-1调节的分子机制,我们分离并鉴定了小鼠NaSi-1 cDNA(mNaSi-1)、基因(Nas1)和启动子区域,并确定了Nas1的染色体定位。mNaSi-1 cDNA编码一个由594个氨基酸组成的蛋白质,有13个推定的跨膜片段,可在非洲爪蟾卵母细胞中诱导高亲和力的钠依赖性硫酸盐转运。在肾脏和肠道中鉴定出了三种源自可变聚腺苷酸化和剪接的不同mNaSi-1转录本。Nas1基因是一个单拷贝基因,由15个外显子组成,分布在75千碱基对中,定位于小鼠6号染色体。转录起始于单个位点,位于类似TATA盒序列下游29个碱基对处。该启动子富含AT(61%),包含许多特征明确的顺式作用元件,可在负鼠肾细胞中驱动基础转录活性,但在COS-1或NIH3T3细胞中则不能。我们证明,1,25-二羟基维生素D3在瞬时转染的负鼠肾细胞中刺激了Nas1启动子的转录活性。这项研究首次对钠-硫酸盐共转运体基因的基因组组织进行了表征。它还为详细分析Nas1基因调控以及使用小鼠靶向基因操作评估Nas1在硫酸盐稳态中的作用所需的工具提供了基础。