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Structure, organization and tissue expression of the pig SLC13A1 and SLC13A4 sulfate transporter genes

机译: SLC13A1 SLC13A4 硫酸盐转运蛋白基因的结构,组织和组织表达

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Sulfate is an obligate nutrient for fetal growth and development. In mice, the renal Slc13a1 sulfate transporter maintains high maternal circulating levels of sulfate in pregnancy, and the placental Slc13a4 sulfate transporter mediates sulfate supply to the fetus. Both of these genes have been linked to severe embryonal defects and fetal loss in mice. However, the clinical significance of SLC13A1 and SLC13A4 in human gestation is unknown. One approach towards understanding the potential involvement of these genes in human fetal pathologies is to use an animal model, such as the pig, which mimics the developmental trajectory of the human fetus more closely than the previously studied mouse models. In this study, we determined the tissue distribution of pig SLC13A1 and SLC13A4 mRNA, and compared the gene, cDNA and protein sequences of the pig, human and mouse homologues. Pig SLC13A1 mRNA was expressed in the ileum and kidney, whereas pig SLC13A4 mRNA was expressed in the placenta, choroid plexus and eye, which is similar to the tissue distribution in human and mouse. The pig SLC13A1 gene contains 15 exons spread over 76 kb on chromosome 8, and encodes a protein of 594 amino acids that shares 90% and 85% identity with the human and mouse homologues, respectively. The pig SLC13A4 gene is located approximately 11 Mb from SLC13A1 on chromosome 8, and contains 16 exons spanning approximately 70 kb. The pig SLC13A4 protein contains 626 amino acids that share 91% and 90% identity with human and mouse homologues, respectively. The 5’-flanking region of SLC13A1 contains several putative transcription factor binding sites, including GATA-1, GATA-3, Oct1 and TATA-box consensus sequences, which are conserved in the homologous human and mouse sequences. The 5’-flanking sequence of SLC13A4 contains multiple putative transcription factor consensus sites, including GATA-1, TATA-box and Vitamin D responsive elements. This is the first report to define the tissue distribution of pig SLC13A1 and SLC13A4 mRNAs, and compare the gene, cDNA, 5’-flanking region and protein sequences to human and mouse. Highlights ? Pig SLC13A1 and SLC13A4 are highly conserved with human and mouse homologues. ? Pig SLC13A1 and SLC13A4 proteins share high identity with human and mouse sequences. ? Tissue distribution of pig SLC13A1 and SLC26A1 mRNA is similar to human and mouse.
机译:硫酸盐是胎儿生长发育的必需营养素。在小鼠中,肾脏Slc13a1硫酸盐转运蛋白在孕妇体内维持着较高的母亲循环硫酸盐水平,而胎盘Slc13a4硫酸盐转运蛋白可调节胎儿的硫酸盐供应。这两个基因都与小鼠严重的胚胎缺陷和胎儿丢失有关。但是,SLC13A1和SLC13A4在人类妊娠中的临床意义尚不清楚。理解这些基因在人类胎儿病理中潜在参与的一种方法是使用一种动物模型,例如猪,它比以前研究的小鼠模型更模仿人类胎儿的发育轨迹。在这项研究中,我们确定了猪SLC13A1和SLC13A4 mRNA的组织分布,并比较了猪,人和小鼠同源物的基因,cDNA和蛋白质序列。猪SLC13A1 mRNA在回肠和肾脏中表达,而猪SLC13A4 mRNA在胎盘,脉络丛和眼睛中表达,这与人和小鼠的组织分布相似。猪SLC13A1基因包含15个外显子,分布在8号染色体的76 kb上,编码594个氨基酸的蛋白质,分别与人和小鼠的同源物具有90%和85%的同一性。猪SLC13A4基因位于8号染色体上,距SLC13A1约11 Mb,包含16个外显子,跨度约70 kb。猪SLC13A4蛋白包含626个氨基酸,分别与人和小鼠同源物具有91%和90%的同一性。 SLC13A1的5'侧翼区域含有几个假定的转录因子结合位点,包括GATA-1,GATA-3,Oct1和TATA-box共有序列,在同源的人和小鼠序列中是保守的。 SLC13A4的5'侧翼序列包含多个推定的转录因子共有位点,包括GATA-1,TATA-box和维生素D反应元件。这是第一份定义猪SLC13A1和SLC13A4 mRNA的组织分布,并将基因,cDNA,5'侧翼区和蛋白质序列与人和小鼠进行比较的报告。强调 ?猪SLC13A1和SLC13A4与人和小鼠的同源物高度保守。 ?猪SLC13A1和SLC13A4蛋白与人和小鼠序列具有高度同一性。 ?猪SLC13A1和SLC26A1 mRNA的组织分布与人和小鼠相似。

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