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Human SLC26A1 Gene Variants: A Pilot Study

机译:人SLC26A1基因变异:一项初步研究

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摘要

Kidney stones are a global health problem, incurring massive health costs annually. Why stones recur in many patients remains unknown but likely involves environmental, physiological, and genetic factors. The solute linked carrier (SLC) 26A1 gene has previously been linked to kidney stones in mice. SLC26A1 encodes the sulfate anion transporter 1 (SAT1) protein, and its loss in mice leads to hyperoxaluria and calcium oxalate renal stones. To investigate the possible involvement of SAT1 in human urolithiasis, we screened the SLC26A1 gene in a cohort of 13 individuals with recurrent calcium oxalate urolithiasis, which is the commonest type. DNA sequence analyses showed missense mutations in seven patients: one individual was heterozygous R372H; 4 individuals were heterozygous Q556R; one patient was homozygous Q556R; and one patient with severe nephrocalcinosis (requiring nephrectomy) was homozygous Q556R and heterozygous M132T. The M132 amino acid in human SAT1 is conserved with 15 other species and is located within the third transmembrane domain of the predicted SAT1 protein structure, suggesting that this amino acid may be important for SAT1 function. These initial findings demonstrate genetic variants in SLC26A1 of recurrent stone formers and warrant wider independent studies of SLC26A1 in humans with recurrent calcium oxalate stones.
机译:肾结石是一个全球性的健康问题,每年要付出巨额的健康费用。在许多患者中为什么会出现结石仍然未知,但可能涉及环境,生理和遗传因素。溶质连接的载体(SLC)26A1基因先前已与小鼠的肾结石相连。 SLC26A1编码硫酸根阴离子转运蛋白1(SAT1)蛋白,在小鼠体内丢失会导致高草酸尿症和草酸钙肾结石。为了调查SAT1可能参与人类尿路结石,我们在13名患有复发性草酸钙尿路结石的人群中筛选了SLC26A1基因,这是最常见的类型。 DNA序列分析显示7例患者的错义突变:1人为杂合R372H; 1人为杂合R372H。 Q556R是4个杂合子。一名患者是纯合子Q556R;一名严重肾钙化病患者(需要肾脏切除术)为纯合子Q556R和杂合子M132T。人SAT1中的M132氨基酸与其他15个物种保守,并且位于预测的SAT1蛋白结构的第三个跨膜结构域内,表明该氨基酸可能对SAT1的功能很重要。这些初步发现证明了复发性结石形成者SLC26A1的遗传变异,并保证了对患有复发性草酸钙结石的人进行SLC26A1的更广泛的独立研究。

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