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来自X连锁低磷血症(Hyp)小鼠的肾上皮细胞原代培养物表现出磷酸盐转运和维生素D代谢缺陷。

Primary cultures of renal epithelial cells from X-linked hypophosphatemic (Hyp) mice express defects in phosphate transport and vitamin D metabolism.

作者信息

Bell C L, Tenenhouse H S, Scriver C R

机构信息

McGill University-Montreal Children's Hospital Research Institute, Department of Pediatrics, Quebec.

出版信息

Am J Hum Genet. 1988 Sep;43(3):293-303.

Abstract

Mutation in a gene (symbol Hyp) on the X chromosome causes hypophosphatemia in the mouse. The murine phenotype is a counterpart of X-linked hypophosphatemia in man. Both exhibit impaired renal reabsorption of phosphate in vivo. In vitro studies in the Hyp mouse have shown decreased Na+-dependent phosphate transport at the brush border membrane and abnormal mitochondrial vitamin D metabolism. To determine whether the mutant renal phenotype is intrinsic to the kidney or dependent upon putative extrinsic humoral factor(s) for its expression, we established primary cultures of renal epithelial cells from normal and Hyp male mouse kidneys. The cells are derived from proximal tubule. Initial uptake rates of phosphate and alpha-methyl-D-glucopyranoside (alpha-MG), a metabolically inert analogue of D-glucose, were measured simultaneously in confluent monolayers exhibiting epithelial polarity and tight junctions. The mean phosphate/alpha-MG uptake ratio in Hyp cultures was 82% of that in normal cells (P less than 0.01, n = 96). Moreover, the production of 24,25-dihydroxyvitamin D3 was significantly elevated in confluent cultures of Hyp cells relative to normal cells. These results imply that the Hyp gene is expressed in situ in renal epithelium and suggest that humoral factors are not necessary for the mutant renal phenotype in X-linked hypophosphatemia of mouse and man.

摘要

X染色体上一个基因(符号为Hyp)发生突变会导致小鼠出现低磷血症。小鼠的这种表型与人的X连锁低磷血症相对应。两者在体内均表现出肾对磷酸盐的重吸收受损。对Hyp小鼠的体外研究表明,其刷状缘膜上钠依赖性磷酸盐转运减少,且线粒体维生素D代谢异常。为了确定突变的肾脏表型是肾脏固有的,还是依赖于假定的外在体液因子来表达,我们从正常和Hyp雄性小鼠肾脏建立了肾上皮细胞原代培养物。这些细胞来源于近端小管。在呈现上皮极性和紧密连接的汇合单层中,同时测量磷酸盐和α-甲基-D-吡喃葡萄糖苷(α-MG,D-葡萄糖的代谢惰性类似物)的初始摄取率。Hyp培养物中的平均磷酸盐/α-MG摄取率为正常细胞的82%(P<0.01,n = 96)。此外,相对于正常细胞,Hyp细胞汇合培养物中24,25-二羟维生素D3的产生显著升高。这些结果表明Hyp基因在肾上皮细胞中原位表达,并提示在小鼠和人的X连锁低磷血症中,体液因子对于突变的肾脏表型并非必需。

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