首页> 外文期刊>Journal of the American Society of Nephrology: JASN >New mutations in the AQP2 gene in nephrogenic diabetes insipidus resulting in functional but misrouted water channels.
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New mutations in the AQP2 gene in nephrogenic diabetes insipidus resulting in functional but misrouted water channels.

机译:肾源性尿崩症中AQP2基因的新突变导致功能正常但路线错误的水通道。

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摘要

Nephrogenic diabetes insipidus (NDI) is characterized by the inability of the kidney to concentrate urine in response to vasopressin. The autosomal recessive form of NDI is caused by mutations in the AQP2 gene, encoding the vasopressin-regulated water channel of the kidney collecting duct. This report presents three new mutations in the AQP2 gene that cause NDI, resulting in A147T-, T126M-, or N68S-substituted AQP2 proteins. Expression of the A147T and T126M mutant AQP2 proteins in Xenopus oocytes revealed a relatively small, but significant increase in water permeability, whereas the water permeability of N68S expressing oocytes was not increased. cRNA encoding missense and wild-type AQP2 were equally stable in oocytes. Immunoblots of oocyte lysates showed that only the A147T mutant protein was less stable than wild-type AQP2. The mutant AQP2 proteins showed, in addition to the wild-type 29-kd band, an endoplasmic reticulum-retarded form of AQP2 of approximately 32 kd. Immunoblotting and immunocytochemistry demonstrated only intense labeling of the plasma membranes of oocytes expressing wild-type AQP2. In summary, two mutant AQP2 proteins encoded in NDI are functional water channels. Therefore, the major cause underlying autosomal recessive NDI is the misrouting of AQP2 mutant proteins.
机译:肾性尿崩症(NDI)的特征是肾脏无法浓缩血管对加压素的反应。 NDI的常染色体隐性形式是由AQP2基因的突变引起的,该基因编码加压素调节肾脏收集管的水通道。该报告提出了导致NDI的AQP2基因中的三个新突变,从而导致了A147T-,T126M-或N68S取代的AQP2蛋白。在非洲爪蟾卵母细胞中表达A147T和T126M突变体AQP2蛋白表明相对较小,但水渗透率显着增加,而表达N68S的卵母细胞的水渗透率没有增加。编码错义和野生型AQP2的cRNA在卵母细胞中同样稳定。卵母细胞裂解物的免疫印迹显示,只有A147T突变蛋白比野生型AQP2稳定。除野生型29-kd带外,突变型AQP2蛋白还显示内质网延迟形式的AQP2约为32 kd。免疫印迹和免疫细胞化学显示仅表达野生型AQP2的卵母细胞质膜的强烈标记。总之,NDI中编码的两个突变AQP2蛋白是功能性水通道。因此,潜在的常染色体隐性NDI的主要原因是AQP2突变蛋白的错误路由。

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