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首页> 外文期刊>Hypertension research: Official journal of the Japanese Society of Hypertension >Gitelman's Syndrome: characterization of a novel c.1181G A point mutation and functional classification of the known mutations
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Gitelman's Syndrome: characterization of a novel c.1181G A point mutation and functional classification of the known mutations

机译:Gitelman综合征:描述小说c.1181G祝辞分类已知的突变

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摘要

We have investigated the mechanisms by which a novel missense point mutation (c.1181GA) found in two sisters causes Gitelman's syndrome by impairing the sodium chloride co-transporter (NCC, encoded by SLC12A3 gene) function. The cDNA and in vitro transcribed mRNA of either wild-type or mutated SLC12A3 were transfected into HEK293 cells and injected into Xenopus laevis oocytes, respectively. The expression, maturation, trafficking, and function of the mutated and wild-type NCC were assessed by Western blotting, immunohistochemistry and Na-22(+) uptake studies. By immunoblotting of lysates from HEK293 cells and oocytes expressing wild-type NCC, two NCC-related bands of approximately 130 kDa and 115 kDa, corresponding to fully and core-glycosylated NCC, respectively, were identified. In contrast, the mutant NCC only showed a single band of approximately 115 kDa, indicating impaired maturation of the protein. Moreover, oocytes injected with wild-type NCC showed thiazide-sensitive Na-22(+) uptake, which was absent in those injected with the mutant NCC. The novel mutation was discussed in the context of the functionally characterized NCC mutations causing Gitelman's syndrome, which fit into five classes. In conclusion, the functional characterization of this novel Gly394Asp NCC and its localization on the NCC structure, alongside that of previously known mutations causing Gitelman's syndrome, may provide novel information on the function of the different domains of the human NCC.
机译:我们已经调查的机制小说错义突变点(c.1181G)在两姐妹发现导致Gitelman综合征通过削弱氯化钠co-transporter由SLC12A3基因编码(NCC)函数。和体外转录mRNA的野生型或突变SLC12A3 HEK293转染细胞和注入非洲爪蟾蜍光滑的卵母细胞,分别。人口贩卖和变异函数和野生型NCC被西方墨点法评估,免疫组织化学和Na-22(+)吸收的研究。从HEK293细胞溶解产物的免疫印迹和卵母细胞表达野生型NCC,两个NCC-related乐队大约130 kDa115 kDa,相应的充分和core-glycosylated NCC分别识别。显示一个乐队的大约115 kDa,表明受损蛋白质的成熟。此外,卵母细胞注入了野生型NCC显示thiazide-sensitive Na-22(+)吸收在那些注射了突变NCC缺席。讨论了小说突变的上下文功能特征的NCC突变导致Gitelman综合征,适合5类。这部小说描述Gly394Asp NCC和对NCC的定位结构,与之前所知的突变造成的Gitelman综合征,可能提供的小说不同的功能的信息人类NCC的域。

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