首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Mapping the gene causing X-linked recessive nephrolithiasis to Xp11.22 by linkage studies.
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Mapping the gene causing X-linked recessive nephrolithiasis to Xp11.22 by linkage studies.

机译:通过连锁研究将引起X连锁隐性肾病的基因定位到Xp11.22。

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摘要

X-linked recessive nephrolithiasis is associated with kidney stones and renal tubular dysfunction in childhood progressing to renal failure in adulthood. The primary defect causing this renal tubular disorder is unknown and determining the chromosomal location of the mutant gene would represent an important step toward defining the biochemical basis. We have performed linkage studies in 102 members (10 affected males, 47 unaffected males, 15 obligate heterozygote females, and 30 unaffected females) from five generations of one family. As genetic markers we used 10 cloned human X chromosome fragments identifying restriction fragment length polymorphisms and seven pairs of oligonucleotide primers identifying microsatellite polymorphisms. Linkage with the locus DXS255 was established with a peak LOD score = 5.91 at 3.6% recombination, thereby localizing the X-linked recessive nephrolithiasis gene to the pericentromeric region of the short arm of the X chromosome (Xp11.22). Multilocus analysis indicated that the mutant gene was distal to DXS255 but proximal to the Duchenne muscular dystrophy locus on Xp. Thus, the gene that causes X-linked recessive nephrolithiasis maps to the pericentromeric region of the short arm of the X chromosome (Xp11.22), and further characterization of this gene will help to elucidate the factors controlling renal tubular function and mineral homeostasis.
机译:X连锁隐性肾结石症与儿童肾结石和肾小管功能障碍有关,儿童成年后发展为肾衰竭。导致该肾小管疾病的主要缺陷是未知的,确定突变基因的染色体位置将代表迈向确定生化基础的重要一步。我们已经对来自一个家庭五代的102位成员(10位受影响的男性,47位未受影响的男性,15位专性杂合子女性和30位未受影响的女性)进行了连锁研究。作为遗传标记,我们使用了10个克隆的人类X染色体片段来识别限制性片段长度多态性,并使用了7对寡核苷酸引物来识别微卫星多态性。建立与基因座DXS255的连锁,重组时3.6%的LOD峰值= 5.91,从而将X连锁的隐性肾结石病基因定位于X染色体短臂的着丝粒区域(Xp11.22)。多基因座分析表明该突变基因位于DXS255的远端,但位于Xp上的Duchenne肌营养不良基因座的近端。因此,引起X连锁隐性肾结石病的基因定位到X染色体短臂的着丝粒区域(Xp11.22),该基因的进一步表征将有助于阐明控制肾小管功能和矿物质稳态的因素。

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