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Recessive Mutations of the Gene TRPM1 Abrogate ON Bipolar Cell Function and Cause Complete Congenital Stationary Night Blindness in Humans

机译:TRPM1基因的隐性突变消除了双极细胞功能,并导致人类完全先天性静止性夜盲

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摘要

Complete congenital stationary night blindness (cCSNB) is associated with loss of function of rod and cone ON bipolar cells in the mammalian retina. In humans, mutations in NYX and GRM6 have been shown to cause the condition. Through the analysis of a consanguineous family and screening of nine additional pedigrees, we have identified three families with recessive mutations in the gene TRPM1 encoding transient receptor potential cation channel, subfamily M, member 1, also known as melastatin. A number of other variants of unknown significance were found. All patients had myopia, reduced central vision, nystagmus, and electroretinographic evidence of ON bipolar cell dysfunction. None had abnormalities of skin pigmentation, although other skin conditions were reported. RNA derived from human retina and skin was analyzed and alternate 5′ exons were determined. The most 5′ exon is likely to harbor an initiation codon, and the protein sequence is highly conserved across vertebrate species. These findings suggest an important role of this specific cation channel for the normal function of ON bipolar cells in the human retina.
机译:完全性先天性夜盲症(cCSNB)与哺乳动物视网膜中视杆和视锥ON双极细胞的功能丧失有关。在人类中,已经证明NYX和GRM6的突变会导致这种情况。通过分析近亲家族并筛选出另外9个家系,我们确定了TRPM1编码瞬时受体潜在阳离子通道的基因TRPM1的三个隐性突变家族,亚家族M,成员1,也称为褪黑素。发现了许多未知重要性的其他变体。所有患者均患有近视眼,中央视力下降,眼球震颤以及视网膜电图检查显示双相细胞功能障碍。没有人有皮肤色素沉着的异常,尽管有其他皮肤状况的报道。分析了来自人类视网膜和皮肤的RNA,并确定了其他5'外显子。最5'外显子可能带有一个起始密码子,并且该蛋白序列在整个脊椎动物中高度保守。这些发现表明该特定阳离子通道对于人视网膜中ON双极细胞的正常功能具有重要作用。

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