Dryja T P, Finn J T, Peng Y W, McGee T L, Berson E L, Yau K W
Berman-Gund Laboratory for the Study of Retinal Degenerations, Harvard Medical School, Massachusetts Eye and Ear Infirmary, Boston 02114, USA.
Proc Natl Acad Sci U S A. 1995 Oct 24;92(22):10177-81. doi: 10.1073/pnas.92.22.10177.
Mutations in the genes encoding two proteins of the retinal rod phototransduction cascade, opsin and the beta subunit of rod cGMP phosphodiesterase, cause retinitis pigmentosa (RP) in some families. Here we report defects in a third member of this biochemical pathway in still other patients with this disease. We screened 94 unrelated patients with autosomal dominant RP and 173 unrelated patients with autosomal recessive RP for mutations in the gene encoding the alpha subunit of the rod cGMP-gated cation channel. Five mutant sequences cosegregated with disease among four unrelated families with autosomal recessive RP. Two of these were nonsense mutations early in the reading frame (Glu76End and Lys139End) and one was a deletion encompassing most if not all of the transcriptional unit; these three alleles would not be expected to encode a functional channel. The remaining two mutations were a missense mutation (Ser316Phe) and a frameshift [Arg654(1-bp del)] mutation truncating the last 32 aa in the C terminus. The latter two mutations were expressed in vitro and found to encode proteins that were predominantly retained inside the cell instead of being targeted to the plasma membrane. We conclude that the absence or paucity of functional cGMP-gated cation channels in the plasma membrane is deleterious to rod photoreceptors and is an uncommon cause of RP.
视网膜视杆光转导级联反应中的两种蛋白质(视蛋白和视杆细胞环磷酸鸟苷磷酸二酯酶的β亚基)的编码基因发生突变,在一些家族中会导致色素性视网膜炎(RP)。在此,我们报告在患有这种疾病的其他患者中,该生化途径的第三个成员存在缺陷。我们对94名非亲缘性常染色体显性RP患者和173名非亲缘性常染色体隐性RP患者进行了视杆细胞环磷酸鸟苷门控阳离子通道α亚基编码基因的突变筛查。在四个非亲缘性常染色体隐性RP家族中,五个突变序列与疾病共分离。其中两个是读码框早期的无义突变(Glu76End和Lys139End),一个是缺失突变,涵盖了大部分(如果不是全部)转录单元;预计这三个等位基因不会编码功能性通道。其余两个突变是错义突变(Ser316Phe)和移码突变[Arg654(1-bp del)],该突变截断了C末端的最后32个氨基酸。后两个突变在体外表达,发现编码的蛋白质主要保留在细胞内,而不是靶向质膜。我们得出结论,质膜中功能性环磷酸鸟苷门控阳离子通道的缺失或缺乏对视杆光感受器是有害的,并且是RP的一个不常见病因。