首页> 外文期刊>The American Journal of Human Genetics >Mutations in RAB28, encoding a farnesylated small gtpase, are associated with autosomal-recessive cone-rod dystrophy
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Mutations in RAB28, encoding a farnesylated small gtpase, are associated with autosomal-recessive cone-rod dystrophy

机译:编码法呢基化的小gtpase的RAB28突变与常染色体隐性锥柄营养不良有关

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The majority of the genetic causes of autosomal-recessive (ar) cone-rod dystrophy (CRD) are currently unknown. A combined approach of homozygosity mapping and exome sequencing revealed a homozygous nonsense mutation (c.565C>T [p.Glu189]) in RAB28 in a German family with three siblings with arCRD. Another homozygous nonsense mutation (c.409C>T [p.Arg137]) was identified in a family of Moroccan Jewish descent with two siblings affected by arCRD. All five affected individuals presented with hyperpigmentation in the macula, progressive loss of the visual acuity, atrophy of the retinal pigment epithelium, and severely reduced cone and rod responses on the electroretinogram. RAB28 encodes a member of the Rab subfamily of the RAS-related small GTPases. Alternative RNA splicing yields three predicted protein isoforms with alternative C-termini, which are all truncated by the nonsense mutations identified in the arCRD families in this report. Opposed to other Rab GTPases that are generally geranylgeranylated, RAB28 is predicted to be farnesylated. Staining of rat retina showed localization of RAB28 to the basal body and the ciliary rootlet of the photoreceptors. Analogous to the function of other RAB family members, RAB28 might be involved in ciliary transport in photoreceptor cells. This study reveals a crucial role for RAB28 in photoreceptor function and suggests that mutations in other Rab proteins may also be associated with retinal dystrophies.
机译:常染色体隐性(ar)锥杆营养不良(CRD)的大多数遗传原因目前未知。纯合子作图和外显子组测序相结合的方法显示,在一个带有三个arCRD兄弟姐妹的德国家庭中,RAB28中存在纯合性无义突变(c.565C> T [p.Glu189])。在摩洛哥犹太人后裔的一个家族中鉴定出另一个纯合的无意义突变(c.409C> T [p.Arg137]),其中两个兄弟姐妹受arCRD影响。所有五个受影响的个体均表现为黄斑色素沉着过度,视力进行性丧失,视网膜色素上皮萎缩以及视网膜电图上视锥和视杆反应严重降低。 RAB28编码与RAS相关的小GTP酶的Rab亚家族的成员。替代性RNA剪接产生具有替代性C末端的三种预测蛋白同工型,这些均被本报告中arCRD家族中鉴定出的无义突变所截断。与通常被香​​叶基香叶基化的其他Rab GTPA酶相反,RAB28被预测为法尼基化的。大鼠视网膜染色显示RAB28定位于感光体的基体和睫状小根。与其他RAB家族成员的功能相似,RAB28可能参与感光细胞的睫状转运。这项研究揭示了RAB28在光感受器功能中的关键作用,并暗示其他Rab蛋白的突变也可能与视网膜营养不良有关。

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