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首页> 外文期刊>Human Molecular Genetics >A dominant mutation in MAPKAPK3, an actor of p38 signaling pathway, causes a new retinal dystrophy involving Bruch's membrane and retinal pigment epithelium
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A dominant mutation in MAPKAPK3, an actor of p38 signaling pathway, causes a new retinal dystrophy involving Bruch's membrane and retinal pigment epithelium

机译:MAPKAPK3的显性突变是p38信号通路的参与者,引起新的视网膜营养不良,涉及Bruch膜和视网膜色素上皮

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摘要

Inherited retinal dystrophies are clinically and genetically heterogeneous with significant number of cases remaining genetically unresolved. We studied a large family from the West Indies islands with a peculiar retinal disease, the Martinique crinkled retinal pigment epitheliopathy that begins around the age of 30 with retinal pigment epithelium (RPE) and Bruch's membrane changes resembling a dry desert land and ends with a retinitis pigmentosa. Whole-exome sequencing identified a heterozygous c.518T>C (p.Leu173Pro) mutation in MAPKAPK3 that segregates with the disease in 14 affected and 28 unaffected siblings from three generations. This unknown variant is predicted to be damaging by bioinformatic predictive tools and the mutated protein to be non-functional by crystal structure analysis. MAPKAPK3 is a serine/threonine protein kinase of the p38 signaling pathway that is activated by a variety of stress stimuli and is implicated in cellular responses and gene regulation. In contrast to other tissues, MAPKAPK3 is highly expressed in the RPE, suggesting a crucial role for retinal physiology. Expression of the mutated allele in HEK cells revealed a mislocalization of the protein in the cytoplasm, leading to cytoskeleton alteration and cytodieresis inhibition. In Mapkapk3-/- mice, Bruch's membrane is irregular with both abnormal thickened and thinned portions. In conclusion, we identified the first pathogenic mutation in MAPKAPK3 associated with a retinal disease. These findings shed new lights on Bruch's membrane/RPE pathophysiology and will open studies of this signaling pathway in diseases with RPE and Bruch's membrane alterations, such as age-related macular degeneration.
机译:遗传性视网膜营养不良在临床和遗传上都是异质的,许多病例在遗传上仍未解决。我们研究了来自西印度群岛的一个大家庭,患有一种特殊的视网膜疾病,马提尼克岛皱纹状视网膜色素上皮病,该病始于30岁左右,视网膜色素上皮(RPE),而Bruch的膜变化类似于干旱的沙漠地带,并以视网膜炎结束色素沉着。全外显子组测序鉴定出MAPKAPK3中的杂合性c.518T> C(p.Leu173Pro)突变,该突变与疾病隔离在三个世代的14个患病兄弟姐妹和28个未患病兄弟姐妹中。通过生物信息学预测工具预测该未知变体将造成破坏,而通过晶体结构分析,该突变蛋白将失去功能。 MAPKAPK3是p38信号通路的丝氨酸/苏氨酸蛋白激酶,可被多种应激刺激激活,并参与细胞反应和基因调控。与其他组织相比,MAPKAPK3在RPE中高度表达,表明对于视网膜生理至关重要。突变等位基因在HEK细胞中的表达表明该蛋白在细胞质中的定位不正确,从而导致细胞骨架的改变和对细胞增殖抑制的抑制。在Mapkapk3-/-小鼠中,布鲁赫膜是不规则的,具有异常增厚和变薄的部分。总之,我们确定了与视网膜疾病相关的MAPKAPK3的第一个致病突变。这些发现为布鲁赫膜/ RPE的病理生理学开辟了新的亮点,并将开启这种信号通路在患有RPE和布鲁赫膜改变的疾病中的研究,例如与年龄有关的黄斑变性。

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