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Further characterization of ATP6V0A2-related autosomal recessive cutis laxa

机译:ATP6V0A2相关的常染色体隐性角质松弛的进一步表征

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Autosomal recessive cutis laxa (ARCL) syndromes are phenotypically overlapping, but genetically heterogeneous disorders. Mutations in the ATP6V0A2 gene were found to underlie both, autosomal recessive cutis laxa type 2 (ARCL2), Debré type, and wrinkly skin syndrome (WSS). The ATP6V0A2 gene encodes the a2 subunit of the V-type H +-ATPase, playing a role in proton translocation, and possibly also in membrane fusion. Here, we describe a highly variable phenotype in 13 patients with ARCL2, including the oldest affected individual described so far, who showed strikingly progressive dysmorphic features and heterotopic calcifications. In these individuals we identified 17 ATP6V0A2 mutations, 14 of which are novel. Furthermore, we demonstrate a localization of ATP6V0A2 at the Golgi-apparatus and a loss of the mutated ATP6V0A2 protein in patients' dermal fibroblasts. Investigation of brefeldin A-induced Golgi collapse in dermal fibroblasts as well as in HeLa cells deficient for ATP6V0A2 revealed a delay, which was absent in cells deficient for the ARCL-associated proteins GORAB or PYCR1. Furthermore, fibroblasts from patients with ATP6V0A2 mutations displayed elevated TGF-β signalling and increased TGF-β1 levels in the supernatant. Our current findings expand the genetic and phenotypic spectrum and suggest that, besides the known glycosylation defect, alterations in trafficking and signalling processes are potential key events in the pathogenesis of ATP6V0A2-related ARCL.
机译:常染色体隐性角质松弛(ARCL)综合征在表型上是重叠的,但在遗传上是异质性疾病。发现ATP6V0A2基因的突变是常染色体隐性角质松弛2型(ARCL2),Debré型和皱纹皮肤综合症(WSS)的基础。 ATP6V0A2基因编码V型H + -ATPase的a2亚基,在质子转运中也可能在膜融合中起作用。在这里,我们描述了13名ARCL2患者的高度可变的表型,其中包括迄今为止描述的受影响最大的个体,他们表现出惊人的进行性畸形特征和异位钙化。在这些个体中,我们鉴定出17个ATP6V0A2突变,其中14个是新突变。此外,我们证明了高尔基体中ATP6V0A2的定位以及患者皮肤成纤维细胞中ATP6V0A2突变蛋白的丢失。对布雷菲德菌素A诱导的真皮成纤维细胞以及缺乏ATP6V0A2的HeLa细胞中的高尔基体崩溃的研究表明,存在延迟,而缺少与ARCL相关的蛋白质GORAB或PYCR1的细胞缺乏。此外,来自具有ATP6V0A2突变的患者的成纤维细胞在上清液中显示出升高的TGF-β信号传导和升高的TGF-β1水平。我们目前的发现扩展了遗传和表型谱,并表明,除了已知的糖基化缺陷外,运输和信号传导过程的改变是ATP6V0A2相关ARCL发病机理中的潜在关键事件。

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