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首页> 外文期刊>Molecular genetics and metabolism >Fabry disease: reduced activities of respiratory chain enzymes with decreased levels of energy-rich phosphates in fibroblasts.
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Fabry disease: reduced activities of respiratory chain enzymes with decreased levels of energy-rich phosphates in fibroblasts.

机译:法布里病:成纤维细胞中呼吸链酶的活性降低,而富含能量的磷酸盐水平降低。

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摘要

Fabry disease (FD, MIM 301500) caused by a deficient activity of alpha-galactosidase A is characterized by intralysosomal storage of glycosphingolipids. Main clinical features are paresthesia, hypohidrosis, angiokeratoma, renal insufficiency, and cardiovascular or cerebral complications. The exact pathogenesis is unclear. Beside mechanical storage biochemical factors might play a role. As FD is a multisystemic disorder and mitochondrial dysfunction has been described in patients with neuronal ceroidlipofuscinosis (another lysosomal storage disease) we examined mitochondrial function in fibroblasts from patients with FD. RESULTS: Activities of respiratory chain enzymes I, IV, and V were significantly (p < 0.01) lower in FD-cells. Mitochondrial recovery was unchanged as judged by the activity of the mitochondrial marker enzyme citratesynthase, cellular protein content was not significantly different. CP, ADP, and AMP concentrations were significantly (p < 0.01) lower in FD-cells. ATP was slightly, but not significantly reduced (p = 0.045). CONCLUSION: Organ dysfunction in FD may not only be explained by mechanical storage of glycosphingolipids. As in NCL, lysosomal storage material may lead to mitochondrial dysfunction with a reduction of respiratory chain enzyme activities and a subsequent drop in cellular levels of energy-rich phosphates.
机译:由α-半乳糖苷酶A活性不足引起的法布里病(FD,MIM 301500)的特征在于糖鞘脂的溶酶体内储存。主要临床特征是感觉异常,多汗症,血管角膜瘤,肾功能不全以及心血管或脑部并发症。确切的发病机理尚不清楚。除了机械存储外,生化因素可能也起作用。由于FD是一种多系统疾病,并且在神经元类脂褐质沉着病(另一种溶酶体贮积病)患者中已经描述了线粒体功能障碍,因此我们检查了FD患者的成纤维细胞中的线粒体功能。结果:FD细胞中呼吸链酶I,IV和V的活性显着降低(p <0.01)。根据线粒体标记酶柠檬酸合酶的活性判断,线粒体的恢复没有变化,细胞蛋白含量没有显着差异。在FD细胞中,CP,ADP和AMP的浓度显着降低(p <0.01)。 ATP略有降低,但没有显着降低(p = 0.045)。结论:FD的器官功能障碍不仅可以通过糖鞘脂的机械储存来解释。如在NCL中一样,溶酶体贮藏材料可能导致线粒体功能障碍,呼吸链酶活性降低,随后富含能量的磷酸盐的细胞水平下降。

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