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首页> 外文期刊>Human Molecular Genetics >Respiratory chain enzyme deficiency induces mitochondrial location of actin-binding gelsolin to modulate the oligomerization of VDAC complexes and cell survival
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Respiratory chain enzyme deficiency induces mitochondrial location of actin-binding gelsolin to modulate the oligomerization of VDAC complexes and cell survival

机译:呼吸链酶缺乏诱导肌动蛋白结合露珠蛋白的线粒体位置调节Vdac复合物的低聚和细胞存活率

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Despite considerable knowledge on the genetic basis of mitochondrial disorders, their pathophysiological consequences remain poorly understood. We previously used two-dimensional difference gel electrophoresis analyses to define a protein profile characteristic for respiratory chain complex III-deficiency that included a significant overexpression of cytosolic gelsolin (GSN), a cytoskeletal protein that regulates the severing and capping of the actin filaments. Biochemical and immunofluorescence assays confirmed a specific increase of GSN levels in the mitochondria from patients' fibroblasts and from transmitochondrial cybrids with complex III assembly defects. A similar effect was obtained in control cells upon treatment with antimycin A in a dose-dependent manner, showing that the enzymatic inhibition of complex III is sufficient to promote the mitochondrial localization of GSN. Mitochondrial subfractionation showed the localization of GSN to the mitochondrial outer membrane, where it interacts with the voltage-dependent anion channel protein 1 (VDAC1). In control cells, VDAC1 was present in five stable oligomeric complexes, which showed increased levels and a modified distribution pattern in the complex III-deficient cybrids. Downregulation of GSN expression induced cell death in both cell types, in parallel with the specific accumulation of VDAC1 dimers and the release of mitochondrial cytochrome c into the cytosol, indicating a role for GSN in the oligomerization of VDAC complexes and in the prevention of apoptosis. Our results demonstrate that respiratory chain complex III dysfunction induces the physiological upregulation and mitochondrial location of GSN, probably to promote cell survival responses through the modulation of the oligomeric state of the VDAC complexes.
机译:尽管对线粒体疾病的遗传基础具有相当大的知识,但它们的病理生理后果仍然明白很差。我们以前使用的二维差异凝胶电泳分析来定义呼吸链复合体III缺乏的蛋白质曲线特征,其包括细胞溶质凝溶胶蛋白(GSN)的显着过度表达,一种调节肌动蛋白长丝的切割和封盖的细胞骨骼蛋白质。生物化学和免疫荧光测定证实了患者成纤维细胞的线粒体中GSN水平的特异性增加,以及具有复杂III组装缺陷的传输型糖细胞。在用依赖性方式处理后对照细胞中获得类似的效果,表明复合III的酶促抑制足以促进GSN的线粒体定位。线粒体子分布显示GSN对线粒体外膜的定位,其中与电压依赖性阴离子通道蛋白1(Vdac1)相互作用。在对照细胞中,Vdac1存在于五个稳定的低聚络合物中,其显示在复杂的III缺陷型糖的水平增加和改性分布模式。在两个细胞类型中,GSN表达诱导细胞死亡的下调,与Vdac1二聚体的特定积累平行,并将线粒体细胞色素C的释放到胞粒醇中,表明GSN在Vdac复合物的低聚中的作用和预防凋亡。我们的结果表明,呼吸链复合物III功能障碍诱导GSN的生理上调和线粒体位置,可能是通过调节VDAC复合物的低聚状态来促进细胞存活响应。

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