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Supramolecular Organization of the Respiratory Chain in Neurospora crassa Mitochondria

机译:景天孢子线粒体呼吸链的超分子组织

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The existence of specific respiratory supercomplexes in mitochondria of most organisms has gained much momentum. However, its functional significance is still poorly understood. The availability of many deletion mutants in complex I (NADH:ubiquinone oxidoreductase) of Neurospora crassa, distinctly affected in the assembly process, offers unique opportunities to analyze the biogenesis of respiratory supercomplexes. Herein, we describe the role of complex I in assembly of respiratory complexes and supercomplexes as suggested by blue and colorless native polyacrylamide gel electrophoresis and mass spectrometry analyses of mildly solubilized mitochondria from the wild type and eight deletion mutants. As an important refinement of the fungal respirasome model, we found that the standard respiratory chain of N. crassa comprises putative complex I dimers in addition to I-III-IV and III-IV supercomplexes. Three Neurospora mutants able to assemble a complete complex I, lacking only the disrupted subunit, have respiratory supercomplexes, in particular I-III-IV supercomplexes and complex I dimers, like the wild-type strain. Furthermore, we were able to detect the I-III-IV supercomplexes in the nuo51 mutant with no overall enzymatic activity, representing the first example of inactive respirasomes. In addition, III-IV supercomplexes were also present in strains lacking an assembled complex I, namely, in four membrane arm subunit mutants as well as in the peripheral arm nuo30.4 mutant. In membrane arm mutants, high-molecular-mass species of the 30.4-kDa peripheral arm subunit comigrating with III-IV supercomplexes and/or the prohibitin complex were detected. The data presented herein suggest that the biogenesis of complex I is linked with its assembly into supercomplexes.
机译:大多数生物的线粒体中存在特定的呼吸超复合物,这一势头得到了很大的发展。但是,其功能意义仍知之甚少。在组装过程中受到明显影响的 Neurospora crassa 的复合物I(NADH:泛醌氧化还原酶)中许多缺失突变体的可用性,为分析呼吸超复合物的生物发生提供了独特的机会。在这里,我们描述了复合物I在呼吸复合物和超复合物组装中的作用,如蓝色和无色的天然聚丙烯酰胺凝胶电泳以及质谱分析轻度溶解的野生型线粒体和8个缺失突变体所暗示的那样。作为真菌呼吸小体模型的重要改进,我们发现了 N的标准呼吸链。 crassa 除I-III-IV和III-IV超复合物外,还包含推定的复合物I二聚体。能够组装完整复合物I的三个 Neurospora 突变体仅缺少被破坏的亚基,它们具有呼吸超复合物,尤其是I-III-IV超复合物和复合物I二聚体,如野生型菌株。此外,我们能够在无总体酶活性的nuo51突变体中检测到I-III-IV超复合物,代表了无活性呼吸体的第一个实例。另外,III-IV超复合物也存在于缺乏组装的复合物I的菌株中,即在四个膜臂亚基突变体以及外周臂nuo30.4突变体中。在膜臂突变体中,检测到了与III-IV超复合物和/或禁止素复合物结合的30.4-kDa外围臂亚基的高分子物质。本文提供的数据表明,复合物I的生物发生与其组装成超复合物有关。

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