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首页> 外文期刊>Journal of Molecular Biology >Phosphatidylethanolamine and cardiolipin differentially affect the stability of mitochondrial respiratory chain supercomplexes
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Phosphatidylethanolamine and cardiolipin differentially affect the stability of mitochondrial respiratory chain supercomplexes

机译:磷脂酰乙醇胺和心磷脂差异影响线粒体呼吸链超复合物的稳定性

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The mitochondrial inner membrane contains two non-bilayer-forming phospholipids, phosphatidylethanolamine (PE) and cardiolipin (CL). Lack of CL leads to destabilization of respiratory chain supercomplexes, a reduced activity of cytochrome c oxidase, and a reduced inner membrane potential Δψ. Although PE is more abundant than CL in the mitochondrial inner membrane, its role in biogenesis and assembly of inner membrane complexes is unknown. We report that similar to the lack of CL, PE depletion resulted in a decrease of Δψ and thus in an impaired import of preproteins into and across the inner membrane. The respiratory capacity and in particular the activity of cytochrome c oxidase were impaired in PE-depleted mitochondria, leading to the decrease of Δψ. In contrast to depletion of CL, depletion of PE did not destabilize respiratory chain supercomplexes but favored the formation of larger supercomplexes (megacomplexes) between the cytochrome bc 1 complex and the cytochrome c oxidase. We conclude that both PE and CL are required for a full activity of the mitochondrial respiratory chain and the efficient generation of the inner membrane potential. The mechanisms, however, are different since these non-bilayer-forming phospholipids exert opposite effects on the stability of respiratory chain supercomplexes.
机译:线粒体内膜包含两个非双层形成的磷脂,磷脂酰乙醇胺(PE)和心磷脂(CL)。 CL的缺乏导致呼吸链超复合物的不稳定,细胞色素C氧化酶的活性降低和内膜电位Δψ降低。尽管PE在线粒体内膜中比CL丰富,但它在内膜复合物的生物发生和组装中的作用尚不清楚。我们报告说,类似于缺乏CL,PE耗竭导致Δψ降低,从而导致前蛋白进入内膜和跨内膜的导入受到损害。 PE缺失的线粒体的呼吸能力特别是细胞色素c氧化酶的活性受损,导致Δψ降低。与CL耗竭相反,PE耗竭不会使呼吸链超复合物不稳定,但有利于在细胞色素bc 1复合物和细胞色素c氧化酶之间形成更大的超级复合物(巨型复合物)。我们得出结论,线粒体呼吸链的全部活性和内膜电位的有效产生都需要PE和CL。然而,机制不同,因为这些非双层形成的磷脂对呼吸链超复合物的稳定性产生相反的影响。

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