From the Department of Biochemistry and Biophysics, Texas A&M University, College Station, Texas 77843.
the Departments of Medicine and Pharmacology, University of California, San Diego, La Jolla, California 92093.
J Biol Chem. 2018 Jul 13;293(28):10870-10883. doi: 10.1074/jbc.RA118.004014. Epub 2018 Jun 4.
Cardiolipin (CL) is a signature phospholipid of the mitochondria required for the formation of mitochondrial respiratory chain (MRC) supercomplexes. The destabilization of MRC supercomplexes is the proximal cause of the pathology associated with the depletion of CL in patients with Barth syndrome. Thus, promoting supercomplex formation could ameliorate mitochondrial dysfunction associated with CL depletion. However, to date, physiologically relevant small-molecule regulators of supercomplex formation have not been identified. Here, we report that ethanolamine (Etn) supplementation rescues the MRC defects by promoting supercomplex assembly in a yeast model of Barth syndrome. We discovered this novel role of Etn while testing the hypothesis that elevating mitochondrial phosphatidylethanolamine (PE), a phospholipid suggested to overlap in function with CL, could compensate for CL deficiency. We found that the Etn supplementation rescues the respiratory growth of CL-deficient cells in a dose-dependent manner but independently of its incorporation into PE. The rescue was specifically dependent on Etn but not choline or serine, the other phospholipid precursors. Etn improved mitochondrial function by restoring the expression of MRC proteins and promoting supercomplex assembly in CL-deficient cells. Consistent with this mechanism, overexpression of Cox4, the MRC complex IV subunit, was sufficient to promote supercomplex formation in CL-deficient cells. Taken together, our work identifies a novel role of a ubiquitous metabolite, Etn, in attenuating mitochondrial dysfunction caused by CL deficiency.
心磷脂(CL)是线粒体的标志性磷脂,对于形成线粒体呼吸链(MRC)超复合体是必需的。MRC 超复合体的不稳定性是与 Barth 综合征患者 CL 耗竭相关的病理学的近端原因。因此,促进超复合体的形成可以改善与 CL 耗竭相关的线粒体功能障碍。然而,迄今为止,尚未鉴定出与 CL 耗竭相关的生理相关的小分子超复合体形成调节剂。在这里,我们报告乙醇胺(Etn)补充通过促进 Barth 综合征酵母模型中超复合体的组装来挽救 MRC 缺陷。我们在测试升高线粒体磷脂酰乙醇胺(PE)可以弥补 CL 缺乏的假设的同时发现了 Etn 的这种新作用,PE 是一种与 CL 功能重叠的磷脂。我们发现 Etn 以剂量依赖性方式挽救了 CL 缺乏的细胞的呼吸生长,但不依赖于其掺入 PE。这种挽救作用特异性地依赖于 Etn,但不依赖于胆碱或丝氨酸,这是其他磷脂前体。Etn 通过恢复 MRC 蛋白的表达并在 CL 缺乏的细胞中促进超复合体的组装来改善线粒体功能。与该机制一致,Cox4(MRC 复合物 IV 亚基)的过表达足以促进 CL 缺乏的细胞中超复合体的形成。总之,我们的工作确定了一种普遍存在的代谢物乙醇胺(Etn)在减轻由 CL 缺乏引起的线粒体功能障碍方面的新作用。