Department of Biological Sciences, Wayne State University, Detroit, Michigan 48202 and.
Center for Molecular Medicine and Genetics, Wayne State University School of Medicine, Detroit, Michigan 48201.
J Biol Chem. 2012 May 18;287(21):17589-17597. doi: 10.1074/jbc.M111.330167. Epub 2012 Mar 20.
The two non-bilayer forming mitochondrial phospholipids cardiolipin (CL) and phosphatidylethanolamine (PE) play crucial roles in maintaining mitochondrial morphology. We have shown previously that CL and PE have overlapping functions, and the loss of both is synthetically lethal. Because the lack of CL does not lead to defects in the mitochondrial network in Saccharomyces cerevisiae, we hypothesized that PE may compensate for CL in the maintenance of mitochondrial tubular morphology and fusion. To test this hypothesis, we constructed a conditional mutant crd1Δpsd1Δ containing null alleles of CRD1 (CL synthase) and PSD1 (mitochondrial phosphatidylserine decarboxylase), in which the wild type CRD1 gene is expressed on a plasmid under control of the TET(OFF) promoter. In the presence of tetracycline, the mutant exhibited highly fragmented mitochondria, loss of mitochondrial DNA, and reduced membrane potential, characteristic of fusion mutants. Deletion of DNM1, required for mitochondrial fission, restored the tubular mitochondrial morphology. Loss of CL and mitochondrial PE led to reduced levels of small and large isoforms of the fusion protein Mgm1p, possibly accounting for the fusion defect. Taken together, these data demonstrate for the first time in vivo that CL and mitochondrial PE are required to maintain tubular mitochondrial morphology and have overlapping functions in mitochondrial fusion.
两种非双层形成的线粒体磷脂心磷脂 (CL) 和磷脂乙醇胺 (PE) 在维持线粒体形态中起着至关重要的作用。我们之前已经表明,CL 和 PE 具有重叠的功能,两者的缺失都是合成致死的。由于缺乏 CL 不会导致酿酒酵母中线粒体网络出现缺陷,我们假设 PE 可能在维持线粒体管状形态和融合中补偿 CL。为了验证这一假设,我们构建了一个条件突变体 crd1Δpsd1Δ,其中包含 CRD1(CL 合酶)和 PSD1(线粒体磷脂丝氨酸脱羧酶)的 null 等位基因,野生型 CRD1 基因在 Tet(OFF)启动子的控制下在质粒上表达。在四环素存在的情况下,突变体表现出高度碎片化的线粒体、线粒体 DNA 的丧失和膜电位降低,这是融合突变体的特征。缺失 DNM1,即线粒体分裂所必需的,恢复了管状线粒体形态。CL 和线粒体 PE 的缺失导致融合蛋白 Mgm1p 的小和大同工型水平降低,这可能是融合缺陷的原因。总之,这些数据首次在体内证明了 CL 和线粒体 PE 是维持管状线粒体形态所必需的,并且在线粒体融合中具有重叠的功能。