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磷脂重塑基因 SERAC1 的突变会损害线粒体功能和细胞内胆固醇转运,导致肌张力障碍和耳聋。

Mutations in the phospholipid remodeling gene SERAC1 impair mitochondrial function and intracellular cholesterol trafficking and cause dystonia and deafness.

机构信息

Department of Pediatrics, Radboud University Nijmegen Medical Centre (RUNMC), Nijmegen, The Netherlands.

出版信息

Nat Genet. 2012 Jun 10;44(7):797-802. doi: 10.1038/ng.2325.

Abstract

Using exome sequencing, we identify SERAC1 mutations as the cause of MEGDEL syndrome, a recessive disorder of dystonia and deafness with Leigh-like syndrome, impaired oxidative phosphorylation and 3-methylglutaconic aciduria. We localized SERAC1 at the interface between the mitochondria and the endoplasmic reticulum in the mitochondria-associated membrane fraction that is essential for phospholipid exchange. A phospholipid analysis in patient fibroblasts showed elevated concentrations of phosphatidylglycerol-34:1 (where the species nomenclature denotes the number of carbon atoms in the two acyl chains:number of double bonds in the two acyl groups) and decreased concentrations of phosphatidylglycerol-36:1 species, resulting in an altered cardiolipin subspecies composition. We also detected low concentrations of bis(monoacyl-glycerol)-phosphate, leading to the accumulation of free cholesterol, as shown by abnormal filipin staining. Complementation of patient fibroblasts with wild-type human SERAC1 by lentiviral infection led to a decrease and partial normalization of the mean ratio of phosphatidylglycerol-34:1 to phosphatidylglycerol-36:1. Our data identify SERAC1 as a key player in the phosphatidylglycerol remodeling that is essential for both mitochondrial function and intracellular cholesterol trafficking.

摘要

利用外显子组测序,我们确定 SERAC1 突变是 MEGDEL 综合征的致病原因,该综合征是一种隐性的肌张力障碍和耳聋伴 Leigh 样综合征、氧化磷酸化受损和 3-甲基戊烯二酸尿症。我们将 SERAC1 定位在线粒体相关膜部分的线粒体和内质网之间的界面,该部分对于磷脂交换至关重要。对患者成纤维细胞的磷脂分析显示,磷脂酰甘油-34:1(其中物种命名法表示两个酰基链中的碳原子数:两个酰基中的双键数)的浓度升高,磷脂酰甘油-36:1 物种的浓度降低,导致心磷脂亚类组成发生改变。我们还检测到双(单酰基甘油)-磷酸的低浓度,导致游离胆固醇的积累,如异常 filipin 染色所示。通过慢病毒感染用野生型人 SERAC1 补充患者成纤维细胞,导致磷脂酰甘油-34:1 与磷脂酰甘油-36:1 的平均比值降低和部分正常化。我们的数据表明 SERAC1 是磷脂酰甘油重塑的关键参与者,对于线粒体功能和细胞内胆固醇运输都是必不可少的。

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