Maintenance of the lipid composition is important for proper function and homeostasis of the mitochondrion. In Trypanosoma brucei, the enzymes involved in the biosynthesis of the mitochondrial phospholipid, phosphatidylglycerol (PG), have not been studied experimentally. We now report the characterization of T. brucei phosphatidylglycerophosphate synthase (TbPgps), the rate-limiting enzyme in PG formation, which was identified based on its homology to other eukaryotic Pgps. Lipid quantification and metabolic labelling experiments show that TbPgps gene knock-down results in loss of PG and a reduction of another mitochondria-specific phospholipid, cardiolipin. Using immunohistochemistry and immunoblotting of digitonin-isolated mitochondria, we show that TbPgps localizes to the mitochondrion. Moreover, reduced TbPgps expression in T. brucei procyclic forms leads to alterations in mitochondrial morphology, reduction in the amounts of respiratory complexes III and IV and, ultimately, parasite death. Using native polyacrylamide gel electrophoresis we demonstrate for the first time in a eukaryotic organism that TbPgps is a component of a 720 kDa protein complex, co-migrating with T. brucei cardiolipin synthase and cytochrome c1, a protein of respiratory complex III.

译文

:脂质成分的维护对于线粒体的正常功能和体内平衡非常重要。在布鲁氏锥虫中,尚未对线粒体磷脂,磷脂酰甘油(PG)的生物合成中涉及的酶进行研究。现在,我们报告T.brucei磷脂酰甘油磷酸合酶(TbPgps)的表征,PG形成中的限速酶,是根据它与其他真核Pgps的同源性鉴定的。脂质定量和代谢标记实验表明,TbPgps基因敲低会导致PG丢失并降低另一种线粒体特异性磷脂心磷脂。使用免疫组化和指印蛋白分离的线粒体的免疫印迹,我们显示TbPgps定位于线粒体。此外,布鲁氏杆菌前环形式的TbPgps表达降低导致线粒体形态改变,呼吸道复合物III和IV数量减少,最终导致寄生虫死亡。使用天然聚丙烯酰胺凝胶电泳,我们首次在真核生物中证明了TbPgps是720 kDa蛋白复合物的一个成分,与T. brucei心磷脂合酶和细胞色素c1(呼吸复合物III的蛋白)共同迁移。

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