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The topology and regulation of cardiolipin biosynthesis and remodeling in yeast

机译:酵母中心磷脂生物合成和重塑的拓扑结构和调控

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摘要

The signature mitochondrial phospholipid cardiolipin plays an important role in mitochondrial function, and alterations in cardiolipin metabolism are associated with human disease. Topologically, cardiolipin biosynthesis and remodeling are complex. Precursor phospholipids must be transported from the ER, across the mitochondrial outer membrane to the matrix-facing leaflet of the inner membrane, where cardiolipin biosynthesis commences. Post-synthesis, cardiolipin undergoes acyl chain remodeling, requiring additional trafficking steps, before it achieves its final distribution within both mitochondrial membranes. This process is regulated at several points via multiple independent mechanisms. Here, we review the regulation and topology of cardiolipin biosynthesis and remodeling in the yeast Saccharomyces cerevisiae. Although cardiolipin metabolism is more complicated in mammals, yeast have been an invaluable model for dissecting the steps required for this process.
机译:签名的线粒体磷脂心磷脂在线粒体功能中起重要作用,而心磷脂代谢的改变与人类疾病有关。拓扑上,心磷脂的生物合成和重塑是复杂的。前体磷脂必须从内质网转运,穿过线粒体外膜到达内膜的面向基质的小叶,在那里开始心磷脂的生物合成。合成后,心磷脂在两个线粒体膜内实现最终分布之前,需要进行酰基链重塑,需要其他运输步骤。通过多个独立的机制在多个点上调节此过程。在这里,我们审查的规管和拓扑结构的酵母生物酿酒酵母中心磷脂的生物合成和重塑。尽管心磷脂的代谢在哺乳动物中更为复杂,但是酵母已经成为剖析该过程所需步骤的宝贵模型。

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