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Mitochondrial membrane lipidome defines yeast longevity

机译:线粒体膜脂质体定义酵母寿命

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摘要

Our studies revealed that lithocholic acid (LCA), a bile acid, is a potent anti-aging natural compound that in yeast cultured under longevity-extending caloric restriction (CR) conditions acts in synergy with CR to enable a significant further increase in chronological lifespan. Here, we investigate a mechanism underlying this robust longevity-extending effect of LCA under CR. We found that exogenously added LCA enters yeast cells, is sorted to mitochondria, resides mainly in the inner mitochondrial membrane, and also associates with the outer mitochondrial membrane. LCA elicits an age-related remodeling of glycerophospholipid synthesis and movement within both mitochondrial membranes, thereby causing substantial changes in mitochondrial membrane lipidome and triggering major changes in mitochondrial size, number and morphology. In synergy, these changes in the membrane lipidome and morphology of mitochondria alter the age-related chronology of mitochondrial respiration, membrane potential, ATP synthesis and reactive oxygen species homeostasis. The LCA-driven alterations in the age-related dynamics of these vital mitochondrial processes extend yeast longevity. In sum, our findings suggest a mechanism underlying the ability of LCA to delay chronological aging in yeast by accumulating in both mitochondrial membranes and altering their glycerophospholipid compositions. We concluded that mitochondrial membrane lipidome plays an essential role in defining yeast longevity.
机译:我们的研究表明,胆汁酸石胆酸(LCA)是一种有效的抗衰老天然化合物,在长寿延长卡路里限制(CR)条件下培养的酵母中,它与CR协同作用,可以大大延长时间寿命。在这里,我们研究了在CR下LCA的这种强大的寿命延长作用的潜在机制。我们发现,外源添加的LCA进入酵母细胞,被分类为线粒体,主要存在于线粒体内膜中,还与线粒体外膜相关。 LCA在两个线粒体膜内引起年龄相关的甘油磷脂合成和运动的重塑,从而引起线粒体膜脂质组的实质性变化并触发线粒体大小,数量和形态的重大变化。协同作用下,膜脂质组和线粒体形态的这些变化改变了与年龄相关的线粒体呼吸,膜电位,ATP合成和活性氧稳态的时间顺序。这些重要的线粒体过程与年龄相关的动力学中的LCA驱动的变化可延长酵母的寿命。总而言之,我们的发现提出了一种潜在的机制,即LCA通过在线粒体两膜中积累并改变其甘油磷脂组成来延迟酵母中的时序老化。我们得出的结论是,线粒体膜脂质体在定义酵母寿命中起着至关重要的作用。

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