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Age-Related Cellular Copper Dynamics in the Fungal Ageing Model Podospora anserina and in Ageing Human Fibroblasts

机译:真菌衰老模型Podospora anserina和衰老的人类成纤维细胞中与年龄相关的细胞铜动力学。

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摘要

In previous investigations an impact of cellular copper homeostasis on ageing of the ascomycete Podospora anserina has been demonstrated. Here we provide new data indicating that mitochondria play a major role in this process. Determination of copper in the cytosolic fraction using total reflection X-ray fluorescence spectroscopy analysis and eGfp reporter gene studies indicate an age-related increase of cytosolic copper levels. We show that components of the mitochondrial matrix (i.e. eGFP targeted to mitochondria) become released from the organelle during ageing. Decreasing the accessibility of mitochondrial copper in P. anserina via targeting a copper metallothionein to the mitochondrial matrix was found to result in a switch from a copper-dependent cytochrome-c oxidase to a copper-independent alternative oxidase type of respiration and results in lifespan extension. In addition, we demonstrate that increased copper concentrations in the culture medium lead to the appearance of senescence biomarkers in human diploid fibroblasts (HDFs). Significantly, expression of copper-regulated genes is induced during in vitro ageing in medium devoid of excess copper suggesting that cytosolic copper levels also increase during senescence of HDFs. These data suggest that the identified molecular pathway of age-dependent copper dynamics may not be restricted to P. anserina but may be conserved from lower eukaryotes to humans.
机译:在先前的研究中,已经证明了细胞内铜稳态对子囊虫Podospora anserina衰老的影响。在这里,我们提供了新的数据,表明线粒体在此过程中起主要作用。使用全反射X射线荧光光谱分析和eGfp报告基因研究确定胞浆中的铜,表明胞浆铜水平与年龄有关。我们显示,线粒体基质(即靶向线粒体的eGFP)的成分在衰老过程中从细胞器中释放出来。通过将铜金属硫蛋白靶向线粒体基质,降低了P. anserina中线粒体铜的可及性,导致从依赖铜的细胞色素C氧化酶转换为不依赖铜的替代氧化酶类型的呼吸,并延长了寿命。另外,我们证明了培养基中铜浓度的增加会导致人类二倍体成纤维细胞(HDFs)出现衰老生物标志物。重要的是,在没有过量铜的培养基中,在体外老化过程中诱导了铜调控基因的表达,这表明在HDFs衰老过程中,胞浆铜水平也会增加。这些数据表明,已确定的年龄依赖性铜动力学的分子途径可能不限于鹅膏假单胞菌,而对于低等真核生物而言,可能是保守的。

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