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依赖交替氧化酶的呼吸导致衰老模型 Podospora anserina 的两个长寿突变体中线粒体含量增加。

Alternative oxidase dependent respiration leads to an increased mitochondrial content in two long-lived mutants of the aging model Podospora anserina.

机构信息

Faculty for Biosciences, Molecular Developmental Biology, Cluster of Excellence Macromolecular Complexes, Johann Wolfgang Goethe University, Frankfurt, Germany.

出版信息

PLoS One. 2011 Jan 27;6(1):e16620. doi: 10.1371/journal.pone.0016620.

Abstract

The retrograde response constitutes an important signalling pathway from mitochondria to the nucleus which induces several genes to allow compensation of mitochondrial impairments. In the filamentous ascomycete Podospora anserina, an example for such a response is the induction of a nuclear-encoded and iron-dependent alternative oxidase (AOX) occurring when cytochrome-c oxidase (COX) dependent respiration is affected. Several long-lived mutants are known which predominantly or exclusively respire via AOX. Here we show that two AOX-utilising mutants, grisea and PaCox17::ble, are able to compensate partially for lowered OXPHOS efficiency resulting from AOX-dependent respiration by increasing mitochondrial content. At the physiological level this is demonstrated by an elevated oxygen consumption and increased heat production. However, in the two mutants, ATP levels do not reach WT levels. Interestingly, mutant PaCox17::ble is characterized by a highly increased release of the reactive oxygen species (ROS) hydrogen peroxide. Both grisea and PaCox17::ble contain elevated levels of mitochondrial proteins involved in quality control, i. e. LON protease and the molecular chaperone HSP60. Taken together, our work demonstrates that AOX-dependent respiration in two mutants of the ageing model P. anserina is linked to a novel mechanism involved in the retrograde response pathway, mitochondrial biogenesis, which might also play an important role for cellular maintenance in other organisms.

摘要

逆行反应是一条重要的从线粒体到细胞核的信号通路,它可以诱导几个基因的表达,从而允许对线粒体损伤进行补偿。在丝状子囊菌 Podospora anserina 中,这种反应的一个例子是核编码的、铁依赖性的替代氧化酶 (AOX) 的诱导,当细胞色素 c 氧化酶 (COX) 依赖性呼吸受到影响时,就会发生这种诱导。已知有几种长寿命突变体主要或专门通过 AOX 进行呼吸。在这里,我们发现两个利用 AOX 的突变体,grisea 和 PaCox17::ble,能够通过增加线粒体含量来部分补偿由于 AOX 依赖性呼吸导致的 OXPHOS 效率降低。在生理水平上,这表现为耗氧量增加和产热量增加。然而,在这两个突变体中,ATP 水平并没有达到 WT 水平。有趣的是,突变体 PaCox17::ble 的特点是活性氧 (ROS) 过氧化氢的释放显著增加。grisea 和 PaCox17::ble 都含有高水平的参与质量控制的线粒体蛋白,即 LON 蛋白酶和分子伴侣 HSP60。总之,我们的工作表明,在衰老模型 P. anserina 的两个突变体中,AOX 依赖性呼吸与一种新的逆行反应途径相关的机制有关,这种机制可能在其他生物体的细胞维持中也起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ada/3029406/4fb4ff4e2464/pone.0016620.g001.jpg

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