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线粒体 p53 介导细胞呼吸的转录独立调节,并与线粒体 F₁F0-ATP 合酶相互作用。

Mitochondrial p53 mediates a transcription-independent regulation of cell respiration and interacts with the mitochondrial F₁F0-ATP synthase.

机构信息

Laboratoire de génétique et biologie cellulaire (LGBC); Université de Versailles St Quentin-en-Yvelines/Ecole Pratique des Hautes Etudes; UFR des Sciences de la Santé; Montigny-le-Bretonneux, France.

出版信息

Cell Cycle. 2013 Sep 1;12(17):2781-93. doi: 10.4161/cc.25870. Epub 2013 Aug 6.

Abstract

We and others previously reported that endogenous p53 can be located at mitochondria in the absence of stress, suggesting that p53 has a role in the normal physiology of this organelle. The aim of this study was to characterize in unstressed cells the intramitochondrial localization of p53 and identify new partners and functions of p53 in mitochondria. We find that the intramitochondrial pool of p53 is located in the intermembrane space and the matrix. Of note, unstressed HCT116 p53(+/+) cells simultaneously show increased O₂ consumption and decreased mitochondrial superoxide production compared with their p53-null counterpart. This data was confirmed by stable H1299 cell lines expressing low levels of p53 specifically targeted to the matrix. Using immunoprecipitation and mass spectrometry, we identified the oligomycin sensitivity-conferring protein (OSCP), a subunit of the F₁F₀-ATP synthase complex, as a new partner of endogenous p53, specifically interacting with p53 localized in the matrix. Interestingly, this interaction seems implicated in mitochondrial p53 localization. Moreover, p53 localized in the matrix promotes the assembly of F₁F₀-ATP synthase. Taking into account that deregulations of mitochondrial respiration and reactive oxygen species production are tightly linked to cancer development, we suggest that mitochondrial p53 may be an important regulator of normal mitochondrial and cellular physiology, potentially exerting tumor suppression activity inside mitochondria.

摘要

我们和其他人之前曾报道过,在没有应激的情况下,内源性 p53 可以定位在线粒体中,这表明 p53 在该细胞器的正常生理功能中发挥作用。本研究的目的是在未受应激的细胞中表征 p53 的线粒体内部定位,并确定 p53 在线粒体中的新伴侣和功能。我们发现,p53 的线粒体内部池位于膜间隙和基质中。值得注意的是,与 p53 缺失的对照相比,未受应激的 HCT116 p53(+/+)细胞同时显示出增加的 O₂消耗和减少的线粒体超氧化物产生。这一数据通过表达低水平靶向基质的 p53 的稳定 H1299 细胞系得到了证实。通过免疫沉淀和质谱分析,我们鉴定出寡霉素敏感性蛋白 (OSCP),一种 F₁F₀-ATP 合酶复合物的亚基,是内源性 p53 的新伴侣,与位于基质中的 p53 特异性相互作用。有趣的是,这种相互作用似乎与线粒体 p53 的定位有关。此外,定位于基质中的 p53 促进 F₁F₀-ATP 合酶的组装。考虑到线粒体呼吸和活性氧产生的失调与癌症的发展密切相关,我们认为线粒体 p53 可能是正常线粒体和细胞生理的重要调节剂,有可能在线粒体内部发挥肿瘤抑制活性。

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