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hNOA1与复合体I和DAP3相互作用,并调节线粒体呼吸和细胞凋亡。

hNOA1 interacts with complex I and DAP3 and regulates mitochondrial respiration and apoptosis.

作者信息

Tang Tingdong, Zheng Bin, Chen Sheng-Hong, Murphy Anne N, Kudlicka Krystyna, Zhou Huilin, Farquhar Marilyn G

机构信息

Department of Cellular and Molecular Medicine, University of California, San Diego, La Jolla, California 92093-0651, USA.

出版信息

J Biol Chem. 2009 Feb 20;284(8):5414-24. doi: 10.1074/jbc.M807797200. Epub 2008 Dec 22.

Abstract

Mitochondria are dynamic organelles that play key roles in metabolism, energy production, and apoptosis. Coordination of these processes is essential to maintain normal cellular functions. Here we characterized hNOA1, the human homologue of AtNOA1 (Arabidopsis thaliana nitric oxide-associated protein 1), a large mitochondrial GTPase. By immunofluorescence, immunoelectron microscopy, and mitochondrial subfractionation, endogenous hNOA1 is localized within mitochondria where it is peripherally associated with the inner mitochondrial membrane facing the mitochondrial matrix. Overexpression and knockdown of hNOA1 led to changes in mitochondrial shape implying effects on mitochondrial dynamics. To identify the interaction partners of hNOA1 and to further understand its cellular functions, we performed immunoprecipitation-mass spectrometry analysis of endogenous hNOA1 from enriched mitochondrial fractions and found that hNOA1 interacts with both Complex I of the electron transport chain and DAP3 (death-associated protein 3), a positive regulator of apoptosis. Knockdown of hNOA1 reduces mitochondrial O(2) consumption approximately 20% in a Complex I-dependent manner, supporting a functional link between hNOA1 and Complex I. Moreover, knockdown of hNOA1 renders cells more resistant to apoptotic stimuli such as gamma-interferon and staurosporine, supporting a role for hNOA1 in regulating apoptosis. Thus, based on its interactions with both Complex I and DAP3, hNOA1 may play a role in mitochondrial respiration and apoptosis.

摘要

线粒体是动态细胞器,在新陈代谢、能量产生和细胞凋亡中发挥关键作用。这些过程的协调对于维持正常细胞功能至关重要。在这里,我们对hNOA1进行了表征,它是AtNOA1(拟南芥一氧化氮相关蛋白1)的人类同源物,一种大型线粒体GTP酶。通过免疫荧光、免疫电子显微镜和线粒体亚组分分离,内源性hNOA1定位于线粒体内,在那里它与面向线粒体基质的线粒体内膜周边相关。hNOA1的过表达和敲低导致线粒体形态改变,这意味着对线粒体动力学有影响。为了鉴定hNOA1的相互作用伙伴并进一步了解其细胞功能,我们对富集的线粒体组分中的内源性hNOA1进行了免疫沉淀-质谱分析,发现hNOA1与电子传递链的复合体I以及凋亡的正调节因子DAP3(死亡相关蛋白3)相互作用。hNOA1的敲低以复合体I依赖的方式使线粒体氧消耗降低约20%,支持了hNOA1与复合体I之间的功能联系。此外,hNOA1的敲低使细胞对γ-干扰素和星形孢菌素等凋亡刺激更具抗性,支持了hNOA1在调节细胞凋亡中的作用。因此,基于其与复合体I和DAP3的相互作用,hNOA1可能在线粒体呼吸和细胞凋亡中发挥作用。

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