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Omi/HtrA2蛋白酶的失活会导致线粒体Mulan E3泛素连接酶失调并增加线粒体自噬。

Inactivation of Omi/HtrA2 protease leads to the deregulation of mitochondrial Mulan E3 ubiquitin ligase and increased mitophagy.

作者信息

Cilenti Lucia, Ambivero Camilla T, Ward Nathan, Alnemri Emad S, Germain Doris, Zervos Antonis S

机构信息

Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, FL32826, USA.

Center for Apoptosis Research, Kimmel Cancer Institute, Thomas Jefferson University, Philadelphia, PA19107, USA.

出版信息

Biochim Biophys Acta. 2014 Jul;1843(7):1295-307. doi: 10.1016/j.bbamcr.2014.03.027. Epub 2014 Apr 5.

Abstract

Omi/HtrA2 is a nuclear encoded mitochondrial serine protease with dual and opposite functions that depend entirely on its subcellular localization. During apoptosis, Omi/HtrA2 is released into the cytoplasm where it participates in cell death. While confined in the inter-membrane space of the mitochondria, Omi/HtrA2 has a pro-survival function that may involve the regulation of protein quality control (PQC) and mitochondrial homeostasis. Loss of Omi/HtrA2's protease activity causes the neuromuscular disorder of the mnd2 (motor neuron degeneration 2) mutant mice. These mice develop multiple defects including neurodegeneration with parkinsonian features. Loss of Omi/HtrA2 in non-neuronal tissues has also been shown to cause premature aging. The normal function of Omi/HtrA2 in the mitochondria and how its deregulation causes neurodegeneration or premature aging are unknown. Here we report that the mitochondrial Mulan E3 ubiquitin ligase is a specific substrate of Omi/HtrA2. During exposure to H(2)O(2), Omi/HtrA2 degrades Mulan, and this regulation is lost in cells that carry the inactive protease. Furthermore, we show accumulation of Mulan protein in various tissues of mnd2 mice as well as in Omi/HtrA2(-/-) mouse embryonic fibroblasts (MEFs). This causes a significant decrease of mitofusin 2 (Mfn2) protein, and increased mitophagy. Our work describes a new stress-signaling pathway that is initiated in the mitochondria and involves the regulation of Mulan by Omi/HtrA2 protease. Deregulation of this pathway, as it occurs in mnd2 mutant mice, causes mitochondrial dysfunction and mitophagy, and could be responsible for the motor neuron disease and the premature aging phenotype observed in these animals.

摘要

Omi/HtrA2是一种核编码的线粒体丝氨酸蛋白酶,具有完全取决于其亚细胞定位的双重且相反的功能。在细胞凋亡过程中,Omi/HtrA2释放到细胞质中并参与细胞死亡。而当局限于线粒体的膜间隙时,OmiOmi/HtrA2具有促生存功能,这可能涉及蛋白质质量控制(PQC)和线粒体稳态的调节。Omi/HtrA2蛋白酶活性的丧失会导致mnd2(运动神经元变性2)突变小鼠出现神经肌肉疾病。这些小鼠会出现多种缺陷,包括具有帕金森氏特征的神经变性。非神经元组织中Omi/HtrA2的缺失也已被证明会导致早衰。Omi/HtrA2在线粒体中的正常功能以及其失调如何导致神经变性或早衰尚不清楚。在此我们报告线粒体Mulan E3泛素连接酶是Omi/HtrA2的特异性底物。在暴露于H₂O₂期间,Omi/HtrA2降解Mulan,而在携带无活性蛋白酶的细胞中这种调节作用丧失。此外,我们显示Mulan蛋白在mnd2小鼠的各种组织以及Omi/HtrA2基因敲除小鼠胚胎成纤维细胞(MEF)中积累。这导致线粒体融合蛋白2(Mfn2)蛋白显著减少,并增加了线粒体自噬。我们的工作描述了一种新的应激信号通路,该通路在线粒体中启动,涉及Omi/HtrA2蛋白酶对Mulan的调节。如在mnd2突变小鼠中发生的那样,该通路的失调会导致线粒体功能障碍和线粒体自噬,并可能是这些动物中观察到的运动神经元疾病和早衰表型的原因。

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