首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The mitochondrial intramembrane protease PARL cleaves human Pink1 to regulate Pink1 trafficking.
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The mitochondrial intramembrane protease PARL cleaves human Pink1 to regulate Pink1 trafficking.

机译:线粒体膜内蛋白酶PARL裂解人Pink1,以调节Pink1的运输。

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摘要

Intramembrane proteolysis is a conserved mechanism that regulates a variety of cellular processes ranging from transcription control to signaling. In mitochondria, the inner membrane rhomboid protease PARL has been implicated in the control of life span and apoptosis by a so far uncharacterized mechanism. Here, we show that PARL cleaves human Pink1, which is implicated in Parkinson's disease, within its conserved membrane anchor. Mature Pink1 is then free to be released into the cytosol or the mitochondrial intermembrane space. Upon depolarization of the mitochondrial membrane potential, the canonical import of Pink1 and PARL-catalyzed processing is blocked, leading to accumulation of the Pink1 precursor. As targeting of this precursor to the outer mitochondrial membrane has been shown to trigger mitophagy, we suggest that the PARL-catalyzed removal of the Pink1 signal sequence in the canonical import pathway acts as a cellular checkpoint for mitochondrial integrity. Furthermore, we show that two Parkinson's disease-causing mutations decrease the processing of Pink1 by PARL, with attendant implications for pathogenesis.
机译:膜内蛋白水解是一种保守的机制,可调节从转录控制到信号传导的各种细胞过程。在线粒体中,内膜菱形蛋白酶PARL迄今尚未阐明的机制参与了寿命和细胞凋亡的控制。在这里,我们显示PARL在其保守的膜锚中裂解人类Pink1,这与帕金森氏病有关。然后,成熟的Pink1可以自由释放到细胞质或线粒体内膜空间中。线粒体膜电位去极化后,Pink1的规范导入和PARL催化的加工被阻止,从而导致Pink1前体的积累。由于已经证明该前体靶向线粒体外膜可触发线粒体吞噬,因此我们建议在典型导入途径中PARL催化的Pink1信号序列的去除充当线粒体完整性的细胞检查点。此外,我们表明,两个帕金森病致突变减少了PARL对Pink1的加工,并伴随了发病机理。

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