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Mitochondrial function in neuronal cells depends on p97/VCP/Cdc48-mediated quality control

机译:神经元细胞中的线粒体功能取决于p97 / VCP / Cdc48介导的质量控制

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摘要

Maintaining mitochondrial function is essential for neuronal survival and offers protection against neurodegeneration. Ubiquitin-mediated, proteasome-dependent protein degradation in the form of outer mitochondrial membrane associated degradation (OMMAD) was shown to play roles in maintenance of mitochondria on the level of proteostasis, but also mitophagy and cell death. Recently, the AAA-ATPase p97/VCP/Cdc48 was recognized as part of OMMAD acting as retrotranslocase of ubiquitinated mitochondrial proteins for proteasomal degradation. Thus, p97 likely plays a major role in mitochondrial maintenance. Support for this notion comes from mitochondrial dysfunction associated with amyotrophic lateral sclerosis and hereditary inclusion body myopathy associated with Paget disease of bone and frontotemporal dementia (IBMPFD) caused by p97 mutation. Using SH-SY5Y cells stably expressing p97 or dominant-negative p97QQ treated with mitochondrial toxins rotenone, 6-OHDA, or Aβ-peptide as model for neuronal cells suffering from mitochondrial dysfunction, we found mitochondrial fragmentation under normal and stress conditions was significantly increased upon inactivation of p97. Furthermore, inactivation of p97 resulted in loss of mitochondrial membrane potential and increased production of reactive oxygen species (ROS). Under additional stress conditions, loss of mitochondrial membrane potential and increased ROS production was even more pronounced. Loss of mitochondrial fidelity upon inactivation of p97 was likely due to disturbed maintenance of mitochondrial proteostasis as the employed treatments neither induced mitophagy nor cell death. This was supported by the accumulation of oxidatively-damaged proteins on mitochondria in response to p97 inactivation. Dysfunction of p97 under normal and stress conditions in neuron-like cells severely impacts mitochondrial function, thus supporting for the first time a role for p97 as a major component of mitochondrial proteostasis.
机译:维持线粒体功能对于神经元生存至关重要,并提供了防止神经变性的保护作用。泛素介导的蛋白酶体依赖性蛋白质降解,以线粒体外膜相关降解(OMMAD)的形式,在维持线粒体的蛋白质稳定水平中起作用,而且在线粒体和细胞死亡方面也起着作用。最近,AAA-ATPase p97 / VCP / Cdc48被认为是OMMAD的一部分,可作为泛素化的线粒体蛋白的逆转录转位酶,用于蛋白酶体降解。因此,p97可能在线粒体维持中起主要作用。支持这一观点的是与p97突变引起的肌萎缩性侧索硬化症相关的线粒体功能障碍和与Paget病相关的遗传性包涵体肌病和额颞痴呆(IBMPFD)。使用稳定表达p97或线粒体毒素p97 QQ 的SH-SY5Y细胞鱼藤酮,6-OHDA或Aβ-肽作为线粒体功能障碍神经元细胞的模型,我们发现线粒体断裂在p97失活后,正常和压力状况显着增加。此外,p97的失活导致线粒体膜电位的丧失并增加了活性氧(ROS)的产生。在额外的压力条件下,线粒体膜电位的丧失和ROS的产生甚至更加明显。 p97灭活后线粒体保真度的丧失很可能是由于线粒体蛋白稳态维持受到干扰所致,因为所采用的治疗方法既不会引起线粒体也不会导致细胞死亡。响应p97失活的线粒体上的氧化损伤蛋白的积累支持了这一点。在正常和压力条件下,神经元样细胞中p97的功能障碍严重影响线粒体功能,因此首次支持了p97作为线粒体蛋白稳态的主要成分的作用。

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