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Mitochondrial dysfunction triggered by loss of HtrA2 results in the activation of a brain-specific transcriptional stress response.

机译:HtrA2丢失引发的线粒体功能障碍导致大脑特异性转录应激反应的激活。

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摘要

Cellular stress responses can be activated following functional defects in organelles such as mitochondria and the endoplasmic reticulum. Mitochondrial dysfunction caused by loss of the serine protease HtrA2 leads to a progressive movement disorder in mice and has been linked to parkinsonian neurodegeneration in humans. Here, we demonstrate that loss of HtrA2 results in transcriptional upregulation of nuclear genes characteristic of the integrated stress response, including the transcription factor CHOP, selectively in the brain. We also show that loss of HtrA2 results in the accumulation of unfolded proteins in the mitochondria, defective mitochondrial respiration and enhanced production of reactive oxygen species that contribute to the induction of CHOP expression and to neuronal cell death. CHOP expression is also significantly increased in Parkinson's disease patients' brain tissue. We therefore propose that this brain-specific transcriptional response to stress may be important in the advance of neurodegenerative diseases.
机译:细胞应激反应可以在细胞器的功能缺陷如线粒体和内质网后被激活。丝氨酸蛋白酶HtrA2丢失引起的线粒体功能障碍导致小鼠进行性运动障碍,并与人类帕金森氏神经变性有关。在这里,我们证明了HtrA2的丧失会导致选择性地在大脑中整合应激反应(包括转录因子CHOP)特征的核基因的转录上调。我们还显示,HtrA2的丢失会导致线粒体中未折叠蛋白的积累,线粒体呼吸缺陷和增强活性氧的产生,从而有助于CHOP表达和神经元细胞死亡。在帕金森氏病患者的脑组织中,CHOP表达也显着增加。因此,我们建议这种对应激的大脑特异性转录反应在神经退行性疾病的发展中可能很重要。

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