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首页> 外文期刊>Human Molecular Genetics >A defect in the mitochondrial complex III, but not complex IV, triggers early ROS-dependent damage in defined brain regions
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A defect in the mitochondrial complex III, but not complex IV, triggers early ROS-dependent damage in defined brain regions

机译:线粒体复合物III而非复合物IV的缺陷会触发特定大脑区域的早期ROS依赖性损伤

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摘要

We have created two neuron-specific mouse models of mitochondrial electron transport chain deficiencies involving defects in complex III (CIII) or complex IV (CIV). These conditional knockouts (cKOs) were created by ablation of the genes coding for the Rieske iron-sulfur protein (RISP) and COX10, respectively. RISP is one of the catalytic subunits of CIII and COX10 is an assembly factor indispensable for the maturation of Cox1, one of the catalytic subunits of CIV. Although the rates of gene deletion, protein loss and complex dysfunction were similar, the RISP cKO survived 3.5 months of age, whereas the COX10 cKO survived for 10-12 months. The RISP cKO had a sudden death, with minimal behavioral changes. In contrast, the COX10 cKO showed a distinctive behavioral phenotype with onset at 4 months of age followed by a slower but progressive neurodegeneration. Curiously, the piriform and somatosensory cortices were more vulnerable to the CIII defect whereas cingulate cortex and to a less extent piriform cortex were affected preferentially by the CIV defect. In addition, the CIII model showed severe and early reactive oxygen species damage, a feature not observed until very late in the pathology of the CIV model. These findings illustrate how specific respiratory chain defects have distinct molecular mechanisms, leading to distinct pathologies, akin to the clinical heterogeneity observed in patients with mitochondrial diseases.
机译:我们已经创建了两个复杂的线粒体电子传输链缺陷的神经元特定的小鼠模型,其中涉及复杂III(CIII)或复杂IV(CIV)的缺陷。这些条件敲除(cKO)是通过分别消融编码Rieske铁硫蛋白(RISP)和COX10的基因而产生的。 RISP是CIII的催化亚基之一,而COX10是CIV的催化亚基之一Cox1成熟必不可少的装配因子。尽管基因删除,蛋白质丢失和复杂功能障碍的发生率相似,但RISP cKO存活了3.5个月,而COX10 cKO存活了10-12个月。 RISP cKO突然死亡,几乎没有行为改变。相反,COX10 cKO表现出独特的行为表型,在4个月大时发作,随后出现缓慢但进行性神经变性。奇怪的是,梨状和体感皮质更容易受到CIII缺损的影响,而带扣状的皮质和程度较小的梨状皮质则更受CIV缺损的影响。另外,CIII模型显示出严重的早期活性氧损伤,直到CIV模型的病理学很晚才观察到这一特征。这些发现说明特定的呼吸链缺陷如何具有独特的分子机制,导致不同的病理学,类似于在线粒体疾病患者中观察到的临床异质性。

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