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线粒体 Chchd10 或 Chchd2 的缺失导致斑马鱼出现类似 ALS 的表型和复合物 I 缺陷,而与线粒体整合应激反应无关。

Loss of mitochondrial Chchd10 or Chchd2 in zebrafish leads to an ALS-like phenotype and Complex I deficiency independent of the mitochondrial integrated stress response.

机构信息

Department of Neurology and Neurosurgery, Montreal Neurological Institute, Faculty of Medicine, McGill University, Montreal, Quebec, Canada.

Department of Human Genetics, McGill University, Montreal, Quebec, Canada.

出版信息

Dev Neurobiol. 2023 Jan;83(1-2):54-69. doi: 10.1002/dneu.22909. Epub 2023 Mar 2.

DOI:10.1002/dneu.22909
PMID:36799027
Abstract

Mutations in CHCHD10 and CHCHD2, encoding two paralogous mitochondrial proteins, have been identified in cases of amyotrophic lateral sclerosis, frontotemporal lobar degeneration, and Parkinson's disease. Their role in disease is unclear, though both have been linked to mitochondrial respiration and mitochondrial stress responses. Here, we investigated the biological roles of these proteins during vertebrate development using knockout (KO) models in zebrafish. We demonstrate that loss of either or both proteins leads to motor impairment, reduced survival and compromised neuromuscular junction integrity in larval zebrafish. Compensation by Chchd10 was observed in the chchd2 model, but not by Chchd2 in the chchd10 model. The assembly of mitochondrial respiratory chain Complex I was impaired in chchd10 and chchd2 zebrafish larvae, but unexpectedly not in a double chchd10 and chchd2 model, suggesting that reduced mitochondrial Complex I cannot be solely responsible for the observed phenotypes, which are generally more severe in the double KO. We observed transcriptional activation markers of the mitochondrial integrated stress response (mt-ISR) in the double chchd10 and chchd2 KO model, suggesting that this pathway is involved in the restoration of Complex I assembly in our double KO model. The data presented here demonstrates that the Complex I assembly defect in our single KO models arises independently of the mt-ISR. Furthermore, this study provides evidence that both proteins are required for normal vertebrate development.

摘要

CHCHD10 和 CHCHD2 这两个编码两种同源线粒体蛋白的基因突变已在肌萎缩性侧索硬化症、额颞叶痴呆和帕金森病病例中被发现。尽管它们都与线粒体呼吸和线粒体应激反应有关,但它们在疾病中的作用尚不清楚。在这里,我们使用斑马鱼的 KO 模型来研究这些蛋白质在脊椎动物发育过程中的生物学作用。我们证明,缺失这两种蛋白质中的任何一种或两种都会导致幼鱼的运动障碍、存活率降低和神经肌肉接头完整性受损。在 chchd2 模型中观察到了 Chchd10 的代偿,但在 chchd10 模型中观察不到 Chchd2 的代偿。chchd10 和 chchd2 斑马鱼幼虫的线粒体呼吸链复合物 I 的组装受到损害,但令人惊讶的是,在双 KO 模型中没有受到损害,这表明减少的线粒体复合物 I 不能完全解释观察到的表型,这些表型在双 KO 中通常更严重。我们观察到双 chchd10 和 chchd2 KO 模型中线粒体综合应激反应(mt-ISR)的转录激活标志物,表明该途径参与了我们的双 KO 模型中复合物 I 组装的恢复。这里呈现的数据表明,我们的单 KO 模型中的复合物 I 组装缺陷独立于 mt-ISR 产生。此外,这项研究提供了证据表明这两种蛋白质都是正常脊椎动物发育所必需的。

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