Nanoscopic quantification of sub-mitochondrial morphology, mitophagy and mitochondrial dynamics in living cells derived from patients with mitochondrial diseases

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作者
Weiwei Zou
Qixin Chen
Jesse Slone
Li Yang
Xiaoting Lou
Jiajie Diao
Taosheng Huang
机构
[1] Cincinnati Children’s Hospital Medical Center,Division of Human Genetics
[2] The First Affiliated Hospital of Anhui Medical University,Department of Obstetrics and Gynecology, Reproductive Medicine Center
[3] University of Cincinnati College of Medicine,Department of Cancer Biology
[4] Shandong First Medical University & Shandong Academy of Medical Sciences,Institute of Materia Medica
[5] University at Buffalo,Department of Pediatrics, Jacobs School of Medicine and Biomedical Sciences
[6] Central South University,Department of Pediatrics, Xiangya Hospital
[7] Wenzhou Medical University,School of Laboratory Medicine and Life sciences
关键词
Nanoscope; Mitochondrial disease; SLC25A46; Cristae; Mitophagy;
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摘要
SLC25A46 mutations have been found to lead to mitochondrial hyper-fusion and reduced mitochondrial respiratory function, which results in optic atrophy, cerebellar atrophy, and other clinical symptoms of mitochondrial disease. However, it is generally believed that mitochondrial fusion is attributable to increased mitochondrial oxidative phosphorylation (OXPHOS), which is inconsistent with the decreased OXPHOS of highly-fused mitochondria observed in previous studies. In this paper, we have used the live-cell nanoscope to observe and quantify the structure of mitochondrial cristae, and the behavior of mitochondria and lysosomes in patient-derived SLC25A46 mutant fibroblasts. The results show that the cristae have been markedly damaged in the mutant fibroblasts, but there is no corresponding increase in mitophagy. This study suggests that severely damaged mitochondrial cristae might be the predominant cause of reduced OXPHOS in SLC25A46 mutant fibroblasts. This study demonstrates the utility of nanoscope-based imaging for realizing the sub-mitochondrial morphology, mitophagy and mitochondrial dynamics in living cells, which may be particularly valuable for the quick evaluation of pathogenesis of mitochondrial morphological abnormalities.
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