Jacinto Sandra, Guerreiro Patrícia, de Oliveira Rita Machado, Cunha-Oliveira Teresa, Santos Maria João, Grazina Manuela, Rego Ana Cristina, Outeiro Tiago F
Faculdade de Medicina, Universidade de Lisboa, Lisboa, Portugal.
Serviço de Neurologia Pediátrica, Hospital Dona Estefânia, Centro Hospitalar Universitário Lisboa Central-EPE, Lisboa, Portugal.
Front Cell Neurosci. 2021 Mar 17;15:641264. doi: 10.3389/fncel.2021.641264. eCollection 2021.
Mutations in the MPV17 gene are associated with hepatocerebral form of mitochondrial depletion syndrome. The mechanisms through which MPV17 mutations cause respiratory chain dysfunction and mtDNA depletion is still unclear. The MPV17 gene encodes an inner membrane mitochondrial protein that was recently described to function as a non-selective channel. Although its exact function is unknown, it is thought to be important in the maintenance of mitochondrial membrane potential (ΔΨm). To obtain more information about the role of MPV17 in human disease, we investigated the effect of MPV17 knockdown and of selected known MPV17 mutations associated with MPV17 disease . We used different approaches in order to evaluate the cellular consequences of MPV17 deficiency. We found that lower levels of MPV17 were associated with impaired mitochondrial respiration and with a quiescent energetic metabolic profile. All the mutations studied destabilized the protein, resulting in reduced protein levels. We also demonstrated that different mutations caused different cellular abnormalities, including increased ROS production, decreased oxygen consumption, loss of ΔΨm, and mislocalization of MPV17 protein. Our study provides novel insight into the molecular effects of MPV17 mutations and opens novel possibilities for testing therapeutic strategies for a devastating group of disorders.
MPV17基因的突变与线粒体耗竭综合征的肝脑型相关。MPV17突变导致呼吸链功能障碍和线粒体DNA耗竭的机制仍不清楚。MPV17基因编码一种线粒体内膜蛋白,最近被描述为具有非选择性通道的功能。尽管其确切功能尚不清楚,但人们认为它在维持线粒体膜电位(ΔΨm)方面很重要。为了获得更多关于MPV17在人类疾病中作用的信息,我们研究了MPV17基因敲低以及与MPV17疾病相关的特定已知MPV17突变的影响。我们采用了不同的方法来评估MPV17缺乏的细胞后果。我们发现,较低水平的MPV17与线粒体呼吸受损以及静态能量代谢谱有关。所有研究的突变都使该蛋白不稳定,导致蛋白水平降低。我们还证明,不同的突变会导致不同的细胞异常,包括活性氧生成增加、氧气消耗减少、ΔΨm丧失以及MPV17蛋白定位错误。我们的研究为MPV17突变的分子效应提供了新的见解,并为测试一组毁灭性疾病的治疗策略开辟了新的可能性。