CGG repeat expansion in NOTCH2NLC causes mitochondrial dysfunction and progressive neurodegeneration in Drosophila model

Author:

Yu Jiaxi12,Liufu Tongling12,Zheng Yilei3,Xu Jin4,Meng Lingchao12,Zhang Wei12,Yuan Yun12,Hong Daojun35,Charlet-Berguerand Nicolas6,Wang Zhaoxia12,Deng Jianwen12ORCID

Affiliation:

1. Department of Neurology, Peking University First Hospital, Beijing, 100034, China

2. Beijing Key Laboratory of Neurovascular Disease Discovery, Beijing, 100034, China

3. Department of Neurology, The First Affiliated Hospital of Nanchang University, Nanchang, 330006, China

4. Center of Ultrastructural Pathology, Lab of Electron Microscopy, Peking University First Hospital, Beijing, 100034, China

5. Department of Medical Genetics, The First Affiliated Hospital of Nanchang University, Nanchang, 330006, China

6. Institut de Génétique et de Biologie Moléculaire et Cellulaire, INSERM U 1258, CNRS UMR 7104, University of Strasbourg, 67404 Illkirch, France

Abstract

Neuronal intranuclear inclusion disease (NIID) is a neuromuscular/neurodegenerative disease caused by the expansion of CGG repeats in the 5′ untranslated region (UTR) of the NOTCH2NLC gene. These repeats can be translated into a polyglycine-containing protein, uN2CpolyG, which forms protein inclusions and is toxic in cell models, albeit through an unknown mechanism. Here, we established a transgenic Drosophila model expressing uN2CpolyG in multiple systems, which resulted in progressive neuronal cell loss, locomotor deficiency, and shortened lifespan. Interestingly, electron microscopy revealed mitochondrial swelling both in transgenic flies and in muscle biopsies of individuals with NIID. Immunofluorescence and immunoelectron microscopy showed colocalization of uN2CpolyG with mitochondria in cell and patient samples, while biochemical analysis revealed that uN2CpolyG interacted with a mitochondrial RNA binding protein, LRPPRC (leucine-rich pentatricopeptide repeat motif-containing protein). Furthermore, RNA sequencing (RNA-seq) analysis and functional assays showed down-regulated mitochondrial oxidative phosphorylation in uN2CpolyG-expressing flies and NIID muscle biopsies. Finally, idebenone treatment restored mitochondrial function and alleviated neurodegenerative phenotypes in transgenic flies. Overall, these results indicate that transgenic flies expressing uN2CpolyG recapitulate key features of NIID and that reversing mitochondrial dysfunction might provide a potential therapeutic approach for this disorder.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangxi Province

Double thousand talents program of Jiangxi province

Capitals Funds for Health Improvement and Research

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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