4.8 Article

Loss of MTX2 causes mandibuloacral dysplasia and links mitochondrial dysfunction to altered nuclear morphology

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-020-18146-9

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资金

  1. Association Francaise contre les Myopathies (AFM) (AFM grant MNH-Decrypt 2011-2015)
  2. Association Francaise contre les Myopathies (AFM) (AFM grant TRIM-RD 2016-2020)
  3. Institut National de la Sante et de la Recherche Medicale (INSERM)
  4. Aix-Marseille University (AMU) by the RARE-MED Amidex project (A*MIDEX-AAP Mediterranee 2014: RARE-MED Project: Setting up a Mediterranean Research Network for the study of rare diseases in the Mediterranean area)
  5. Deutsche Forschungsgemeinschaft [LE4223/1-1]
  6. GENMED Laboratory of Excellence on Medical Genomics, Agence Nationale de la Recherche [ANR-10-LABX-0013]
  7. French National Research Agency [ANR-10-INSB-04]
  8. NIH office of Research Infrastructure Program [P40 OD010440]

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Mandibuloacral dysplasia syndromes are mainly due to recessive LMNA or ZMPSTE24 mutations, with cardinal nuclear morphological abnormalities and dysfunction. We report five homozygous null mutations in MTX2, encoding Metaxin-2 (MTX2), an outer mitochondrial membrane protein, in patients presenting with a severe laminopathy-like mandibuloacral dysplasia characterized by growth retardation, bone resorption, arterial calcification, renal glomerulosclerosis and severe hypertension. Loss of MTX2 in patients' primary fibroblasts leads to loss of Metaxin-1 (MTX1) and mitochondrial dysfunction, including network fragmentation and oxidative phosphorylation impairment. Furthermore, patients' fibroblasts are resistant to induced apoptosis, leading to increased cell senescence and mitophagy and reduced proliferation. Interestingly, secondary nuclear morphological defects are observed in both MTX2-mutant fibroblasts and mtx-2-depleted C. elegans. We thus report the identification of a severe premature aging syndrome revealing an unsuspected link between mitochondrial composition and function and nuclear morphology, establishing a pathophysiological link with premature aging laminopathies and likely explaining common clinical features.

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