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Published on: December 18, 2019
The impairment of MAGMAS function in human is responsible for a severe skeletal dysplasia
Cybel Mehawej1, Agnès Delahodde2, Laurence Legeai-Mallet3
1Unité de Génétique Médicale et Laboratoire International associé INSERM à l'Unité UMR_S 910, Faculté de Médecine, Université Saint-Joseph, Beirut, Lebanon; Département de Génétique, Unité INSERM U781, Université Paris Descartes-Sorbonne Paris Cité, Fondation Imagine, Hôpital Necker Enfants Malades, Paris, France.
Abstract:
Impairment of the tightly regulated ossification process leads to a wide range of skeletal dysplasias and deciphering their molecular bases has contributed to the understanding of this complex process. Here, we report a homozygous mutation in the mitochondria-associated granulocyte macrophage colony stimulating factor-signaling gene (MAGMAS) in a novel and severe spondylodysplastic dysplasia. MAGMAS, also referred to as PAM16 (presequence translocase-associated motor 16), is a mitochondria-associated protein involved in preprotein translocation into the matrix. We show that MAGMAS is specifically expressed in trabecular bone and cartilage at early developmental stages and that the mutation leads to an instability of the protein. We further demonstrate that the mutation described here confers to yeast strains a temperature-sensitive phenotype, impairs the import of mitochondrial matrix pre-proteins and induces cell death. The finding of deleterious MAGMAS mutations in an early lethal skeletal dysplasia supports a key role for this mitochondrial protein in the ossification process.
Insights
A novel mutation in the MAGMAS gene, crucial for mitochondrial function, causes a severe skeletal dysplasia. This finding highlights MAGMAS
Area of Science:
- Genetics
- Molecular Biology
- Skeletal Biology
Background:
- Skeletal dysplasias result from impaired ossification.
- Understanding the molecular basis of these conditions is crucial.
Purpose of the Study:
- To identify the genetic cause of a severe spondylodysplastic dysplasia.
- To investigate the role of the MAGMAS gene in skeletal development.
Main Methods:
- Genetic sequencing to identify mutations.
- Protein stability and mitochondrial import assays.
- Yeast complementation studies.
Main Results:
- A homozygous mutation in the MAGMAS gene was identified.
- The mutation causes MAGMAS protein instability and impairs mitochondrial pre-protein import.
- MAGMAS is expressed in developing bone and cartilage.
Conclusions:
- Deleterious MAGMAS mutations cause a lethal skeletal dysplasia.
- MAGMAS plays a critical role in the ossification process via mitochondrial function.
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