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The endoplasmic reticulum-mitochondria interface is perturbed in PARK2 knockout mice and patients with PARK2 mutations
- Source :
- ResearcherID, Human Molecular Genetics, Human Molecular Genetics, 2016, 25 (14), pp.2972-2984. ⟨10.1093/hmg/ddw148⟩, Human Molecular Genetics, Oxford University Press (OUP), 2016, 25 (14), pp.2972-2984. ⟨10.1093/hmg/ddw148⟩
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Abstract
- International audience; Mutations in PARK2, encoding the E3 ubiquitin protein ligase Parkin, are a common cause of autosomal recessive Parkinson’s disease (PD). Loss of PARK2 function compromises mitochondrial quality by affecting mitochondrial biogenesis, bioenergetics, dynamics, transport and turnover. We investigated the impact of PARK2 dysfunction on the endoplasmic reticulum (ER)-mitochondria interface, which mediates calcium (Ca2+) exchange between the two compartments and is essential for Parkin-dependent mitophagy. Confocal and electron microscopy analyses showed the ER and mitochondria to be in closer proximity in primary fibroblasts from PARK2 knockout (KO) mice and PD patients with PARK2 mutations than in controls. Ca2+ flux to the cytosol was also modified, due to enhanced ER-to-mitochondria Ca2+ transfers, a change that was also observed in neurons derived from induced pluripotent stem cells of a patient with PARK2 mutations. Subcellular fractionation showed the abundance of the Parkin substrate mitofusin 2 (Mfn2), which is known to modulate the ER-mitochondria interface, to be specifically higher in the mitochondrion-associated ER membrane compartment in PARK2 KO tissue. Mfn2 downregulation or the exogenous expression of normal Parkin restored cytosolic Ca2+ transients in fibroblasts from patients with PARK2 mutations. In contrast, a catalytically inactive PD-related Parkin variant had no effect. Overall, our data suggest that Parkin is directly involved in regulating ER-mitochondria contacts and provide new insight into the role of the loss of Parkin function in PD development.
- Subjects :
- 0301 basic medicine
Ubiquitin-Protein Ligases
Induced Pluripotent Stem Cells
MFN2
Mitochondrion
Biology
Endoplasmic Reticulum
medicine.disease_cause
Parkin
fibroblast
mfn2 gene
GTP Phosphohydrolases
Mice
03 medical and health sciences
Cytosol
Mitophagy
Genetics
medicine
Animals
Humans
Calcium Signaling
Molecular Biology
Genetics (clinical)
Mice, Knockout
Mutation
[SDV.GEN]Life Sciences [q-bio]/Genetics
Endoplasmic reticulum
park2 gene
E3 Ubiquitin-Protein Ligase Parkin
Parkinson Disease
General Medicine
Fibroblasts
Molecular biology
nervous system diseases
mitochondria
030104 developmental biology
Gene Expression Regulation
Mitochondrial biogenesis
mutation
Subjects
Details
- ISSN :
- 09646906 and 14602083
- Database :
- OpenAIRE
- Journal :
- ResearcherID, Human Molecular Genetics, Human Molecular Genetics, 2016, 25 (14), pp.2972-2984. ⟨10.1093/hmg/ddw148⟩, Human Molecular Genetics, Oxford University Press (OUP), 2016, 25 (14), pp.2972-2984. ⟨10.1093/hmg/ddw148⟩
- Accession number :
- edsair.doi.dedup.....078b87fbe149dc6e3bd473c26c14a100
- Full Text :
- https://doi.org/10.1093/hmg/ddw148⟩