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Cell Death Differ ; 27(1): 71-84, 2020 01.
Article in English | MEDLINE | ID: mdl-31076632

ABSTRACT

Genome-wide association studies (GWAS) have identified Optineurin (OPTN) as genetically linked to Paget's disease of the bone (PDB), a chronic debilitating bone remodeling disorder characterized by localized areas of increased bone resorption and abnormal bone remodeling. However, only ~10% of mouse models with a mutation in Optn develop PDB, thus hindering the mechanistic understanding of the OPTN-PDB axis. Here, we reveal that 100% of aged Optn global knockout (Optn-/-) mice recapitulate the key clinical features observed in PDB patients, including polyostotic osteolytic lesions, mixed-phase lesions, and increased serum levels of alkaline phosphatase (ALP). Differentiation of primary osteoclasts ex vivo revealed that the absence of Optn resulted in an increased osteoclastogenesis. Mechanistically, Optn-deficient osteoclasts displayed a significantly decreased type I interferon (IFN) signature, resulting from both defective production of IFNß and impaired signaling via the IFNα/ßR, which acts as a negative feedback loop for osteoclastogenesis and survival. These data highlight the dual roles of OPTN in the type I IFN response to restrain osteoclast activation and bone resorption, offering a novel therapeutic target for PDB. Therefore, our study describes a novel and essential mouse model for PDB and define a key role for OPTN in osteoclast differentiation.


Subject(s)
Bone Remodeling , Cell Cycle Proteins/physiology , Interferon Type I/physiology , Membrane Transport Proteins/physiology , Osteitis Deformans/genetics , Osteoclasts/cytology , Animals , Bone Marrow/metabolism , Bone and Bones/diagnostic imaging , Cell Cycle Proteins/genetics , Cell Cycle Proteins/metabolism , Disease Models, Animal , Female , Interferon Type I/biosynthesis , Membrane Transport Proteins/genetics , Membrane Transport Proteins/metabolism , Mice, Inbred C57BL , Mice, Knockout , Osteitis Deformans/diagnostic imaging , Osteitis Deformans/pathology , Osteoclasts/metabolism , Osteogenesis , Receptors, Interferon/metabolism , Signal Transduction
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