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A Missense Mutation in Close Proximity of ALS-linked PFN1 Mutations Causes Only Early-onset Paget Disease of Bone
Rou Weng1, Xiaoxiang Li2, Hua Yue1
1Department of Osteoporosis and Bone Disease, Shanghai Clinical Research Center of Bone Disease, Sixth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200233, China.
Insights
Recurrent mutations in the PFN1 gene cause early-onset Paget disease of bone (PDB) and giant cell tumors. This PFN1 mutation leads to PDB-like symptoms in mice but not amyotrophic lateral sclerosis (ALS).
Area of Science:
- Genetics and Molecular Biology
- Bone Metabolism and Disease
- Neurodegenerative Disorders
Background:
- Paget disease of bone (PDB) is a metabolic bone disorder marked by excessive osteoclast activity.
- Mutations in the PFN1 gene, encoding the actin-binding protein Profilin 1, are linked to early-onset PDB and amyotrophic lateral sclerosis (ALS).
Purpose of the Study:
- Investigate the molecular mechanisms of early-onset PDB.
- Determine the role of PFN1 mutations in PDB pathogenesis.
- Assess the clinical response to denosumab in early-onset PDB patients.
Main Methods:
- Clinical observation of early-onset PDB patients treated with denosumab.
- Generation and analysis of a mouse model with a Pfn1 gene mutation (c.335T>C).
- In vitro osteoclast cultures to examine Pfn1 mutation effects on actin dynamics and signaling pathways.
Main Results:
- Identified recurrent heterozygous missense PFN1 (L112P) mutation in Chinese families with early-onset PDB and malignant giant cell tumors.
- Early-onset PDB patients with PFN1 L112P showed a diminished response to denosumab.
- Pfn1 mutation in mice induced PDB-like phenotypes (skeletal deformities, giant osteoclasts) but not ALS-like phenotypes.
- PFN1 L112P mutation enhanced actin ring structures in osteoclasts without altering NF-κB activation.
Conclusions:
- The PFN1 L112P mutation is a causative factor for early-onset PDB and giant cell tumors in the Chinese population.
- PFN1 mutations contribute to PDB pathogenesis through altered actin dynamics in osteoclasts.
- PFN1 mutations may have distinct effects on bone versus neuronal cells, differentiating PDB from ALS.
Context:
Paget disease of bone (PDB) is a metabolic disorder characterized by abnormal osteoclast activation. Recently, mutations in the PFN1 gene, which encodes Profilin 1, an actin-binding protein controlling actin dynamics and cell movement, have been linked to early-onset PDB. Interestingly, mutations in PFN1 (C71G, T109M, M114T, E117G, G118V, etc.) are associated with amyotrophic lateral sclerosis (ALS), a neurodegenerative disorder affecting motor neurons.
Objective:
To provide insights into the underlying molecular mechanism of early-onset PDB.
Methods:
We observed the clinical responses to denosumab in early-onset PDB patients. Additionally, a mouse model carrying the c.335T>C mutation in the Pfn1 gene was generated.
Results:
We reported a second Chinese family affected by early-onset PDB with malignant giant cell tumors, in which we identified the same heterozygous missense mutation (c.335T>C/p. L112P) in PFN1 that we have reported previously in another family. Despite its proximity to ALS-linked PFN1 mutations, the PFN1 L112P mutation did not induce ALS in affected individuals. These early-onset PDB patients exhibited a significantly poorer response to denosumab compared to typical PDB patients. The heterozygous mice displayed PDB-like phenotypes, including skeletal deformities and focal osteoclastic lesions with giant osteoclasts, and did not show ALS-like phenotypes. We further show that mutation of Pfn1 leads to enhanced actin ring-like structures at the bone surfaces without affecting nuclear factor-κB activation in osteoclast cultures.
Conclusion:
The observation of recurrent mutations highlights the causative role of PFN1 (L112P) in early-onset PDB/giant cell tumor within the Chinese population and provides insights into the physio-pathological functions of Profilin 1.
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