VCP/p97 inhibitor CB-5083 modulates muscle pathology in a mouse model of VCP inclusion body myopathy
Cheng Cheng1, Lan Weiss1, Henri Leinonen2
1Division of Genetics and Genomic Medicine, Dept. of Pediatrics, UC Irvine, Irvine, CA, USA.
Background:
Pathogenic gain of function variants in Valosin-containing protein (VCP) cause a unique disease characterized by inclusion body myopathy with early-onset Paget disease of bone and frontotemporal dementia (also known as Multisystem proteinopathy (MSP)). Previous studies in drosophila models of VCP disease indicate treatment with VCP inhibitors mitigates disease pathology. Earlier-generation VCP inhibitors display off-target effects and relatively low therapeutic potency. New generation of VCP inhibitors needs to be evaluated in a mouse model of VCP disease. In this study, we tested the safety and efficacy of a novel and potent VCP inhibitor, CB-5083 using VCP patient-derived myoblast cells and an animal model of VCP disease.
Methods:
First, we analyzed the effect of CB-5083 in patient-derived myoblasts on the typical disease autophagy and TDP-43 profile by Western blot. Next, we determined the maximum tolerated dosage of CB-5083 in mice and treated the 2-month-old VCPR155H/R155H mice for 5 months with 15 mg/kg CB-5083. We analyzed motor function monthly by Rotarod; and we assessed the end-point blood toxicology, and the muscle and brain pathology, including autophagy and TDP-43 profile, using Western blot and immunohistochemistry. We also treated 12-month-old VCPR155H/+ mice for 6 months and performed similar analysis. Finally, we assessed the potential side effects of CB-5083 on retinal function, using electroretinography in chronically treated VCPR155H/155H mice.
Results:
In vitro analyses using patient-derived myoblasts confirmed that CB-5083 can modulate expression of the proteins in the autophagy pathways. We found that chronic CB-5083 treatment is well tolerated in the homozygous mice harboring patient-specific VCP variant, R155H, and can ameliorate the muscle pathology characteristic of the disease. VCP-associated pathology biomarkers, such as elevated TDP-43 and p62 levels, were significantly reduced. Finally, to address the potential adverse effect of CB-5083 on visual function observed in a previous oncology clinical trial, we analyzed retinal function in mice treated with moderate doses of CB-5083 for 5 months and documented the absence of permanent ocular toxicity.
Conclusions:
Altogether, these findings suggest that long-term use of CB-5083 by moderate doses is safe and can improve VCP disease-associated muscle pathology. Our results provide translationally relevant evidence that VCP inhibitors could be beneficial in the treatment of VCP disease.
Insights
A novel Valosin-containing protein (VCP) inhibitor, CB-5083, shows safety and efficacy in treating VCP disease models. This new generation inhibitor ameliorates muscle pathology and reduces disease biomarkers without ocular toxicity.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Valosin-containing protein (VCP) gene variants cause Multisystem proteinopathy (MSP), a disease characterized by myopathy, Paget's disease, and frontotemporal dementia.
- Previous VCP inhibitors had limitations, necessitating evaluation of new, potent inhibitors in VCP disease models.
- CB-5083 is a novel, potent VCP inhibitor investigated for its therapeutic potential.
Purpose of the Study:
- To evaluate the safety and efficacy of the VCP inhibitor CB-5083 in VCP patient-derived myoblasts and a mouse model of VCP disease.
- To assess the impact of CB-5083 on autophagy and TDP-43 protein levels, key biomarkers in VCP disease.
- To determine the maximum tolerated dosage and long-term effects of CB-5083 in mice, including potential ocular toxicity.
Main Methods:
- CB-5083's effect on autophagy and TDP-43 was analyzed in patient-derived myoblasts via Western blot.
- Maximum tolerated dosage was determined in mice; VCP R155H/R155H mice were treated for 5 months, and VCP R155H/+ mice for 6 months.
- Motor function, toxicology, muscle/brain pathology, and retinal function were assessed using Rotarod, Western blot, immunohistochemistry, and electroretinography.
Main Results:
- CB-5083 modulated autophagy-related protein expression in vitro.
- Chronic CB-5083 treatment was well-tolerated in VCP R155H/R155H mice, improving muscle pathology and reducing TDP-43 and p62 levels.
- No permanent ocular toxicity was observed in mice treated with CB-5083.
Conclusions:
- Long-term, moderate-dose CB-5083 treatment is safe and improves muscle pathology in VCP disease models.
- These findings support the potential of VCP inhibitors as a therapeutic strategy for VCP disease.
- CB-5083 demonstrates promise for treating Multisystem proteinopathy (MSP) by targeting VCP dysfunction.


