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Elevated VCP ATPase Activity Correlates With Disease Onset in Multisystem Proteinopathy-1
Sarah E Robinson1, Andrew R Findlay1, Shan Li1
1From the Department of Neurology (S.E.R., A.R.F., J.D., C.W.), Washington University in St. Louis, MO; John Walton Muscular Dystrophy Research Centre (S.L., F.W., M.S., J.D.-M.), Newcastle University and Newcastle Hospitals NHS Foundation Trusts, United Kingdom; and Division of Biology and Biological Engineering (T.-F.C.), California Institute of Technology, Pasadena.
Multisystem proteinopathy-1 (MSP1) linked to p97/VCP variants shows genotype-phenotype correlations. Higher VCP ATPase activity in R155C variants correlates with earlier disease onset, suggesting therapeutic potential.
Area of Science:
- Genetics and Molecular Biology
- Neurology
- Biochemistry
Background:
- Multisystem proteinopathy-1 (MSP1) is a late-onset disease caused by over 50 pathogenic variants in p97/VCP.
- MSP1 presents with diverse phenotypes including myopathy, Paget disease, ALS, and FTD, with no established genotype-phenotype correlations.
- The role of VCP intrinsic ATPase activity in MSP1 pathogenesis remains unclear.
Purpose of the Study:
- To identify genotype-phenotype correlations in MSP1.
- To associate these correlations with the intrinsic ATPase activity of VCP.
- To explore potential therapeutic strategies targeting VCP ATPase activity.
Main Methods:
- Patients with MSP1 were identified from literature and a patient registry.
- Age at onset and loss of ambulation were recorded.
- VCP intrinsic ATPase activity was measured using recombinant purified protein.
Main Results:
- Among common VCP variants, R155C showed the earliest average age at onset (38.15 ± 9.78 years).
- Early onset correlated with higher VCP ATPase activity.
- An inverse correlation (r = -0.94, p = 0.01) was found between age at onset and VCP ATPase activity across five variants.
Conclusions:
- In vitro VCP ATPase activity correlates with disease onset in MSP1.
- This correlation may aid in predicting prognosis for patients with known or novel VCP variants.
- Inhibition of VCP ATPase activity presents a potential therapeutic avenue for MSP1.
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