Journal article
TRPV4 neuromuscular disease registry highlights bulbar, skeletal and proximal limb manifestations
Brain (London, England : 1878), Vol.148(1), pp.238-251
01/07/2025
DOI: 10.1093/brain/awae201
PMCID: PMC12054732
PMID: 38917025
Abstract
Dominant missense mutations of the calcium-permeable cation channel TRPV4 cause Charcot-Marie-Tooth disease (CMT) type 2C and two forms of distal spinal muscular atrophy. These conditions are collectively referred to as TRPV4-related neuromuscular disease and share features of motor greater than sensory dysfunction and frequent vocal fold weakness. Pathogenic variants lead to gain of ion channel function that can be rescued by TRPV4 antagonists in cellular and animal models. As small molecule TRPV4 antagonists have proven safe in trials for other disease indications, channel inhibition is a promising therapeutic strategy for TRPV4 patients. However, the current knowledge of the clinical features and natural history of TRPV4-related neuromuscular disease is insufficient to enable rational clinical trial design. To address these issues, we developed a TRPV4 patient database and administered a TRPV4-specific patient questionnaire. Here, we report demographic and clinical information, including CMT examination scores (CMTES), from 68 patients with known pathogenic TRPV4 variants, 40 of whom also completed the TRPV4 patient questionnaire. TRPV4 patients showed a bimodal age of onset, with the largest peak occurring in the first 2 years of life. Compared to CMT1A patients, TRPV4 patients showed distinct symptoms and signs, manifesting more ambulatory difficulties and more frequent involvement of proximal arm and leg muscles. Although patients reported fewer sensory symptoms, sensory dysfunction was often detected clinically. Many patients were affected by vocal fold weakness (55%) and shortness of breath (55%), and 11% required ventilatory support. Skeletal abnormalities were common, including scoliosis (64%), arthrogryposis (33%), and foot deformities. Strikingly, patients with infantile onset of disease showed less sensory involvement and less progression of symptoms. These results highlight distinctive clinical features in TRPV4 patients, including motor-predominant disease, proximal arm and leg weakness, severe ambulatory difficulties, vocal fold weakness, respiratory dysfunction, and skeletal involvement. In addition, patients with infantile onset of disease appeared to have a distinct phenotype with less apparent disease progression based on CMTES. These collective observations indicate that clinical trial design for TRPV4-related neuromuscular disease should include outcome measures that reliably capture non-length dependent motor dysfunction, vocal fold weakness, and respiratory disease.Dominant missense mutations of the calcium-permeable cation channel TRPV4 cause Charcot-Marie-Tooth disease (CMT) type 2C and two forms of distal spinal muscular atrophy. These conditions are collectively referred to as TRPV4-related neuromuscular disease and share features of motor greater than sensory dysfunction and frequent vocal fold weakness. Pathogenic variants lead to gain of ion channel function that can be rescued by TRPV4 antagonists in cellular and animal models. As small molecule TRPV4 antagonists have proven safe in trials for other disease indications, channel inhibition is a promising therapeutic strategy for TRPV4 patients. However, the current knowledge of the clinical features and natural history of TRPV4-related neuromuscular disease is insufficient to enable rational clinical trial design. To address these issues, we developed a TRPV4 patient database and administered a TRPV4-specific patient questionnaire. Here, we report demographic and clinical information, including CMT examination scores (CMTES), from 68 patients with known pathogenic TRPV4 variants, 40 of whom also completed the TRPV4 patient questionnaire. TRPV4 patients showed a bimodal age of onset, with the largest peak occurring in the first 2 years of life. Compared to CMT1A patients, TRPV4 patients showed distinct symptoms and signs, manifesting more ambulatory difficulties and more frequent involvement of proximal arm and leg muscles. Although patients reported fewer sensory symptoms, sensory dysfunction was often detected clinically. Many patients were affected by vocal fold weakness (55%) and shortness of breath (55%), and 11% required ventilatory support. Skeletal abnormalities were common, including scoliosis (64%), arthrogryposis (33%), and foot deformities. Strikingly, patients with infantile onset of disease showed less sensory involvement and less progression of symptoms. These results highlight distinctive clinical features in TRPV4 patients, including motor-predominant disease, proximal arm and leg weakness, severe ambulatory difficulties, vocal fold weakness, respiratory dysfunction, and skeletal involvement. In addition, patients with infantile onset of disease appeared to have a distinct phenotype with less apparent disease progression based on CMTES. These collective observations indicate that clinical trial design for TRPV4-related neuromuscular disease should include outcome measures that reliably capture non-length dependent motor dysfunction, vocal fold weakness, and respiratory disease.
Details
- Title: Subtitle
- TRPV4 neuromuscular disease registry highlights bulbar, skeletal and proximal limb manifestations
- Creators
- Gage Kosmanopoulos - University of MichiganJack K Donohue - Johns Hopkins MedicineMaya Hoke - Johns Hopkins MedicineSimone Thomas - Johns Hopkins MedicineMargo A Peyton - Mass General BrighamLinh Vo - University of MichiganThomas O Crawford - Johns Hopkins MedicineReza Sadjadi - Massachusetts General HospitalDavid N Herrmann - University of RochesterSabrina W Yum - Children's Hospital of PhiladelphiaMary M Reilly - National Hospital for Neurology and NeurosurgerySteven S Scherer - University of PennsylvaniaRichard S Finkel - St. Jude Children's Research HospitalRichard A Lewis - Cedars-Sinai Medical CenterDavide Pareyson - Fondazione IRCCS Istituto Neurologico Carlo BestaChiara Pisciotta - Fondazione IRCCS Istituto Neurologico Carlo BestaDavid Walk - University of MinnesotaMichael E Shy - University of IowaCharlotte J Sumner - Johns Hopkins MedicineBrett A McCray - University of Michigan
- Resource Type
- Journal article
- Publication Details
- Brain (London, England : 1878), Vol.148(1), pp.238-251
- DOI
- 10.1093/brain/awae201
- PMID
- 38917025
- PMCID
- PMC12054732
- NLM abbreviation
- Brain
- ISSN
- 1460-2156
- eISSN
- 1460-2156
- Publisher
- OXFORD UNIV PRESS
- Grant note
- National Institutes of Health (NIH) National Institute of Neurological Disorders and Stroke (NINDS): K08 NS102509, R35 NS122306 Muscular Dystrophy Association: 629305 Inherited Neuropathies Consortium, a part of the NIH National Center for Advancing Translational Sciences (NCATS) Rare Diseases Clinical Research Network (RDCRN), an initiative of the Office of Rare Disease Research: U54 NS065712
This work was supported by the National Institutes of Health (NIH) National Institute of Neurological Disorders and Stroke (NINDS) K08 NS102509 (B.A.M.), NIH NINDS R35 NS122306, (C.J.S.) and Muscular Dystrophy Association 629305 (C.J.S.). D.N.H., M.M.R., S.S.S. and M.E.S. were supported by the Inherited Neuropathies Consortium (U54 NS065712), a part of the NIH National Center for Advancing Translational Sciences (NCATS) Rare Diseases Clinical Research Network (RDCRN), an initiative of the Office of Rare Disease Research.
- Language
- English
- Electronic publication date
- 06/25/2024
- Date published
- 01/07/2025
- Academic Unit
- Neurology; Molecular Physiology and Biophysics; Iowa Neuroscience Institute
- Record Identifier
- 9984649049702771
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