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Updated: Jul 17, 2025

Functional Characterization of Endogenously Expressed Human RYR1 Variants
Published on: June 9, 2021
Long-term Natural History of Pediatric Dominant and Recessive RYR1-Related Myopathy
Anna Sarkozy1, Mario Sa1, Deborah Ridout1
1From the Dubowitz Neuromuscular Centre (A.S., M.Sa, M.G.D., M.M., A.Y.M., P.M., S.R., R.Q., M. Scoto, G.B., R.P., F.M.), UCL Great Ormond Street Institute of Child Health & MRC Centre for Neuromuscular Diseases; Department of Paediatric Neurology (M. Sa, M.A.F.-G., E.W., V.G., H.J.), Neuromuscular Service, Evelina Children's Hospital, Guy's and St Thomas' Hospital NHS Foundation Trust; Department of Population, Policy and Practice (D.R.), UCL Institute of Child Health; National Institute for Health Research Great Ormond Street Hospital Biomedical Research Centre (D.R., F.M.); Paediatric Physiotherapy (J.S.), Evelina Children's Hospital, Guy's and St Thomas' Hospital NHS Foundation Trust; DNA Laboratory (R.M.), Viapath, Guy's Hospital; and Randall Centre for Cell and Molecular Biophysics (H.J.), Muscle Signaling Section, Faculty of Life Sciences and Medicine, King's College London, United Kingdom.
Insights
This study details the long-term outcomes of RYR1-related myopathies, revealing that recessive forms present more severely but may have a slower motor and respiratory decline compared to dominant RYR1 myopathies.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- RYR1-related myopathies are the most common congenital myopathies.
- Long-term natural history data for these conditions remain limited.
Purpose of the Study:
- To describe the natural history of both dominant and recessive RYR1-related myopathies.
- To provide data informing management and therapeutic milestones.
Main Methods:
- Retrospective analysis of pediatric cases (1992-2019) from two UK centers.
- Inclusion of cross-sectional and longitudinal data from 69 patients.
- Data collection from individual medical records.
Main Results:
- Recessive RYR1 myopathies showed more severe prenatal/neonatal features, clinical presentation, and feeding difficulties.
- Fifteen percent of patients over 2 years never walked; 7% lost ambulation.
- Respiratory involvement affected 22%, with 12% requiring ventilatory support; scoliosis in 30%.
Conclusions:
- Recessive RYR1 myopathies present more severely but may have a less progressive course for motor and respiratory function.
- Longitudinal data are crucial for understanding disease progression in RYR1 myopathies.
- Findings can guide clinical management and identify targets for future therapies.
Background And Objectives:
RYR1-related myopathies are the most common congenital myopathies, but long-term natural history data are still scarce. We aim to describe the natural history of dominant and recessive RYR1-related myopathies.
Methods:
A cross-sectional and longitudinal retrospective data analysis of pediatric cases with RYR1-related myopathies seen between 1992-2019 in 2 large UK centers. Patients were identified, and data were collected from individual medical records.
Results:
Sixty-nine patients were included in the study, 63 in both cross-sectional and longitudinal studies and 6 in the cross-sectional analysis only. Onset ranged from birth to 7 years. Twenty-nine patients had an autosomal dominant RYR1-related myopathy, 31 recessive, 6 de novo dominant, and 3 uncertain inheritance. Median age at the first and last appointment was 4.0 and 10.8 years, respectively. Fifteen% of patients older than 2 years never walked (5 recessive, 4 de novo dominant, and 1 dominant patient) and 7% lost ambulation during follow-up. Scoliosis and spinal rigidity were present in 30% and 17% of patients, respectively. Respiratory involvement was observed in 22% of patients, and 12% needed ventilatory support from a median age of 7 years. Feeding difficulties were present in 30% of patients, and 57% of those needed gastrostomy or tube feeding. There were no anesthetic-induced malignant hyperthermia episodes reported in this cohort. We observed a higher prevalence of prenatal/neonatal features in recessive patients, in particular hypotonia and respiratory difficulties. Clinical presentation, respiratory outcomes, and feeding outcomes were consistently more severe at presentation and in the recessive group. Conversely, longitudinal analysis suggested a less progressive course for motor and respiratory function in recessive patients. Annual change in forced vital capacity was -0.2%/year in recessive vs -1.4%/year in dominant patients.
Discussion:
This clinical study provides long-term data on disease progression in RYR1-related myopathies that may inform management and provide essential milestones for future therapeutic interventions.
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