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A Genotype-Phenotype Study of Multiple Hereditary Exostoses in Forty-Three Patients
Sungmin Kim1, Chang-Hyun Lee1, Seok-Yong Choi2
1Department of Orthopedic Surgery, Chonnam National University Medical School and Hospital, 42 Jebong-ro, Dong-gu, Gwangju 61469, Korea.
Abstract:
Multiple hereditary exostoses (MHE) is a rare autosomal dominant skeletal disorder with a variety of clinical manifestations. We aimed to evaluate the general clinical phenotypic severity of MHE using our own scoring system and analyzed the risk factors associated with severe clinical phenotypes. In this study, 43 patients from 30 families were analyzed. The mutations were identified by direct sequencing of polymerase chain reaction-amplified genomic DNA or by multiplex ligation-dependent probe amplification. According to a new scoring system devised by the authors, the severity of the phenotype was assessed as mild, moderate, or severe based on the deformity of each segment, number of exostoses, leg length discrepancy, and functional limitations. Of 43 patients from 30 families, 39 patients (90.7%) and 24 families (80%) presented with EXT1 or EXT2 mutations. Patients with EXT1 mutations had a significantly worse phenotype than that of patients with EXT2 mutations or without any detectable mutation. The mean clinical score of patients with an EXT1 mutation (5.76; range, 2.0-8.0; SD = 1.60) was higher than that of patients with an EXT2 mutation (4.06; range, 2.0-7.0; SD = 1.47) or of those without any detectable mutation (4.63; range, 3.0-6.0; SD = 1.44; p = 0.005). According to our classification system, more patients with EXT1 mutations had 'severe disease' than those with EXT2 mutations. Deformity scores were also higher in patients with EXT1 mutations (p = 0.018). In the multivariate analysis, the deformity score was found to be associated with the 'severe' class (p = 0.031). In conclusion, 90.7% of patients with MHE showed EXT mutations. Our scoring system showed reliable results. We suggest that the extent of deformity is an important factor in determining the phenotype of MHE and close monitoring for the development of severe disease is recommended in patients with high deformity scores.
Insights
Multiple hereditary exostoses (MHE) is a rare skeletal disorder. Patients with EXT1 mutations show more severe phenotypes, with deformity extent being a key factor. Close monitoring is recommended for those with high deformity scores.
Area of Science:
- Genetics
- Orthopedics
- Medical Genetics
Background:
- Multiple hereditary exostoses (MHE) is a rare autosomal dominant skeletal disorder.
- Clinical manifestations of MHE are diverse, necessitating standardized severity assessment.
- Genetic mutations, particularly in EXT1 and EXT2 genes, are primary causes of MHE.
Purpose of the Study:
- To evaluate the clinical phenotypic severity of MHE using a novel scoring system.
- To identify risk factors associated with severe clinical phenotypes in MHE patients.
- To analyze the correlation between specific gene mutations (EXT1/EXT2) and disease severity.
Main Methods:
- Analysis of 43 patients from 30 families with MHE.
- Mutation identification via direct sequencing and multiplex ligation-dependent probe amplification.
- Phenotypic severity assessment using a custom scoring system based on deformity, exostoses count, leg length discrepancy, and functional limitations.
Main Results:
- 90.7% of patients had EXT1 or EXT2 mutations, with EXT1 mutations being more prevalent.
- Patients with EXT1 mutations exhibited significantly more severe phenotypes and higher deformity scores compared to EXT2 or no-mutation groups (p=0.005).
- The custom scoring system demonstrated reliable results in classifying MHE severity.
Conclusions:
- Genetic mutations in EXT1 and EXT2 are key determinants of MHE phenotype.
- The developed scoring system effectively assesses MHE severity, highlighting deformity extent as a critical factor.
- Patients with high deformity scores require close monitoring for potential severe disease progression.
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