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Estimation of PEX1-mediated Zellweger spectrum disorder births and population prevalence by population genetics
Karen E Malone1, Catherine Argyriou2, Evelyn Zavacky3
1GeneScape, Leiden, The Netherlands.
Insights
Zellweger Spectrum Disorder (ZSD) is a rare peroxisome disorder. Our model estimates nearly 1700 patients with PEX1-ZSD across the US, Europe, and Japan, highlighting many mild cases may be undiagnosed.
Area of Science:
- Genetics
- Rare Diseases
- Population Health
Background:
- Zellweger Spectrum Disorder (ZSD) is a rare genetic disorder affecting peroxisome assembly and function.
- Many ZSD cases stem from autosomal recessive inheritance of pathogenic variants in the PEX1 gene.
- Accurate disease burden and unmet need data are crucial for ZSD diagnosis, management, and therapy development.
Purpose of the Study:
- To develop a population-genetics-based model for estimating ZSD prevalence.
- To quantify the number of ZSD patients in the United States, Europe, and Japan.
- To understand the scale of unmet need in diagnosing and managing ZSD.
Main Methods:
- Utilized large-scale genetic diversity data to estimate regional mutational burden.
- Integrated genotype-phenotype relationships with real-world survival data.
- Modeled patient numbers for severe, intermediate, and mild ZSD phenotypes by age and country.
Main Results:
- Observed regional variations in PEX1 gene variant landscapes.
- Estimated nearly 500 patients with ZSD based on known pathogenic variants.
- Projected an additional 1190 patients (260 intermediate, 930 mild phenotype) under 30, incorporating predicted variants.
Conclusions:
- A significant number of patients with intermediate/mild ZSD phenotypes may be undiagnosed.
- The diagnosis-independent model provides global insights into the PEX1-ZSD spectrum.
- Findings can inform healthcare strategies and resource allocation for ZSD patients.
Purpose:
Zellweger Spectrum Disorder (ZSD) is a rare syndromic disorder characterized by impaired peroxisome assembly and function. Many cases are due to pathogenic variants in the PEX1 gene and are inherited in an autosomal recessive manner. As with many rare diseases, understanding the disease burden and scale of unmet need is challenging but required to support diagnosis, disease management, and development of therapies. We present a population-genetics-based model to estimate births and overall disease prevalence for patients in the United States, European countries, and Japan.
Methods:
We utilized large-scale genetic diversity data sets to estimate the mutational burden per region and integrated genotype-phenotype relationships with real-world survival data to provide patient number estimates for severe, intermediate, and mild segments per age and country.
Results:
We observed regional differences in the variant landscapes expected to contribute to PEX1-mediated ZSD (PEX1-ZSD). Conservative prevalence estimates for the United States, United Kingdom, Germany, France, Italy, Spain, and Japan based solely on known pathogenic variants indicates nearly 500 patients in total. Incorporating predicted pathogenic variants into our model suggests an additional 260 patients with intermediate phenotype and 930 patients with mild phenotype, under the age of 30, across these countries.
Conclusion:
Notably, our model indicates that a significant proportion of patients with intermediate/mild phenotype may go unrecognized by current diagnostic practices. This diagnosis independent model of patient number estimates provides additional insights into the broad spectrum of PEX1-ZSD on a more global scale and can be used to inform health care strategies for these patients.
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