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Updated: Aug 13, 2025

Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
Embracing Monogenic Parkinson's Disease: The MJFF Global Genetic PD Cohort
Eva-Juliane Vollstedt1, Susen Schaake1, Katja Lohmann1
1Institute of Neurogenetics, University of Lübeck, Lübeck, Germany.
Background:
As gene-targeted therapies are increasingly being developed for Parkinson's disease (PD), identifying and characterizing carriers of specific genetic pathogenic variants is imperative. Only a small fraction of the estimated number of subjects with monogenic PD worldwide are currently represented in the literature and availability of clinical data and clinical trial-ready cohorts is limited.
Objective:
The objectives are to (1) establish an international cohort of affected and unaffected individuals with PD-linked variants; (2) provide harmonized and quality-controlled clinical characterization data for each included individual; and (3) further promote collaboration of researchers in the field of monogenic PD.
Methods:
We conducted a worldwide, systematic online survey to collect individual-level data on individuals with PD-linked variants in SNCA, LRRK2, VPS35, PRKN, PINK1, DJ-1, as well as selected pathogenic and risk variants in GBA and corresponding demographic, clinical, and genetic data. All registered cases underwent thorough quality checks, and pathogenicity scoring of the variants and genotype-phenotype relationships were analyzed.
Results:
We collected 3888 variant carriers for our analyses, reported by 92 centers (42 countries) worldwide. Of the included individuals, 3185 had a diagnosis of PD (ie, 1306 LRRK2, 115 SNCA, 23 VPS35, 429 PRKN, 75 PINK1, 13 DJ-1, and 1224 GBA) and 703 were unaffected (ie, 328 LRRK2, 32 SNCA, 3 VPS35, 1 PRKN, 1 PINK1, and 338 GBA). In total, we identified 269 different pathogenic variants; 1322 individuals in our cohort (34%) were indicated as not previously published.
Conclusions:
Within the MJFF Global Genetic PD Study Group, we (1) established the largest international cohort of affected and unaffected individuals carrying PD-linked variants; (2) provide harmonized and quality-controlled clinical and genetic data for each included individual; (3) promote collaboration in the field of genetic PD with a view toward clinical and genetic stratification of patients for gene-targeted clinical trials. © 2023 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
Insights
This study established the largest international cohort of genetic Parkinson's disease (PD) variant carriers, collecting crucial data for future gene-targeted therapies and patient stratification. The findings advance research into monogenic PD and support clinical trial development.
Area of Science:
- Neuroscience
- Genetics
- Clinical Research
Background:
- Gene-targeted therapies for Parkinson's disease (PD) require comprehensive identification of genetic variant carriers.
- Limited clinical data and trial-ready cohorts exist for monogenic PD.
Purpose of the Study:
- Establish an international cohort of individuals with and without PD carrying PD-linked genetic variants.
- Provide harmonized, quality-controlled clinical and genetic data for cohort members.
- Foster researcher collaboration in monogenic PD.
Main Methods:
- Conducted a global online survey for individuals with PD-linked variants (SNCA, LRRK2, VPS35, PRKN, PINK1, DJ-1, GBA).
- Collected demographic, clinical, and genetic data, performing quality checks and variant pathogenicity scoring.
- Analyzed genotype-phenotype relationships.
Main Results:
- Assembled a cohort of 3888 variant carriers from 92 centers in 42 countries.
- Included 3185 individuals diagnosed with PD and 703 unaffected individuals.
- Identified 269 distinct pathogenic variants, with 34% of cohort individuals being previously unpublished.
Conclusions:
- Established the largest international cohort of PD genetic variant carriers.
- Provided harmonized clinical and genetic data for research and gene-targeted clinical trials.
- Facilitated stratification of patients for future therapeutic development.
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