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Analysis of Plasminogen Genetic Variants in Multiple Sclerosis Patients
A Dessa Sadovnick1, Anthony L Traboulsee2, Cecily Q Bernales3
1Department of Medical Genetics, University of British Columbia, Vancouver, British Columbia, V6T 1Z3, Canada Division of Neurology, Faculty of Medicine, University of British Columbia, Vancouver, British Columbia, V6T 1Z3, Canada.
Abstract:
Multiple sclerosis (MS) is a prevalent neurological disease of complex etiology. Here, we describe the characterization of a multi-incident MS family that nominated a rare missense variant (p.G420D) in plasminogen (PLG) as a putative genetic risk factor for MS. Genotyping of PLG p.G420D (rs139071351) in 2160 MS patients, and 886 controls from Canada, identified 10 additional probands, two sporadic patients and one control with the variant. Segregation in families harboring the rs139071351 variant, identified p.G420D in 26 out of 30 family members diagnosed with MS, 14 unaffected parents, and 12 out of 30 family members not diagnosed with disease. Despite considerably reduced penetrance, linkage analysis supports cosegregation of PLG p.G420D and disease. Genotyping of PLG p.G420D in 14446 patients, and 8797 controls from Canada, France, Spain, Germany, Belgium, and Austria failed to identify significant association with disease (P = 0.117), despite an overall higher prevalence in patients (OR = 1.32; 95% CI = 0.93-1.87). To assess whether additional rare variants have an effect on MS risk, we sequenced PLG in 293 probands, and genotyped all rare variants in cases and controls. This analysis identified nine rare missense variants, and although three of them were exclusively observed in MS patients, segregation does not support pathogenicity. PLG is a plausible biological candidate for MS owing to its involvement in immune system response, blood-brain barrier permeability, and myelin degradation. Moreover, components of its activation cascade have been shown to present increased activity or expression in MS patients compared to controls; further studies are needed to clarify whether PLG is involved in MS susceptibility.
Insights
A rare variant in plasminogen (PLG) was investigated as a potential genetic risk factor for multiple sclerosis (MS). While found more often in MS patients, the variant did not show significant association, suggesting PLG
Area of Science:
- Neuroimmunology
- Genetics
- Neurology
Background:
- Multiple sclerosis (MS) is a complex neurological disorder with an unknown etiology.
- Genetic factors are implicated in MS susceptibility, necessitating the identification of novel risk genes.
Purpose of the Study:
- To investigate the role of a rare missense variant (p.G420D) in plasminogen (PLG) as a potential genetic risk factor for MS.
- To explore the association of PLG variants with MS susceptibility across diverse European and Canadian populations.
Main Methods:
- Genotyping of the PLG p.G420D variant (rs139071351) in MS patients and controls.
- Family-based segregation analysis to assess the co-occurrence of the variant with MS.
- Sequencing of PLG to identify additional rare variants and assess their pathogenicity.
Main Results:
- The PLG p.G420D variant was identified in MS patients and controls, with a slightly higher prevalence in patients (OR=1.32).
- Segregation analysis in families showed the variant in affected and unaffected individuals, indicating reduced penetrance.
- Large-scale genotyping failed to establish a significant association between PLG p.G420D and MS (P=0.117).
- Sequencing revealed nine rare missense variants, but none showed clear segregation with MS.
Conclusions:
- The PLG p.G420D variant, despite biological plausibility, does not appear to be a significant genetic risk factor for MS.
- Further research is required to elucidate the precise role of plasminogen in MS pathogenesis.
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