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Differential proteomic analysis of abnormal intramyoplasmic aggregates in desminopathy
A Maerkens1, R A Kley, M Olivé
1Department of Neurology, Neuromuscular Centre Ruhrgebiet, University Hospital Bergmannsheil, Ruhr-University Bochum, Bochum, Germany.
Abstract:
Desminopathy is a subtype of myofibrillar myopathy caused by desmin mutations and characterized by protein aggregates accumulating in muscle fibers. The aim of this study was to assess the protein composition of these aggregates. Aggregates and intact myofiber sections were obtained from skeletal muscle biopsies of five desminopathy patients by laser microdissection and analyzed by a label-free spectral count-based proteomic approach. We identified 397 proteins with 22 showing significantly higher spectral indices in aggregates (ratio >1.8, p<0.05). Fifteen of these proteins not previously reported as specific aggregate components provide new insights regarding pathomechanisms of desminopathy. Results of proteomic analysis were supported by immunolocalization studies and parallel reaction monitoring. Three mutant desmin variants were detected directly on the protein level as components of the aggregates, suggesting their direct involvement in aggregate-formation and demonstrating for the first time that proteomic analysis can be used for direct identification of a disease-causing mutation in myofibrillar myopathy. Comparison of the proteomic results in desminopathy with our previous analysis of aggregate composition in filaminopathy, another myofibrillar myopathy subtype, allows to determine subtype-specific proteomic profile that facilitates identification of the specific disorder.
Biological Significance:
Our proteomic analysis provides essential new insights in the composition of pathological protein aggregates in skeletal muscle fibers of desminopathy patients. The results contribute to a better understanding of pathomechanisms in myofibrillar myopathies and provide the basis for hypothesis-driven studies. The detection of specific proteomic profiles in different myofibrillar myopathy subtypes indicates that proteomic analysis may become a useful tool in differential diagnosis of protein aggregate myopathies.
Insights
This study reveals new protein components within desminopathy aggregates, offering insights into disease mechanisms. Proteomics can identify specific mutations and aid in diagnosing myofibrillar myopathies.
Area of Science:
- Muscle Biology
- Proteomics
- Genetics
Background:
- Desminopathy, a myofibrillar myopathy, involves desmin mutations and protein aggregate accumulation in muscle fibers.
- Understanding the protein composition of these aggregates is crucial for elucidating disease pathomechanisms.
Purpose of the Study:
- To comprehensively analyze the protein composition of pathological aggregates in desminopathy skeletal muscle.
- To identify novel aggregate components and investigate the direct role of mutant desmin in aggregate formation.
- To explore the potential of proteomic profiling for differentiating myofibrillar myopathy subtypes.
Main Methods:
- Laser microdissection of skeletal muscle biopsies from desminopathy patients.
- Label-free spectral count-based proteomic analysis of aggregates and myofiber sections.
- Immunolocalization studies and parallel reaction monitoring for validation.
Main Results:
- Identified 397 proteins in aggregates, with 22 significantly enriched.
- Discovered 15 novel proteins in desminopathy aggregates, providing new pathomechanistic insights.
- Directly detected three mutant desmin variants in aggregates, confirming their role in formation and demonstrating proteomic identification of disease-causing mutations.
Conclusions:
- Proteomic analysis offers novel insights into desminopathy aggregate composition and muscle fiber pathology.
- The findings support a better understanding of myofibrillar myopathy pathomechanisms.
- Proteomic profiling can distinguish between myofibrillar myopathy subtypes, aiding in differential diagnosis.
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