Impact of disease mutations on the desmin filament assembly process

Harald Bär1, Norbert Mücke, Philippe Ringler

  • 1Department of Cardiology, University of Heidelberg, D-69120 Heidelberg, Germany.

Insights

Mutations in the desmin gene cause desminopathy, a muscle disease. This study reveals how specific desmin mutations disrupt filament assembly, impacting muscle structure and function.

Area of Science:

  • Muscle Biology
  • Biochemistry
  • Cell Biology

Background:

  • Mutations in the human desmin gene cause desminopathy, a severe myofibrillar myopathy affecting cardiac, skeletal, and smooth muscles.
  • Previously, 14 desmin variants with single amino acid substitutions were shown to impede in vitro filament formation.

Purpose of the Study:

  • To elucidate the mechanistic details of how desmin mutations affect filament assembly.
  • To investigate the impact of these mutations on filament structure and interactions with wild-type desmin.

Main Methods:

  • Analytical ultracentrifugation
  • Time-lapse electron microscopy (negative staining and low-angle rotary metal shadowing)
  • Quantitative scanning transmission electron microscopy
  • Viscometric studies

Main Results:

  • Soluble assembly intermediates of two mutants formed higher-order complexes (e.g., octamers).
  • Six filament-forming mutants exhibited altered filament diameters and mass-per-length compared to wild-type desmin.
  • Four mutants induced "hyper-assembly" with wild-type desmin, indicating interference with normal assembly.

Conclusions:

  • Desmin mutations disrupt intermediate filament assembly at distinct stages.
  • Some mutations severely impair the assembly of wild-type desmin, leading to cytoskeletal disorganization.
  • Findings offer insights into desminopathy pathogenesis and intermediate filament assembly mechanisms.

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