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In vitro assembly properties of vimentin mutagenized at the beta-site tail motif
P D Kouklis1, M Hatzfeld, M Brunkener
1Programme of Cell Biology, European Molecular Biology Laboratory, Heidelberg, FRG.
Abstract:
The intermediate filament (IF) proteins vimentin, desmin and peripherin share a 9-residue sequence motif (beta-site) located near the end of their COOH-terminal tail domain. Peptide inhibition experiments have previously suggested that the beta-site is involved in interactions that limit the lateral growth of IFs and prevent inappropriate filament-filament associations. To investigate this question further, we have constructed and expressed, in Escherichia coli, hamster vimentin bearing different mutations in the beta-site. We show here that a single exchange of glycine 450 with a valine residue, or an internal deletion of amino acids 444-452, strongly interferes with the normal assembly of IFs under in vitro conditions. These mutants polymerize into irregular fibrils that have a strong tendency to anastomose and laterally aggregate under isotonic conditions. In contrast, a non-conservative substitution of arginine 448 for glutamic acid does not significantly interfere with filament structure and yields subunits that polymerize into long, smooth filaments that show a slight aberration in thickness. All mutant proteins are soluble in low salt and form oligomers similar to the ones formed by wild-type vimentin. On the basis of these findings and on related observations, we propose that the tail domain of type III IF proteins contains important structural elements involved in lateral protofilament-protofilament interactions.
Insights
Mutations in the vimentin protein's beta-site disrupt intermediate filament (IF) assembly, leading to abnormal fibril formation. This suggests the beta-site is crucial for proper IF lateral interactions and structure.
Area of Science:
- Cell Biology
- Biochemistry
- Structural Biology
Background:
- Intermediate filaments (IFs) are crucial cytoskeletal components.
- Vimentin, desmin, and peripherin IF proteins share a conserved beta-site motif.
- Previous studies suggest the beta-site regulates IF lateral growth and associations.
Purpose of the Study:
- To investigate the role of the beta-site in vimentin assembly and IF formation.
- To elucidate the structural contribution of the beta-site to IF lateral interactions.
Main Methods:
- Construction and expression of mutant hamster vimentin proteins in E. coli.
- In vitro assembly assays to assess filament formation and structure.
- Analysis of mutant protein solubility and oligomerization.
Main Results:
- Mutations (Gly450Val substitution, internal deletion 444-452) severely impaired vimentin IF assembly.
- Mutant vimentin formed irregular, anastomosing fibrils with aberrant lateral aggregation.
- A non-conservative mutation (Arg448Glu) showed minimal impact on filament structure, producing smooth filaments.
Conclusions:
- The vimentin beta-site is essential for normal intermediate filament assembly.
- Specific beta-site residues are critical for regulating lateral protofilament-protofilament interactions.
- The tail domain of type III IF proteins contains key structural elements for lateral interactions.