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Published on: April 14, 2023
Plectin deposition at podosome rings requires myosin contractility
Annica Gad1, Sibylle Lach, Luca Crimaldi
1Department of Cell Biology and Oncology, Consorzio Mario Negri Sud, Via Nazionale 8a, I-66030 Santa Maria Imbaro, Italy.
Abstract:
Metalloproteinase-dependent tissue invasion requires the formation of podosomes and invadopodia for localized matrix degradation. Actin cytoskeleton remodeling via Arp2/3-mediated actin polymerization is essential for podosome formation, and dynamic microtubules have an important role in maintaining podosome turnover in macrophages and osteoclasts. Little is known, however, about the involvement of the intermediate filament cytoskeleton in formation, stabilization, and turnover of podosomes. Here we show that vimentin intermediate filaments colocalize with the early sites of podosome formation at the stress fiber - focal adhesion interface in cultured vascular smooth muscle cells, but do not directly contribute to podosome formation, or stabilization. In unstimulated A7r5 cells the cytolinker protein plectin poorly colocalized with vimentin and the microdomains, but following induction by phorbol ester accumulated in the rings that surround the podosomes. In plectin-deficient A7r5 cells actin stress fiber remodelling is reduced in response to PDBu, and small podosomes remain localized at stable actin stress fibres. Pharmacological inhibition of actomyosin contractility by blebbistatin leads to an aberrant localization of podosomes away from the cell periphery and induces failure of plectin to surround the outer perimeter of these invasive adhesions. Taken together, we conclude that plectin is involved in growth and maturation of podosomes by reducing focal adhesion and stress fiber turnover, and that actomyosin-dependent contractility is required for the peripheral localization and specific deposition of plectin at the podosome rings.
Insights
Plectin, a cytolinker protein, is crucial for podosome maturation and localization in vascular smooth muscle cells. It stabilizes focal adhesions and stress fibers, requiring actomyosin contractility for proper podosome ring formation.
Area of Science:
- Cell Biology
- Cytoskeleton Dynamics
- Molecular Mechanisms of Invasion
Background:
- Metalloproteinase-dependent invasion relies on podosomes/invadopodia for matrix degradation.
- Actin polymerization (Arp2/3) and microtubules are vital for podosome dynamics.
- The role of intermediate filaments in podosome lifecycle remains unclear.
Purpose of the Study:
- Investigate the involvement of vimentin intermediate filaments and plectin in podosome formation, stabilization, and turnover.
- Elucidate the functional relationship between plectin, actin cytoskeleton, and actomyosin contractility in podosome dynamics.
Main Methods:
- Immunofluorescence microscopy to visualize vimentin, plectin, and actin structures.
- Culture of vascular smooth muscle cells (A7r5) and plectin-deficient variants.
- Pharmacological treatments (phorbol ester, blebbistatin) to modulate cell behavior and cytoskeletal organization.
Main Results:
- Vimentin colocalizes with early podosome sites but doesn't directly aid formation/stabilization.
- Plectin accumulates in podosome rings upon phorbol ester induction.
- Plectin deficiency impairs actin stress fiber remodeling and podosome localization.
- Actomyosin inhibition disrupts peripheral plectin localization at podosome rings.
Conclusions:
- Plectin promotes podosome growth and maturation by stabilizing focal adhesions and stress fibers.
- Actomyosin contractility is essential for correct peripheral plectin deposition and podosome ring formation.
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