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Published on: July 28, 2016
A novel interaction of the Golgi complex with the vimentin intermediate filament cytoskeleton
1Department of Cell Biology, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.
Insights
The Golgi protein formiminotransferase cyclodeaminase (FTCD) directly binds vimentin filaments, integrating the Golgi complex with the intermediate filament (IF) cytoskeleton. This interaction causes Golgi fragmentation and reorganization of vimentin IFs.
Area of Science:
- Cell Biology
- Cytoskeletal Dynamics
- Organelle-Cytoskeleton Interactions
Background:
- The integration of intermediate filament (IF) cytoskeletons with cellular organelles is poorly understood.
- Proteins mediating interactions between the vimentin IF cytoskeleton and organelles remain largely unidentified.
Purpose of the Study:
- To investigate the interaction between the Golgi complex and the vimentin IF cytoskeleton.
- To identify proteins involved in this integration process.
Main Methods:
- In vivo and in vitro binding assays to assess protein-protein interactions.
- Cell culture experiments involving FTCD expression and analysis of cytoskeletal rearrangements.
- Vimentin knockout (vim(-/-)) cell studies to confirm vimentin dependency.
- Microscopy to visualize cellular structures and protein localization.
Main Results:
- The Golgi protein formiminotransferase cyclodeaminase (FTCD) directly binds to vimentin subunits and filaments.
- FTCD expression induces the formation of FTCD-vimentin chimeric fibers originating from the Golgi.
- These chimeric fibers are dependent on vimentin assembly and do not affect other cytoskeletal networks.
- FTCD-vimentin fiber assembly leads to Golgi fragmentation and tethering of Golgi elements.
Conclusions:
- FTCD acts as a molecular bridge, linking the Golgi complex to the vimentin IF cytoskeleton.
- FTCD plays a significant role in regulating vimentin IF organization and Golgi structure.
- FTCD is a strong candidate for integrating the Golgi compartment with the IF cytoskeleton.
Abstract:
The integration of the vimentin intermediate filament (IF) cytoskeleton and cellular organelles in vivo is an incompletely understood process, and the identities of proteins participating in such events are largely unknown. Here, we show that the Golgi complex interacts with the vimentin IF cytoskeleton, and that the Golgi protein formiminotransferase cyclodeaminase (FTCD) participates in this interaction. We show that the peripherally associated Golgi protein FTCD binds directly to vimentin subunits and to polymerized vimentin filaments in vivo and in vitro. Expression of FTCD in cultured cells results in the formation of extensive FTCD-containing fibers originating from the Golgi region, and is paralleled by a dramatic rearrangements of the vimentin IF cytoskeleton in a coordinate process in which vimentin filaments and FTCD integrate into chimeric fibers. Formation of the FTCD fibers is obligatorily coupled to vimentin assembly and does not occur in vim(-/-) cells. The FTCD-mediated regulation of vimentin IF is not a secondary effect of changes in the microtubule or the actin cytoskeletons, since those cytoskeletal systems appear unaffected by FTCD expression. The assembly of the FTCD/vimentin fibers causes a coordinate change in the structure of the Golgi complex and results in Golgi fragmentation into individual elements that are tethered to the FTCD/vimentin fibers. The observed interaction of Golgi elements with vimentin filaments and the ability of FTCD to specifically interacts with both Golgi membrane and vimentin filaments and promote their association suggest that FTCD might be a candidate protein integrating the Golgi compartment with the IF cytoskeleton.
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