Optogenetic and chemical genetic tools for rapid repositioning of vimentin intermediate filaments

Publication date

2025-09-01

Authors

Pasolli, MilenaISNI 0000000507287312
Meiring, Joyce C.M.ISNI 0000000492910924
Conboy, James P
Koenderink, Gijsje H
Akhmanova, AnnaISNI 0000000390996464

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Intermediate filaments (IFs) are a key component of the cytoskeleton, essential for regulating cell mechanics, maintaining nuclear integrity, organelle positioning, and modulating cell signaling. Current insights into IF function primarily come from studies using long-term perturbations, such as protein depletion or mutation. Here, we present tools that allow rapid manipulation of vimentin IFs in the whole cytoplasm or within specific subcellular regions by inducibly coupling them to microtubule motors, either pharmacologically or using light. Rapid perinuclear clustering of vimentin had no major immediate effects on the actin or microtubule organization, cell spreading, or focal adhesion number, but it reduced cell stiffness. Mitochondria and endoplasmic reticulum (ER) sheets were reorganized due to vimentin clustering, whereas lysosomes were only briefly displaced and rapidly regained their normal distribution. Keratin moved along with vimentin in some cell lines but remained intact in others. Our tools help to study the immediate and local effects of vimentin perturbation and identify direct links of vimentin to other cellular structures.

Keywords

Animals, Endoplasmic Reticulum/metabolism, HeLa Cells, Humans, Intermediate Filaments/metabolism, Microtubules/metabolism, Mitochondria/metabolism, Optogenetics/methods, Vimentin/metabolism

Citation

Pasolli, M, Meiring, J C M, Conboy, J P, Koenderink, G H & Akhmanova, A 2025, 'Optogenetic and chemical genetic tools for rapid repositioning of vimentin intermediate filaments', The Journal of cell biology, vol. 224, no. 9, e202504004. https://doi.org/10.1083/jcb.202504004