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Updated: Jul 30, 2025

Simultaneous Visualization of the Dynamics of Crosslinked and Single Microtubules In Vitro by TIRF Microscopy
Published on: February 18, 2022
Microtubules and viral infection
Eveline Santos da Silva1, Mojgan H Naghavi2
1Department of Microbiology-Immunology, Northwestern University Feinberg School of Medicine, Chicago, IL, United States; HIV Clinical and Translational Research, Luxembourg Institute of Health, Department of Infection and Immunity, Esch-sur-Alzette, Luxembourg.
Abstract:
Microtubules (MTs) form rapidly adaptable, complex intracellular networks of filaments that not only provide structural support, but also form the tracks along which motors traffic macromolecular cargos to specific sub-cellular sites. These dynamic arrays play a central role in regulating various cellular processes including cell shape and motility as well as cell division and polarization. Given their complex organization and functional importance, MT arrays are carefully controlled by many highly specialized proteins that regulate the nucleation of MT filaments at distinct sites, their dynamic growth and stability, and their engagement with other subcellular structures and cargoes destined for transport. This review focuses on recent advances in our understanding of how MTs and their regulatory proteins function, including their active targeting and exploitation, during infection by viruses that utilize a wide variety of replication strategies that occur within different cellular sub-compartments or regions of the cell.
Insights
Microtubules (MTs) are vital for cell structure and transport. Viruses exploit these cellular highways and their regulatory proteins for replication within diverse cellular compartments.
Area of Science:
- Cell Biology
- Virology
- Cytoskeleton Dynamics
Background:
- Microtubules (MTs) are dynamic intracellular filaments crucial for cellular structure, motility, division, and intracellular transport.
- Specialized proteins regulate MT nucleation, growth, stability, and cargo transport, ensuring precise cellular organization.
Conclusions:
- Understanding MT-virus interactions is critical for deciphering viral pathogenesis.
- Targeting MT networks presents potential avenues for antiviral therapeutic strategies.
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