Microtubule Dynamics

Microtubule dynamics describes the continual assembly and disassembly of microtubules, polarized cytoskeletal polymers that organize cell structure and transport materials. Tubulin dimers add to the growing plus end when bound to GTP, while GTP hydrolysis destabilizes the polymer and can trigger rapid shortening, or catastrophe, followed by regrowth, or rescue. In neurons, these transitions shape axon formation, dendrite organization, and intracellular trafficking by providing tracks for motor proteins. Understanding microtubule dynamics helps explain neuronal development, synaptic maintenance, and the cellular effects of neurodegenerative disease and microtubule-targeting compounds.

Microtubule Dynamics - Related Videos

Research

JoVE Journal - Developmental Biology

Use of Immunolabeling to Analyze Stable, Dynamic, and Nascent Microtubules in the Zebrafish Embryo

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Cited by 1 •

2017

Immunolabeling methods to analyze distinct populations of microtubules in the developing zebrafish brain are described here, which are broadly applicable to other tissues. The first protocol outlines an optimized method for immunolabeling stable and dynamic microtubules. The second protocol provides a method to image and quantify nascent microtubules specifically.

Interference Reflection Microscopy for Label-Free Visualization of Microtubule Dynamics

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2025

In this video, we describe the interference reflection microscopy (IRM) technique to visualize microtubules growing on a coverslip surface in the presence of a suitable buffer. Upon illumination with incident light, the coverslip-buffer interface and buffer-microtubule interface reflect light, which combines to create an interference pattern, enabling the visualization of microtubules as high-contrast images against a bright background.

TIRF Microscopy to Visualize Actin and Microtubule Coupling Dynamics

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2025

This video describes TIRF, a total internal reflection microscopy-based technique to visualize actin and microtubule polymerization dynamics. The method allows the high-resolution imaging of actin and microtubule coupling dynamics in real-time, which is essential for understanding cellular crosstalks.

High-resolution Imaging and Analysis of Individual Astral Microtubule Dynamics in Budding Yeast

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Cited by 33 •

2017

Budding yeast is an advantageous model for studying microtubule dynamics in vivo due to its powerful genetics and the simplicity of its microtubule cytoskeleton. The following protocol describes how to transform and culture yeast cells, acquire confocal microscopy images, and quantitatively analyze microtubule dynamics in living yeast cells.

Live Imaging to Study Microtubule Dynamic Instability in Taxane-resistant Breast Cancers

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Cited by 3 •

2017

In this paper, we report a protocol describing an in vivo method to measure microtubule dynamic instability in docetaxel-resistant breast cancer cells (MCF-7TXT). In this method, a deconvolution microscopy imaging system is used to detect the expression of GFP-tubulin in target cells.

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