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Updated: May 30, 2025

High-resolution Imaging and Analysis of Individual Astral Microtubule Dynamics in Budding Yeast
Published on: April 20, 2017
Modulation of microtubule dynamics by monovalent ions
Simon Fernandes1, Charlotte Aumeier1
1Department of Biochemistry, University of Geneva, 1211 Geneva, Switzerland.
Abstract:
The microtubule cytoskeleton is a dynamic network essential for many cellular processes, influenced by physicochemical factor, such as temperature, pH, dimer concentration, and ionic environment. In this study, we used in vitro reconstitution assays to examine the effects of four monovalent ions (Na+, K+, Cl-, and Ac-) on microtubule dynamics, uncovering distinct effects for each ion. Na+ was found to increase microtubule dynamicity by raising catastrophe frequency, polymerization and depolymerization speeds, and ultimately reducing microtubule lifetime by 80%. Conversely, Ac- boosts microtubule nucleation and stabilizes microtubules by increasing rescue frequency and preventing breakages, resulting in longer microtubules with extended lifetimes. Cl- appeared to potentiate the effects of Na+, while K+ had minimal impact on microtubule dynamic parameters. These findings demonstrate that Na+ and Ac- have opposing effects on microtubule dynamics, with Na+ destabilizing and Ac- stabilizing the microtubule structure. This ionic impact is mainly through modulation of tubulin-tubulin interactions rather than affecting the hydrolysis rate. In conclusion, ion identity plays a crucial role in modulating microtubule dynamics. Understanding the ionic environment is essential for microtubule-related research, as it significantly influences microtubule behavior, stability, and interactions with other proteins.
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