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September 24, 20250 citationsOpen Access

Accessibility of the unstructured α-tubulin C-terminal tail is controlled by microtubule lattice conformation

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THTakashi HottaMPMorgan L. PimmETEzekiel C. Thomas

Key Points

  • The accessibility of the Y-αCTT is limited in normal cellular conditions, indicating microtubule dynamics play a central role.
  • Live imaging explores probe binding and shows increased interaction with Y-αCTT through MAPs and drug treatment.
  • Molecular dynamics simulations reveal transient interactions within the microtubule framework are influenced by tubulin's nucleotide state.
  • These results highlight the importance of conformational changes in tubulin for regulating structural functions within microtubules.

Abstract

Microtubules are cytoskeletal filaments that self-assemble from the protein tubulin, a heterodimer of α-tubulin and β-tubulin, and are important for cell mechanics, migration, and division. Much work has focused on how the nucleotide state of β-tubulin regulates the structure and dynamics of microtubules. In contrast, less is known about the structure and function of the C-terminal tails (CTTs) of α- and β-tubulin which are thought to freely protrude from the surface of the microtubule. To study the CTTs, we developed three different biosensors that bind the tyrosinated α-tubulin CTT (Y-αCTT) on the microtubule lattice. Surprisingly, live imaging of the probes indicates that the Y-αCTT is not accessible under normal cellular conditions. Lattice binding of the Y-αCTT probes can be increased by three different ways of changing the tubulin conformational state: the drug Taxol, expression of microtubule-associated proteins (MAPs) that recognize or promote an expanded tubulin conformation, or expression of tubulin that cannot hydrolyze GTP. Molecular dynamics simulations indicate that the Y-αCTT undergoes numerous transient interactions with the bodies of α-tubulin and β-tubulin in the lattice, and that the frequency of these interactions is regulated by the tubulin nucleotide state. These findings suggest that accessibility of the Y-αCTT is governed by local nucleotide- and MAP-dependent conformational changes to tubulin subunits within the microtubule lattice.

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Cite This Study

Hotta et al. (2025) studied this question.

synapsesocial.com/papers/68d6d82e8b2b6861e4c3e320https://doi.org/10.1101/2025.09.23.678010
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