Interplay between stochastic enzyme activity and microtubule stability drives detyrosination enrichment on microtubule subsets

Microtubules in cells consist of functionally diverse subpopulations carrying distinct post-translational modifications (PTMs). Akin to the histone code, the tubulin code regulates a myriad of microtubule functions, ranging from intracellular transport to chromosome segregation. However, how individ...

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Veröffentlicht in:Current biology 2023-12, Vol.33 (23), p.5169-5184.e8
Hauptverfasser: Tang, Qing, Sensale, Sebastian, Bond, Charles, Xing, Jiazheng, Qiao, Andy, Hugelier, Siewert, Arab, Arian, Arya, Gaurav, Lakadamyali, Melike
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Sprache:eng
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Zusammenfassung:Microtubules in cells consist of functionally diverse subpopulations carrying distinct post-translational modifications (PTMs). Akin to the histone code, the tubulin code regulates a myriad of microtubule functions, ranging from intracellular transport to chromosome segregation. However, how individual PTMs only occur on subsets of microtubules to contribute to microtubule specialization is not well understood. In particular, microtubule detyrosination, the removal of the C-terminal tyrosine on α-tubulin subunits, marks the stable population of microtubules and modifies how microtubules interact with other microtubule-associated proteins to regulate a wide range of cellular processes. Previously, we found that in certain cell types, only ∼30% of microtubules are highly enriched with the detyrosination mark and that detyrosination spans most of the length of a microtubule, often adjacent to a completely tyrosinated microtubule. How the activity of a cytosolic detyrosinase, vasohibin (VASH), leads to only a small subpopulation of highly detyrosinated microtubules is unclear. Here, using quantitative super-resolution microscopy, we visualized nascent microtubule detyrosination events in cells consisting of 1–3 detyrosinated α-tubulin subunits after nocodazole washout. Microtubule detyrosination accumulates slowly and in a dispersed pattern across the microtubule length. By visualizing single molecules of VASH in live cells, we found that VASH engages with microtubules stochastically on a short timescale, suggesting limited removal of tyrosine per interaction, consistent with the super-resolution results. Combining these quantitative imaging results with simulations incorporating parameters from our experiments, we provide evidence for a stochastic model for cells to establish a subset of detyrosinated microtubules via a detyrosination-stabilization feedback mechanism. [Display omitted] •Detyrosination accumulates stochastically on microtubules in cells•Nascent, cellular detyrosination occurs on 1–3 subunits at a time•Detyrosination is enriched on microtubule subsets by inducing microtubule stability•The degree of enrichment of detyrosination depends on various cellular inputs Tang et al. show that the enrichment of detyrosination on a subset of microtubules inside of a cell can arise from feedback between microtubule stability and stochastic VASH activity. The level of enrichment is determined by cell-type-dependent factors, such as VASH concentration, enzyma
ISSN:0960-9822
1879-0445
1879-0445
DOI:10.1016/j.cub.2023.10.068